CN108047339A - The production method of the nano-class rice starch of improvement - Google Patents

The production method of the nano-class rice starch of improvement Download PDF

Info

Publication number
CN108047339A
CN108047339A CN201810021739.9A CN201810021739A CN108047339A CN 108047339 A CN108047339 A CN 108047339A CN 201810021739 A CN201810021739 A CN 201810021739A CN 108047339 A CN108047339 A CN 108047339A
Authority
CN
China
Prior art keywords
rack
fixed
push
rice starch
rod
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN201810021739.9A
Other languages
Chinese (zh)
Other versions
CN108047339B (en
Inventor
林晓丽
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Hulunbuir homologous Ecological Agriculture Co.,Ltd.
Original Assignee
Jiaxing Chung Jin Clothing Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Jiaxing Chung Jin Clothing Co Ltd filed Critical Jiaxing Chung Jin Clothing Co Ltd
Priority to CN201810021739.9A priority Critical patent/CN108047339B/en
Publication of CN108047339A publication Critical patent/CN108047339A/en
Application granted granted Critical
Publication of CN108047339B publication Critical patent/CN108047339B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08BPOLYSACCHARIDES; DERIVATIVES THEREOF
    • C08B30/00Preparation of starch, degraded or non-chemically modified starch, amylose, or amylopectin
    • C08B30/04Extraction or purification
    • C08B30/042Extraction or purification from cereals or grains
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C11/00Other auxiliary devices or accessories specially adapted for grain mills
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C19/00Other disintegrating devices or methods
    • B02C19/06Jet mills
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C9/00Other milling methods or mills specially adapted for grain
    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08BPOLYSACCHARIDES; DERIVATIVES THEREOF
    • C08B30/00Preparation of starch, degraded or non-chemically modified starch, amylose, or amylopectin
    • C08B30/02Preparatory treatment, e.g. crushing of raw materials or steeping process
    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08BPOLYSACCHARIDES; DERIVATIVES THEREOF
    • C08B30/00Preparation of starch, degraded or non-chemically modified starch, amylose, or amylopectin
    • C08B30/06Drying; Forming
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23VINDEXING SCHEME RELATING TO FOODS, FOODSTUFFS OR NON-ALCOHOLIC BEVERAGES AND LACTIC OR PROPIONIC ACID BACTERIA USED IN FOODSTUFFS OR FOOD PREPARATION
    • A23V2002/00Food compositions, function of food ingredients or processes for food or foodstuffs

Landscapes

  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Biochemistry (AREA)
  • Materials Engineering (AREA)
  • Health & Medical Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Medicinal Chemistry (AREA)
  • Polymers & Plastics (AREA)
  • Organic Chemistry (AREA)
  • Food Science & Technology (AREA)
  • Accessories For Mixers (AREA)

Abstract

The present invention provides a kind of production methods of the nano-class rice starch of improvement.It is solved using traditional grinding mode in existing preparation method, and preparation time is long, the technical problems such as production cost height.The production method of the nano-class rice starch of this improvement, the raw material of production is rice, is included the following steps:A, the preparation of rice starch;B, homogenization;D, crush;E, detect.The present invention has the advantages that production cost is low.

Description

The production method of the nano-class rice starch of improvement
Technical field
The present invention relates to a kind of production methods of the nano-class rice starch of improvement.
Background technology
Rice starch has the characteristic that some other starch do not possess.Compared with other Structure of Starch Granules In Cereals, rice starch Particle is very small, and granularity is homogeneous.The rice starch water suction of gelatinization is fast, and the very soft and smooth similar cream of texture has fat Mouthfeel, and easily smear and open.Waxy Rice Starch is in addition to having the adipose property of class, also with fabulous freezing -- it thaws steady It is qualitative, it can prevent the syneresis in refrigerating process.
Through retrieval, as Chinese patent literature discloses a kind of preparation method of arch nanospheres【Application number: 201510151917.6;Publication number:CN 104785179A】.The preparation method of this arch nanospheres, includes the following steps: (1) amylose is dissolved in aqueous slkali, stirs to obtain suspension;(2) suspension that freezing step (1) obtains freezes to complete;(3) melt Change the product that step (2) obtains, obtain starch solution;(4) starch solution that dialysis step (3) obtains, obtains starch dispersion liquid;(5) The starch dispersion liquid that filtration step (4) obtains can obtain the arch nanospheres after dry.
Although arch nanospheres product purity that preparation method disclosed in the patent is prepared is high, still, the system Using traditional grinding mode in Preparation Method, preparation time is long, and production cost is high, therefore, designs a kind of nanoscale of improvement The production method of rice starch is necessary.
The content of the invention
The purpose of the present invention is being directed to existing technology, there are the above problems, it is proposed that a kind of nano-class rice of improvement forms sediment The production method of powder, the production method have the characteristics that production cost is low.
The purpose of the present invention can be realized by following technical proposal:The production method of the nano-class rice starch of improvement, The raw material of production is rice, which is characterized in that is included the following steps:
A, the preparation of rice starch:Rice is impregnated into 16-20h in 0.8% sodium hydrate aqueous solution first, is stirred per 4h Once, soak is removed, colloid mill is crossed after beater mashing, then is gone after impregnating 12-16h with 0.8% sodium hydrate aqueous solution Soak adds in deionized water, centrifuges, goes supernatant, repeated washing 3-5 times;After last time adds in deionized water, PH value is adjusted to neutrality, is centrifuged, gained precipitation is rice starch;
B, homogenization:The rice starch slurries of preparation are carried out by level-one in 50-90MPa using nm super high homogenizer Rice starch slurries after level-one homogenization are carried out double-stage homogenization by homogenization with Microfluidizer in 160-240MPa Processing;
C, it is spray-dried:Material is spray-dried by spray tower, 240-260 DEG C of inlet air temperature, leaving air temp 60- 80℃;
D, crush:The rice starch after spray drying is crushed by airslide disintegrating mill;
E, detect:The grain size of detection gained starch.
Using above method, it is combined by dry pulverization process with wet pulverizing, it, can be significantly instead of traditional grinding mode The time required to saving production, production cost is low.
Airslide disintegrating mill in the step d includes rack, and feeding device, mixing dress are disposed in the rack It puts, reducing mechanism and packing apparatus, the feeding device include feeding tube, storage tank and the positioning branch for positioning raw material bag Frame, locating support and storage tank are arranged in rack, and storage tank lower end has the first delivery outlet, is provided in the first delivery outlet First solenoid valve, storage tank upper end have first charging aperture, and first charging aperture is connected with feeding tube one end, the feeding tube other end Above locating support, and the end has guide portion, and a moving machine that guide portion can be driven to move up and down is provided in rack Structure is additionally provided with the first delivery pump in feeding tube;The moving mechanism includes cylinder and mounting ring, and the cylinder body of cylinder is fixed on machine On frame, straight down, the piston rod end of cylinder is connected the piston rod of cylinder by connecting rod with mounting ring, and guide portion is fixed on The control mechanism that cylinder can be controlled to act is additionally provided in mounting ring, in rack;The mixing arrangement includes blending bin, fog-spray nozzle And liquid reserve tank, blending bin and liquid reserve tank are each attached in rack, mixing upper box part has powder input port, and powder input port passes through First connecting tube is connected with the first delivery outlet, and mixing lower box part has powder delivery outlet, and second is provided in powder delivery outlet Solenoid valve, fog-spray nozzle are arranged in blending bin, and downward, the inlet of fog-spray nozzle passes through delivery pipe and liquid storage to the liquid outlet of fog-spray nozzle Case is connected, and the second delivery pump is provided in delivery pipe, and mixing upper box part is additionally provided with agitating shaft, agitating shaft upper end and stirring electricity Machine is connected, and agitating shaft lower end is penetrated in blending bin to be connected with agitating vane, and material in blending bin can be drawn by being provided in rack Draw frame machine, draw frame machine include suction pipe, the second push-rod electric machine, asepwirator pump, mounting blocks and case, and the second push-rod electric machine leads to Crossing one can drive its moving structure moved horizontally to be arranged in blending bin, the push rod of the second push-rod electric machine straight down, second The push rod end of push-rod electric machine is mutually fixed with mounting blocks, and the feed end of suction pipe is fixed on mounting blocks, and the feed end is downward, The discharge end of suction pipe is pierced by blending bin and is located in case, and asepwirator pump is arranged in suction pipe;The packing apparatus includes depositing Batch can, material stock tank are fixed in rack, and material stock tank top has the second input port, and the second input port passes through the second connecting tube and powder Body delivery outlet is connected, and material stock tank lower part has the second delivery outlet, is provided with the 3rd solenoid valve in the second delivery outlet, is set in rack The detent mechanism that finished bag edge can be positioned is equipped with, shock structure is additionally provided in rack, shock structure includes the second shake Movable plate, the second vibration motor and the second installing plate, the second installing plate can drive the first elevating mechanism that it moves up and down by one It being arranged in rack, the second jolting plate is arranged on the second installing plate, and the second jolting plate is in immediately below the second delivery outlet, the There is the 3rd spring between two jolting plates and the second installing plate, the 3rd spring one end and the second jolting plate lower surface are connected, and the 3rd The spring other end and the second installing plate upper surface are connected, and the second vibration motor is fixed on the second jolting plate lower surface.
The operation principle of airslide disintegrating mill is as follows:Locating support will be located in for storing the raw material bag of raw material, opened First delivery pump, the first delivery pump by feeding tube by the feedstock transportation in raw material bag into storage tank, in raw material bag Raw material gradually decreases, and controls the piston rod of cylinder that mounting ring is driven to move down, mounting ring drives guide portion to move down, and makes to lead Material portion contacts always with the raw material in raw material bag;Raw material in storage tank is transported to by the first communicating pipe in blending bin, control The output shaft of stirring motor drives agitating shaft to rotate, and agitating shaft drives agitating vane to rotate, meanwhile, the second delivery pump is opened, the Modifying agent in liquid reserve tank is transported in fog-spray nozzle by two delivery pumps by delivery pipe, and modifying agent and raw material is made uniformly to mix;It is mixed Raw material in mould assembling is transported to by the second communicating pipe in material stock tank after crushing, by detent mechanism by the edge of finished bag It is fixed on the second delivery outlet, the 3rd solenoid valve of control makes the second equipped at outlet port in opening state;Pass through the first elevating mechanism band Dynamic second installing plate moves up and down, and the second installing plate drives the second jolting plate to move up and down, and makes the second jolting plate and finished bag Bottom contacts, and by the second vibration motor the second jolting plate is driven to shake, and the second jolting plate, which drives finished bag to generate vibrations, to be made into Product are packed full, process operation so as to complete it, production efficiency is high.
The control mechanism includes displacement sensor, mounting rod and controller, and mounting rod one end is connected with mounting ring, pacifies The dress bar other end is connected with displacement sensor, and the induction part of displacement sensor, towards locating support, controller is fixed on machine On frame, cylinder and displacement sensor are connected with the controller.
Using more than structure, the distance of raw material in guide portion and material bag is detected by displacement sensor, signal is transferred To controller, the piston rod of controller control cylinder moves down, and control is accurate.
The locating support upper end has and can position the positioning column of raw material bag, locating support lower end have can to raw material bag into The percussion mechanism of row vibrations, the percussion mechanism include the first jolting plate and the first vibration motor, and the first jolting plate is arranged on fixed On the bottom plate of position stent, there is the first spring, one end of the first spring and the between the first jolting plate and the bottom plate of locating support One jolting plate is mutually fixed, and the other end of the first spring is mutually fixed with the bottom plate of locating support, and the first vibration motor is fixed on first Jolting plate lower surface.
When needing to shake raw material bag, the edge of raw material bag is penetrated in positioning column, passes through the first vibration motor The first jolting plate is made to generate vibrations, the first jolting plate drives raw material bag vibrations, moves down the material in raw material bag, vibrations side Just.
Be additionally provided with anti-slipping mechanism on the locating support, anti-slipping mechanism includes claw and second spring, claw lower end and Locating support is hinged, and one end of second spring is connected with claw middle part, and the other end of second spring is connected with locating support It connects, claw upper end can be resisted against on locating support.
Using more than structure, by second spring claw and locating support is made to lean, so as to avoid raw material bag from calmly It is slid out in the column of position, good antiskid effect.
The positioning column upper end has introduction part.
Using more than structure, it can be facilitated by introduction part and penetrate at raw material bag edge in positioning column, guiding role is good.
The positioning column lower end is arranged with rubber ring.
Using more than structure, its frictional force can be increased by rubber ring, it is rational in infrastructure.
Several idler wheels are additionally provided on the locating support, idler wheel and one can drive the second elevating mechanism of its oscilaltion It is connected.
Using more than structure, idler wheel can be packed up or put down by the second elevating mechanism, it is highly practical.
Second elevating mechanism includes the first installing plate, the first push-rod electric machine, guide rail and sliding block, guide rail and is fixed on vertically On locating support, sliding block is arranged in guide rail, and the first push-rod electric machine is fixed on the bottom plate of locating support, the first push-rod electric machine Straight down, the push rod end of the first push-rod electric machine is connected push rod with sliding block, and the first installing plate upper surface is connected with sliding block, First installing plate lower surface is connected with idler wheel.
When needing that idler wheel is packed up or put down, the push rod band movable slider of the first push-rod electric machine is controlled to move up and down, sliding block The first installing plate is driven to move up and down, the first installing plate drives idler wheel to move up and down, so as to pack up or put down idler wheel.
The delivery device that the material of blending bin side-walls can be pushed at agitating shaft is additionally provided in the rack, is pushed Mechanism includes several push pipes and air compressor machine, and several push pipes are located on blending bin side wall vertically, and push pipe lower end is blind end, It is inlet end to push pipe upper end, and push pipe is connected by communicating pipe with air compressor machine, and push tube side part offers several ventholes, Venthole is towards agitating shaft.
Using more than structure, delivered air to by air compressor machine in push pipe, air is exported from venthole, in air-flow Under the action of, the material of blending bin side-walls is pushed at agitating shaft, can significantly less stirring time, push effect it is good.
The moving structure includes driving cylinder, movable plate, sliding block and guide rail, guide rail and is horizontally fixed in blending bin, sliding Block is arranged in guide rail, and the cylinder body of cylinder is driven to be fixed in blending bin, and the piston rod end of cylinder is driven to be connected with sliding block, is moved Movable plate is fixed on sliding block, and the second push-rod electric machine is fixed on movable plate.
When needing to move back and forth the second push-rod electric machine, the piston rod band movable slider of control driving cylinder comes along guide rail Return is dynamic, and sliding block drives movable plate to move back and forth, and movable plate drives the second push-rod electric machine to move back and forth, so as to make the second push rod Motor moves back and forth.
Flow control valve is additionally provided in the delivery pipe.
Using more than structure, the uninterrupted of liquid in delivery pipe is adjusted by flow control valve, it is easy to adjust.
Peep hole is provided in the blending bin, transparent access panel is provided at peep hole.
Using more than structure, working condition that can be in rapid examination to blending bin by access panel, observation is directly perceived, conveniently.
Passage is additionally provided on the suction pipe, passage upper end is connected with the feed end of suction pipe, under passage End can be resisted against blending bin bottom.
It using more than structure, can conveniently be transported material to by passage in suction pipe, guiding role is good.
First elevating mechanism includes the 3rd push-rod electric machine, sliding block and guide rail, and guide rail is fixed in rack vertically, sliding block Be arranged in guide rail, the 3rd push-rod electric machine is fixed in rack, the push rod of the 3rd push-rod electric machine straight up, the 3rd push-rod electric machine Push rod end be connected with sliding block, the second installing plate is fixed on sliding block.
When needing to move up and down the second installing plate, the push rod band movable slider of the 3rd push-rod electric machine is controlled along on guide rail Lower movement, sliding block drives the second installing plate to move up and down, so as to move up and down the second installing plate.
The detent mechanism includes locating ring, locating piece and positioning cylinder, and locating ring is arranged and is fixed on the second delivery outlet On, positioning cylinder is fixed by the bracket in rack, piston rod the second delivery outlet of direction of positioning cylinder, the piston of positioning cylinder Boom end is mutually fixed with locating piece, and the locating slot to match with locating ring is offered on locating piece.
When the edge by finished bag is needed to be fixed on the second delivery outlet, the edge of finished bag is sleeved on locating ring, The piston rod of positioning cylinder is controlled to drive locating piece movement, locating piece and locating ring lean, so as to by the edge of finished bag It is fixed on the second delivery outlet, positioning is quick.
Rubber strip is provided in the locating slot, the protrusion on rubber strip with several protrusions.
Using more than structure, the phenomenon that can increasing its frictional force by rubber strip, avoid the occurrence of slip, job stability It is good.
Prompting mechanism is additionally provided in the rack, prompting mechanism, which includes travel switch, detection bar, alarm bell and PLC, to be compiled Range controller, alarm bell are fixed in rack, and travel switch is fixed on the second installing plate lower surface, and detection bar is fixed in rack, Detection bar can be in contact with travel switch, and travel switch and alarm bell are connected with the PLC programmable controller.
After material is filled in finished bag, the push rod of the 3rd push-rod electric machine drives the second installing plate to move down, the second peace Loading board drives travel switch to move down, and signal is passed to PLC programmable controls by travel switch and detection bar contact, travel switch Device processed, PLC programmable controller make alarm bell send alarm sound, prompt intuitively, conveniently.
3rd solenoid valve is connected with above-mentioned PLC programmable controller.
Using more than structure, by PLC programmable controller the 3rd solenoid valve can control to obtain electric or dead electricity.
Several limited posts are fixed on second jolting plate, a high position for limited post is 30-50mm.
Using more than structure, /V can be carried out to the bottom of finished bag by limited post, avoid finished bag from the second vibrations Depart from plate, position-limiting action is good.
Compared with prior art, the production method of the nano-class rice starch of this improvement has the following advantages:
1st, it is combined in this production method method by dry pulverization process with wet pulverizing, instead of traditional grinding mode, The time of production can be greatlyd save, production cost is low.
2nd, by the first vibration motor the first jolting plate is made to generate vibrations, the first jolting plate drives raw material bag vibrations, makes original Material in material bag moves down, and vibrations are convenient.
3rd, by second spring claw and locating support is made to lean, raw material bag can be avoided to be slid out from positioning column, Good antiskid effect.
4th, by above and below suction pipe and will move horizontally, asepwirator pump is defeated by the mixture in blending bin everywhere by suction pipe Go out into case, it can be achieved that comprehensive to being sampled in blending bin, check precisely.
5th, delivered air to by air compressor machine in push pipe, air is exported from venthole, by blending bin side-walls Material is pushed at agitating shaft, can significantly less stirring time, push effect it is good.
Description of the drawings
Fig. 1 is the planar structure schematic diagram of feeding device.
Fig. 2 is the close-up schematic view at A in Fig. 1.
Fig. 3 is the close-up schematic view at B in Fig. 1.
Fig. 4 is the sectional view of mixing arrangement.
Fig. 5 is the close-up schematic view at C in Fig. 4.
Fig. 6 is the sectional view of delivery device in mixing arrangement.
Fig. 7 is the planar structure schematic diagram of packing apparatus.
Fig. 8 is the close-up schematic view at D in Fig. 7.
Fig. 9 is the dimensional structure diagram that packing apparatus removes part.
In figure, 1, rack;2nd, the first solenoid valve;3rd, storage tank;3a, the first delivery outlet;3b, first charging aperture;4th, first Delivery pump;5th, feeding tube;5a, guide portion;6th, link;7th, locating support;7a, bottom plate;8th, connecting rod;9th, mounting ring;10th, displacement Sensor;10a, induction part;11st, mounting rod;12nd, cylinder;13rd, positioning column;13a, introduction part;14th, claw;15th, second spring; 16th, the first installing plate;17th, the first vibration motor;18th, the first jolting plate;19th, the first spring;20th, the first push-rod electric machine;21st, lead Rail;22nd, sliding block;23rd, idler wheel;24th, controller;25th, blending bin;25a, powder delivery outlet;25b, peep hole;25c, powder input Mouthful;26th, agitating vane;27th, second solenoid valve;28th, case;29th, suction pipe;30th, asepwirator pump;31st, access panel;32nd, stir Axis;33rd, stirring motor;34th, guide rail;35th, fog-spray nozzle;36th, delivery pipe;37th, flow control valve;38th, the second delivery pump;39th, store up Liquid case;40th, cylinder is driven;41st, sliding block;42nd, movable plate;43rd, the second push-rod electric machine;44th, mounting blocks;45th, passage;46th, even Siphunculus;47th, air compressor machine;48th, push pipe;48a, venthole;49th, PLC programmable controller;50th, alarm bell;51st, stent;52nd, it is fixed Position cylinder;53rd, locating piece;53a, locating slot;54th, locating ring;55th, the 3rd solenoid valve;56th, material stock tank;56a, the second delivery outlet; 56b, the second input port;57th, detection bar;58th, the 3rd push-rod electric machine;59th, guide rail;60th, sliding block;61st, limited post;62nd, the second shake Movable plate;63rd, the second vibration motor;64th, the second installing plate;65th, the 3rd spring;66th, travel switch;67th, rubber strip.
Specific embodiment
It is specific embodiments of the present invention and with reference to attached drawing below, technical scheme is further described, But the present invention is not limited to these embodiments.
The production method of the nano-class rice starch of this improvement, the raw material of production is rice, is included the following steps:
A, the preparation of rice starch:Rice is impregnated into 16-20h in 0.8% sodium hydrate aqueous solution first, is stirred per 4h Once, soak is removed, colloid mill is crossed after beater mashing, then is gone after impregnating 12-16h with 0.8% sodium hydrate aqueous solution Soak adds in deionized water, centrifuges, goes supernatant, repeated washing 3-5 times;After last time adds in deionized water, PH value is adjusted to neutrality, is centrifuged, gained precipitation is rice starch;In the present embodiment, first by rice in 0.8% hydrogen 16h is impregnated in aqueous solution of sodium oxide;Soak is removed after impregnating 14h with 0.8% sodium hydrate aqueous solution again;Repeated washing 4 times;
B, homogenization:The rice starch slurries of preparation are carried out by level-one in 50-90MPa using nm super high homogenizer Rice starch slurries after level-one homogenization are carried out double-stage homogenization by homogenization with Microfluidizer in 160-240MPa Processing;In the present embodiment, the rice starch slurries of preparation are carried out by level-one homogeneous in 60MPa using nm super high homogenizer Rice starch slurries after level-one homogenization are carried out double-stage homogenization processing by processing with Microfluidizer in 200MPa
C, it is spray-dried:Material is spray-dried by spray tower, 240-260 DEG C of inlet air temperature, leaving air temp 60- 80℃;In the present embodiment, 250 DEG C of inlet air temperature, 70 DEG C of leaving air temp;
D, crush:The rice starch after spray drying is crushed by airslide disintegrating mill;
E, detect:The grain size of detection gained starch.
It using this method, is combined with wet pulverizing by dry pulverization process, instead of traditional grinding mode, can saved significantly The time required to saving production, production cost is low.
As shown in Figure 1, Figure 2, shown in Fig. 4, Fig. 5, Fig. 7, Fig. 8, airslide disintegrating mill in step d includes rack 1, in rack 1 according to Secondary to be provided with feeding device, mixing arrangement, reducing mechanism and packing apparatus, reducing mechanism is using air-flow of the prior art Grinding mode;Feeding device includes feeding tube 5, storage tank 3 and the locating support 7 for positioning raw material bag, locating support 7 and storage Batch can 3 is arranged at 1 in rack, and 3 lower end of storage tank, which has in the first delivery outlet 3a, the first delivery outlet 3a, is provided with the first electromagnetism There is first charging aperture 3b, first charging aperture 3b to be connected with 5 one end of feeding tube for valve 2,3 upper end of storage tank, 5 other end of feeding tube Above locating support 7, and the end has guide portion 5a, and being provided with one in rack 1 can drive what guide portion 5a was moved up and down Moving mechanism is additionally provided with the first delivery pump 4 in feeding tube 5;Moving mechanism includes cylinder 12 and mounting ring 9, the cylinder of cylinder 12 Body is fixed in rack 1, and the cylinder body of cylinder 12 is fixed on by link 6 in rack 1;The piston rod of cylinder 12 straight down, The piston rod end of cylinder 12 is connected by connecting rod 8 with mounting ring 9, and guide portion 5a is fixed in mounting ring 9, and guide portion 5a leads to Bolted mode is crossed to be fixed in mounting ring 9;The control mechanism that cylinder 12 can be controlled to act is additionally provided in rack 1;It is mixed It attaches together and puts including blending bin 25, fog-spray nozzle 35 and liquid reserve tank 39, blending bin 25 and liquid reserve tank 39 are each attached in rack 1, mixing Case 25 and liquid reserve tank 39 are fixed in rack 1 by welding;25 top of blending bin has powder input port 25c, powder Body input port 25c is connected by the first connecting tube with the first delivery outlet 3a, and 25 lower part of blending bin has powder delivery outlet 25a, Second solenoid valve 27 is provided in powder delivery outlet 25a, fog-spray nozzle 35 is arranged in blending bin 25, the liquid outlet court of fog-spray nozzle 35 Under, the inlet of fog-spray nozzle 35 is connected by delivery pipe 36 with liquid reserve tank 39, and the second delivery pump 38 is provided in delivery pipe 36, 25 top of blending bin is additionally provided with agitating shaft 32, and 32 upper end of agitating shaft is connected with stirring motor 33, and the upper end of agitating shaft 32 passes through The mode of key connection is connected with the output shaft of stirring motor 33, and stirring motor 33 is fixed in blending bin 25;32 lower end of agitating shaft It penetrates in blending bin 25 and is connected with agitating vane 26, the lower end of agitating shaft 32 is by way of key connection and 26 phase of agitating vane Even;The draw frame machine of material in blending bin 25 can be drawn by being provided in rack 1, and draw frame machine includes suction pipe 29, the second push rod Motor 43, asepwirator pump 30, mounting blocks 44 and case 28, the second push-rod electric machine 43 can drive the movement that it moves horizontally by one Structure setting in blending bin 25, the push rod of the second push-rod electric machine 43 straight down, the push rod end of the second push-rod electric machine 43 and 44 phase of mounting blocks is fixed, and the push rod end of the second push-rod electric machine 43 is mutually fixed by bolted connection with mounting blocks 44;It inhales The feed end of pipe 29 is taken to be fixed on mounting blocks 44, and the feed end is downward, the discharge end of suction pipe 29 is pierced by blending bin 25 In in case 28, asepwirator pump 30 is arranged in suction pipe 29;Packing apparatus includes material stock tank 56, and material stock tank 56 is fixed on rack On 1, material stock tank 56 is fixed on by welding in rack 1;56 top of material stock tank has the second input port 56b, and second is defeated Entrance 56b is connected by the second connecting tube with powder delivery outlet 25a, and 56 lower part of material stock tank has the second delivery outlet 56a, and second The 3rd solenoid valve 55 is provided in delivery outlet 56a, the detent mechanism that finished bag edge can be positioned, machine are provided in rack 1 Shock structure is additionally provided on frame 1, shock structure includes the second jolting plate 62, the second vibration motor 63 and the second installing plate 64, Second installing plate 64 can drive its first elevating mechanism moved up and down to be arranged in rack 1 by one, and the second jolting plate 62 is set It puts on the second installing plate 64, and the second jolting plate 62 is in immediately below the second delivery outlet 56a, the second jolting plate 62 and the second peace There is the 3rd spring 65, in the present embodiment, the quantity of the 3rd spring 65 is four between loading board 64;3rd spring, 65 one end and Second jolting plate, 62 lower surface is connected, and 65 other end of the 3rd spring and 64 upper surface of the second installing plate are connected, the second vibration motor 63 are fixed on 62 lower surface of the second jolting plate, and the second vibration motor 63 is fixed on the second jolting plate 62 by bolted connection Lower surface.
As shown in Figure 1 and Figure 2, control mechanism includes displacement sensor 10, mounting rod 11 and controller 24, mounting rod 11 1 End is connected with mounting ring 9, and one end of mounting rod 11 is connected by bolted connection with mounting ring 9;Mounting rod 11 is another One end is connected with displacement sensor 10, and the other end of mounting rod 11 is connected by bolted connection with displacement sensor 10 It connects;And the induction part 10a of displacement sensor 10, towards locating support 7, controller 24 is fixed in rack 1, and controller 24 passes through The mode of bolted mode is fixed in rack 1, and controller 24 is using the microcontroller that can be bought in the market, microcontroller control The program of cylinder and sensor processed is existing, and program need not update;Cylinder 12 and displacement sensor 10 and the control Device 24 processed is connected.
As shown in Figure 1, Figure 2, Figure 3 shows, 7 upper end of locating support has the positioning column 13 that can position raw material bag, in the present embodiment In, the quantity of positioning column 13 is four;13 upper end of positioning column has introduction part 13a, can by introduction part 13a using the structure Facilitate and penetrate at raw material bag edge in positioning column 13, guiding role is good;13 lower end of positioning column is arranged with rubber ring, using the knot Structure can increase its frictional force by rubber ring;7 lower end of locating support, which has, to shake the percussion mechanism that raw material bag is shaken Motivation structure includes the first jolting plate 18 and the first vibration motor 17, and the first jolting plate 18 is arranged on the bottom plate 7a of locating support 7, There are the first spring 19, one end of the first spring 19 and the first vibrations between first jolting plate 18 and the bottom plate 7a of locating support 7 18 phase of plate is fixed, and the other end of the first spring 19 is fixed with the bottom plate 7a phases of locating support 7, and the first vibration motor 17 is fixed on One jolting plate, 18 lower surface, the first vibration motor 17 are fixed on the lower surface of the first jolting plate 18 by bolted connection.
As shown in Figure 1 and Figure 2, anti-slipping mechanism is additionally provided on locating support 7, anti-slipping mechanism includes 14 and second bullet of claw Spring 15,14 lower end of claw and locating support 7 are hinged, and one end of second spring 15 is connected with 14 middle part of claw, second spring 15 other end is connected with locating support 7, and 14 upper end of claw can be resisted against on locating support 7.
As shown in Figure 1, Figure 3, several idler wheels 23, in the present embodiment, the quantity of idler wheel 23 are additionally provided on locating support 7 For four;Idler wheel 23 can drive the second elevating mechanism of its oscilaltion to be connected with one, using the structure, pass through the second elevator Idler wheel 23 can be packed up or put down by structure.
As shown in Figure 1, Figure 3, the second elevating mechanism includes the first installing plate 16, the first push-rod electric machine 20, guide rail 21 and slides Block 22, guide rail 21 are fixed on vertically on locating support 7, and guide rail 21 is fixed on by bolted connection on locating support 7;It is sliding Block 22 is arranged in guide rail 21, and sliding block 22 can be moved up and down along guide rail 21;First push-rod electric machine 20 is fixed on locating support 7 On bottom plate 7a, straight down, the push rod end of the first push-rod electric machine 20 is connected the push rod of the first push-rod electric machine 20 with sliding block 22, First installing plate, 16 upper surface is connected with sliding block 22, and 16 lower surface of the first installing plate is connected with idler wheel 23.
As shown in fig. 6, pushing away at agitating shaft 32 can be pushed to by the material of 25 side-walls of blending bin by being additionally provided in rack 1 Mechanism is sent, delivery device includes several push pipes 48 and air compressor machine 47, and in the present embodiment, the quantity of push pipe 48 is 12 Root;Several push pipes 48 are located at vertically on 25 side wall of blending bin, and 48 lower end of push pipe is blind end, and 48 upper end of push pipe is air inlet End, push pipe 48 are connected by communicating pipe 46 with air compressor machine 47, and air compressor machine 47 is fixed in rack 1;It opens 48 side of push pipe Equipped with several venthole 48a, in the present embodiment, the quantity of venthole 48a is six;Venthole 48a is towards agitating shaft 32.
As shown in Figure 4, Figure 5, moving structure includes driving cylinder 40, movable plate 42, sliding block 41 and guide rail 34,34 water of guide rail Flat to be fixed in blending bin 25, guide rail 34 is fixed on by bolted connection in blending bin 25;Sliding block 41 is arranged on guide rail In 34, sliding block 41 can move back and forth along guide rail 34;The cylinder body of driving cylinder 40 is fixed in blending bin 25, driving cylinder 40 Cylinder body is fixed on by bolted connection in blending bin 25;The piston rod end of driving cylinder 40 is connected with sliding block 41, drives The take offence piston rod end of cylinder 40 is connected by bolted connection with sliding block 41;Movable plate 42 is fixed on sliding block 41, is moved Movable plate 42 is fixed on by bolted connection on sliding block 41;Second push-rod electric machine 43 is fixed on movable plate 42, and second pushes away Bar motor 43 is fixed on by bolted connection on movable plate 42.
As shown in figure 4, flow control valve 37 is additionally provided in delivery pipe 36;Peep hole 25b is provided in blending bin 25, is seen It examines and transparent access panel 31 is provided at the 25b of hole, access panel 31 is organic plates.
As shown in Figure 4, Figure 5, passage 45, the charging of 45 upper end of passage and suction pipe 29 are additionally provided on suction pipe 29 End is connected, and 45 lower end of passage can be resisted against 25 bottom of blending bin, using the structure, can be facilitated material by passage 45 It is transported in suction pipe 29, guiding role is good.
As shown in Figure 7, Figure 8, the first elevating mechanism includes the 3rd push-rod electric machine 58, sliding block 60 and guide rail 59, and guide rail 59 is perpendicular It is directly fixed in rack 1, guide rail 59 is fixed on by bolted connection in rack 1;Sliding block 60 is arranged in guide rail 59, sliding Block 60 can be moved up and down along guide rail 59;3rd push-rod electric machine 58 is fixed in rack 1, and the 3rd push-rod electric machine 58 is connected by bolt The mode connect is fixed in rack 1;The push rod of 3rd push-rod electric machine 58 straight up, the push rod end of the 3rd push-rod electric machine 58 and Sliding block 60 is connected, and the push rod end of the 3rd push-rod electric machine 58 is connected by bolted connection with sliding block 60;Second installing plate 64 are fixed on sliding block 60, and the second installing plate 64 is fixed on by bolted connection on sliding block 60.
As shown in Fig. 7, Fig. 9, detent mechanism includes locating ring 54, locating piece 53 and positioning cylinder 52, and locating ring 54 is arranged And be fixed on the second delivery outlet 56a, positioning cylinder 52 is fixed on by stent 51 in rack 1, the piston rod of positioning cylinder 52 Towards the second delivery outlet 56a, the piston rod end of positioning cylinder 52 is mutually fixed with locating piece 53, the tailpiece of the piston rod of positioning cylinder 52 Portion is mutually fixed by bolted connection with locating piece 53;The locating slot to match with locating ring 54 is offered on locating piece 53 53a;In the present embodiment, the quantity of locating piece 53 and positioning cylinder 52 is two.
As shown in figure 9, being provided with rubber strip 67 in locating slot 53a, using the structure, it can be increased by rubber strip 67 and rubbed The phenomenon that wiping power, avoiding the occurrence of slip;There is the protrusion of several protrusions, in the present embodiment, protrusion on rubber strip 67 Quantity is 30.
As shown in Figure 7, Figure 8, prompting mechanism is additionally provided in rack 1, prompting mechanism includes travel switch 66, detection bar 57th, alarm bell 50 and PLC programmable controller 49, alarm bell 50 are fixed in rack 1, and alarm bell 50 is fixed by bolted connection In rack 1;Travel switch 66 is fixed on 64 lower surface of the second installing plate, and travel switch 66 is fixed by bolted connection In the lower surface of the second installing plate 64;Detection bar 57 is fixed in rack 1, and detection bar 57 is fixed on by bolted connection In rack 1;Detection bar 57 can and travel switch 66 be in contact, travel switch 66 and alarm bell 50 with the PLC programmable controller 49 are connected, and in the present embodiment, PLC programmable controller 49 is using the controller that can be bought in the market, controller control row The program of Cheng Kaiguan, alarm bell and the 3rd solenoid valve are existing, and program need not update;3rd solenoid valve 55 and PLC can Programmable controller 49 is connected, and using the structure, by PLC programmable controller 49 the 3rd solenoid valve 55 can control to obtain electric or lose Electricity.
As shown in Figure 7, Figure 8, be fixed with several limited posts 61 on the second jolting plate 62, the high position of limited post 61 for 30- 50mm, in the present embodiment, the height of limited post 61 is 40mm, can be to the bottom of finished bag by limited post 61 using the structure Portion carries out /V, finished bag is avoided to depart from from the second jolting plate 62, position-limiting action is good.
The operation principle of airslide disintegrating mill is as follows:It will penetrate in positioning column 13, lead to for storing the raw material bag edge of raw material Crossing second spring 15 makes claw 14 and locating support 7 lean, and opens the first delivery pump 4, and the first delivery pump 4 passes through feeding tube 5 By the feedstock transportation in raw material bag into storage tank 3, as the raw material in raw material bag gradually decreases, examined by displacement sensor 10 The distance of raw material in guide portion 5a and material bag is surveyed, signal is passed into controller 24, controller 24 controls the piston of cylinder 12 Bar drive mounting ring 9 move down, mounting ring 9 drive guide portion 5a move down, make guide portion 5a always in raw material bag Raw material contacts;Raw material in storage tank 3 is transported to by the first communicating pipe in blending bin 25, controls the output shaft of stirring motor 33 Agitating shaft 32 is driven to rotate, agitating shaft 32 drives agitating vane 26 to rotate, and push pipe 48 is delivered air to by air compressor machine 47 In, air is exported from venthole 48a, and under the action of air-flow, the material of 25 side-walls of blending bin is pushed to agitating shaft 32 Place;Meanwhile the second delivery pump 38 is opened, the modifying agent in liquid reserve tank 39 is transported to spray by the second delivery pump 38 by delivery pipe 36 In mist first 35, modifying agent and raw material is made uniformly to mix, when needing to be sampled it, the piston rod band of control driving cylinder 40 Movable slider 41 moves back and forth, and sliding block 41 drives movable plate 42 to move back and forth, and movable plate 42 drives the second push-rod electric machine 43 to move back It is dynamic;Control the push rod of the second push-rod electric machine 43 that mounting blocks 44 is driven to move down, mounting blocks 44 drive suction pipe 29 to move down, Mixture in blending bin 25 everywhere can be output in case 28, it can be achieved that comprehensive right by asepwirator pump 30 by suction pipe 29 It is sampled in blending bin 25;Raw material in blending bin 25 is transported to by the second communicating pipe in material stock tank 56 after crushing, will be into The edge of product bag is sleeved on locating ring 54, and the piston rod of control positioning cylinder 52 drives locating piece 53 to move, locating piece 53 and fixed Position ring 54 leans, and the edge of finished bag is fixed on the second delivery outlet 56a, passes through the control of PLC programmable controller 49 the Three solenoid valves 55 make the second delivery outlet 56a be in opening state;The push rod band movable slider 60 for controlling the 3rd push-rod electric machine 58 is upward Mobile, sliding block 60 drives the second installing plate 64 to move up, and the second installing plate 64 drives the second jolting plate 62 to move up, and makes the The bottom of two jolting plates 62 and finished bag contacts, and by the second vibration motor 63 the second jolting plate 62 is driven to shake, the second vibrations Plate 62 drives finished bag to generate vibrations, and as material gradually increases in finished bag, the push rod of the 3rd push-rod electric machine 58 of control drives Sliding block 60 moves gradually downward, and sliding block 60 drives the second installing plate 64 to move gradually downward, after material is filled in finished bag, row Cheng Kaiguan 66 and detection bar 57 contact, and signal is passed to PLC programmable controller 49, PLC PLC technologies by travel switch 66 Device 49 makes alarm bell 50 send alarm sound;The mixing of raw material and other auxiliary agents can select the function according to actual needs.
Specific embodiment described herein is only to spirit explanation for example.Technical field that the present invention belongs to Technical staff can do various modifications or additions to described specific embodiment or substitute in a similar way, but Spirit without departing from invention or beyond the scope of the appended claims.

Claims (6)

1. the production method of the nano-class rice starch of improvement, the raw material of production is rice, which is characterized in that including walking as follows Suddenly:
A, the preparation of rice starch:Rice is impregnated into 16-20h in 0.8% sodium hydrate aqueous solution first, one is stirred per 4h Under, soak is removed, colloid mill is crossed after beater mashing, then goes to soak after impregnating 12-16h with 0.8% sodium hydrate aqueous solution Liquid is steeped, adds in deionized water, centrifuges, goes supernatant, repeated washing 3-5 times;After last time adds in deionized water, adjust PH value is saved to neutrality, is centrifuged, gained precipitation is rice starch;
B, homogenization:The rice starch slurries of preparation are carried out by level-one homogeneous in 50-90MPa using nm super high homogenizer Processing, the rice starch slurries after level-one homogenization are carried out in 160-240MPa at double-stage homogenization with Microfluidizer Reason;
C, it is spray-dried:Material is spray-dried by spray tower, 240-260 DEG C of inlet air temperature, leaving air temp 60-80 ℃;
D, crush:The rice starch after spray drying is crushed by airslide disintegrating mill;
E, detect:The grain size of detection gained starch;Airslide disintegrating mill in the step d includes rack, in the rack successively Feeding device, mixing arrangement, reducing mechanism and packing apparatus are provided with, the feeding device includes feeding tube, storage tank and use In the locating support of positioning raw material bag, locating support and storage tank are arranged in rack, and storage tank lower end has the first output Mouthful, the first solenoid valve is provided in the first delivery outlet, storage tank upper end has first charging aperture, first charging aperture and feeding tube one End is connected, and the feeding tube other end is located above locating support, and the end has guide portion, is provided with one in rack and can drive and leads The moving mechanism that material portion moves up and down is additionally provided with the first delivery pump in feeding tube;The moving mechanism includes cylinder and installation Ring, the cylinder body of cylinder are fixed on by link in rack, and straight down, the piston rod end of cylinder passes through the piston rod of cylinder Connecting rod is connected with mounting ring, and guide portion is fixed in mounting ring, and the control machine that cylinder can be controlled to act is additionally provided in rack Structure;The mixing arrangement includes blending bin, fog-spray nozzle and liquid reserve tank, and blending bin and liquid reserve tank are fixed on by welding In rack, mixing upper box part has powder input port, and powder input port is connected by the first connecting tube with the first delivery outlet, mixes Mould assembling lower part has powder delivery outlet, and second solenoid valve is provided in powder delivery outlet, and fog-spray nozzle is arranged in blending bin, spraying Downward, the inlet of fog-spray nozzle is connected the liquid outlet of head by delivery pipe with liquid reserve tank, and the second conveying is provided in delivery pipe Pump, mixing upper box part are additionally provided with agitating shaft, and agitating shaft upper end is connected with stirring motor, agitating shaft lower end penetrate in blending bin and Agitating vane is connected, and the draw frame machine that can draw material in blending bin is provided in rack, and draw frame machine includes suction pipe, second Push-rod electric machine, asepwirator pump, mounting blocks and case, the second push-rod electric machine can drive its moving structure moved horizontally to set by one Put in blending bin, the push rod of the second push-rod electric machine straight down, what the push rod end of the second push-rod electric machine was bolted Mode is mutually fixed with mounting blocks, and the feed end of suction pipe is fixed on mounting blocks, and the feed end is downward, the discharge end of suction pipe It is pierced by blending bin to be located in case, asepwirator pump is arranged in suction pipe;The packing apparatus includes material stock tank, and material stock tank passes through The mode of welding is fixed in rack, and material stock tank top has the second input port, and the second input port passes through the second connecting tube and powder Body delivery outlet is connected, and material stock tank lower part has the second delivery outlet, is provided with the 3rd solenoid valve in the second delivery outlet, is set in rack The detent mechanism that finished bag edge can be positioned is equipped with, shock structure is additionally provided in rack, shock structure includes the second shake Movable plate, the second vibration motor and the second installing plate, the second installing plate can drive the first elevating mechanism that it moves up and down by one It being arranged in rack, the second jolting plate is arranged on the second installing plate, and the second jolting plate is in immediately below the second delivery outlet, the There is the 3rd spring between two jolting plates and the second installing plate, the 3rd spring one end and the second jolting plate lower surface are connected, and the 3rd The spring other end and the second installing plate upper surface are connected, and the second vibration motor is fixed on the second jolting plate lower surface.
2. the production method of the nano-class rice starch of improvement according to claim 1, which is characterized in that the control machine Structure includes displacement sensor, mounting rod and controller, and mounting rod one end is connected with mounting ring, and the mounting rod other end and displacement pass Sensor is connected, and the induction part of displacement sensor, towards locating support, controller is fixed in rack, cylinder and displacement sensing Device is connected with the controller.
3. the production method of the nano-class rice starch of improvement according to claim 1, which is characterized in that the positioning branch Frame upper end has and can position the positioning column of raw material bag, locating support lower end have can to the percussion mechanism that raw material bag is shaken, The percussion mechanism includes the first jolting plate and the first vibration motor, and the first jolting plate is arranged on the bottom plate of locating support, the There is the first spring between one jolting plate and the bottom plate of locating support, one end of the first spring is mutually fixed with the first jolting plate, the The other end of one spring is mutually fixed with the bottom plate of locating support, and the first vibration motor is fixed on the first jolting plate lower surface.
4. the production method of the nano-class rice starch of improvement according to claim 1, which is characterized in that the positioning column Upper end has introduction part.
5. the production method of the nano-class rice starch of improvement according to claim 1, which is characterized in that the positioning column Lower end is arranged with rubber ring.
6. the production method of the nano-class rice starch of improvement according to claim 1, which is characterized in that the positioning branch Several idler wheels are additionally provided on frame, idler wheel can drive the second elevating mechanism of its oscilaltion to be connected with one.
CN201810021739.9A 2016-08-16 2016-08-16 Production method of improved nano-grade rice starch Active CN108047339B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201810021739.9A CN108047339B (en) 2016-08-16 2016-08-16 Production method of improved nano-grade rice starch

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201810021739.9A CN108047339B (en) 2016-08-16 2016-08-16 Production method of improved nano-grade rice starch
CN201610670693.4A CN106262776A (en) 2016-08-16 2016-08-16 A kind of production method of nano-class rice starch

Related Parent Applications (1)

Application Number Title Priority Date Filing Date
CN201610670693.4A Division CN106262776A (en) 2016-08-16 2016-08-16 A kind of production method of nano-class rice starch

Publications (2)

Publication Number Publication Date
CN108047339A true CN108047339A (en) 2018-05-18
CN108047339B CN108047339B (en) 2020-12-08

Family

ID=57671964

Family Applications (4)

Application Number Title Priority Date Filing Date
CN201810021743.5A Active CN108191984B (en) 2016-08-16 2016-08-16 Air flow crusher
CN201610670693.4A Withdrawn CN106262776A (en) 2016-08-16 2016-08-16 A kind of production method of nano-class rice starch
CN201810021730.8A Active CN108129577B (en) 2016-08-16 2016-08-16 Improved production method of nano-scale rice starch
CN201810021739.9A Active CN108047339B (en) 2016-08-16 2016-08-16 Production method of improved nano-grade rice starch

Family Applications Before (3)

Application Number Title Priority Date Filing Date
CN201810021743.5A Active CN108191984B (en) 2016-08-16 2016-08-16 Air flow crusher
CN201610670693.4A Withdrawn CN106262776A (en) 2016-08-16 2016-08-16 A kind of production method of nano-class rice starch
CN201810021730.8A Active CN108129577B (en) 2016-08-16 2016-08-16 Improved production method of nano-scale rice starch

Country Status (1)

Country Link
CN (4) CN108191984B (en)

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107242571B (en) * 2017-05-17 2020-09-08 宁波拜尔玛生物科技有限公司 Oligosaccharide prepared based on nanotechnology and application thereof in intestinal health
CN108323684B (en) * 2018-02-05 2021-04-09 北京工商大学 A method for processing semen oryzae as raw material for preparing rice dumpling and sushi with low GI value
CN110679695A (en) * 2019-10-30 2020-01-14 海宁纪亨保健食品有限公司 Ginger tea processing system

Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB1537193A (en) * 1976-05-21 1978-12-29 Muehle Rueningen Ag Treatment of flour or grain
CN101016343A (en) * 2006-12-29 2007-08-15 南昌大学 Method for preparing nano-class rice starch
CN201559817U (en) * 2009-11-13 2010-08-25 酒泉敦煌种业百佳食品有限公司 Vacuum packing vibrator
CN101880332A (en) * 2010-06-29 2010-11-10 南昌大学 Method for preparing nano-scale rice starch
CN102463188A (en) * 2010-11-05 2012-05-23 施丽萍 Jet mill
JP2014100094A (en) * 2012-11-20 2014-06-05 Ichimaru:Kk Method and device for manufacturing rice paste
CN205112241U (en) * 2015-11-18 2016-03-30 嘉兴职业技术学院 Injection molding machine with improved structure
CN105498619A (en) * 2016-01-26 2016-04-20 浙江鸿翔环保建材科技有限公司 Ecological-building-material mixing and stirring system

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1557178A (en) * 2004-01-19 2004-12-29 山东省鲁洲食品集团有限公司 Rice protein extraction and rice starch making method using rice as material
JP5778934B2 (en) * 2011-02-04 2015-09-16 日本ニューマチック工業株式会社 Crusher
KR101342402B1 (en) * 2013-09-12 2014-01-07 (주)제이엠테크 Jet mill combining grinding apparatus and high-speed grinding apparatus therefor
CN204656457U (en) * 2015-05-19 2015-09-23 安徽皓皓食品有限公司 Sweeping type mixing of materials agitating device

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB1537193A (en) * 1976-05-21 1978-12-29 Muehle Rueningen Ag Treatment of flour or grain
CN101016343A (en) * 2006-12-29 2007-08-15 南昌大学 Method for preparing nano-class rice starch
CN201559817U (en) * 2009-11-13 2010-08-25 酒泉敦煌种业百佳食品有限公司 Vacuum packing vibrator
CN101880332A (en) * 2010-06-29 2010-11-10 南昌大学 Method for preparing nano-scale rice starch
CN102463188A (en) * 2010-11-05 2012-05-23 施丽萍 Jet mill
JP2014100094A (en) * 2012-11-20 2014-06-05 Ichimaru:Kk Method and device for manufacturing rice paste
CN205112241U (en) * 2015-11-18 2016-03-30 嘉兴职业技术学院 Injection molding machine with improved structure
CN105498619A (en) * 2016-01-26 2016-04-20 浙江鸿翔环保建材科技有限公司 Ecological-building-material mixing and stirring system

Also Published As

Publication number Publication date
CN106262776A (en) 2017-01-04
CN108129577B (en) 2020-12-22
CN108047339B (en) 2020-12-08
CN108129577A (en) 2018-06-08
CN108191984B (en) 2020-11-06
CN108191984A (en) 2018-06-22

Similar Documents

Publication Publication Date Title
CN108047339A (en) The production method of the nano-class rice starch of improvement
CN106986382B (en) The preparation method of improved nano antimony tin oxide powder
CN207401531U (en) Gas adsorption desorption experiment coal sample crushes and screens device
CN107726780A (en) A kind of rice paddy seed dries screening plant
CN106628695A (en) Honey storage tank with constant temperature function
CN111196961B (en) Brewing fermentation tank
CN208130900U (en) A kind of premix configuration equipment
CN107188211B (en) The production method of improved powdered whiting
CN206082274U (en) Intelligent mixer
CN205731016U (en) Full landform automatic adjustment height blender
CN205462418U (en) Building material smashes agitating unit
CN209271357U (en) A kind of stock stirring device of silicon nitride
CN107032403B (en) The processing technology of improved nanometer wolframic acid caesium powder
CN209489242U (en) A kind of blender of pleurotus eryngii cultivating material
CN208197285U (en) A kind of filling device of loraided bag wiredrawing machine
CN204060665U (en) The electronic mulling sled of a kind of enclosed pump
CN107413238A (en) Powder humidifier and powder air-humidification method
CN107714730A (en) A kind of processing method of nano-pearl powder
CN107712709A (en) A kind of production method of nanometer of pumpkin powder
CN106276930B (en) A kind of manufacture craft of nano-scale white carbon black
CN208783182U (en) A kind of energy-efficient deep soil loosening fertilizer apparatus
CN208526892U (en) A kind of preparation facilities of graphene powder
CN208757791U (en) A kind of geotechnical engineering rubble washing and screening plant
CN208131216U (en) A kind of low-temperature crushing device of pedotheque
CN205501172U (en) Intestines membrane peptides extraction element

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
TA01 Transfer of patent application right

Effective date of registration: 20201123

Address after: 318000 no.6-63 Dayuan village, Baishuiyang Town, Linhai City, Taizhou City, Zhejiang Province

Applicant after: Cai Huiping

Address before: 314400 Room 302, No. 145, Changtianan District, Qunyuan Community, Beishi Street, Haining City, Jiaxing City, Zhejiang Province

Applicant before: JIAXING YONGJIN CLOTHING Co.,Ltd.

TA01 Transfer of patent application right
GR01 Patent grant
GR01 Patent grant
TR01 Transfer of patent right

Effective date of registration: 20220606

Address after: 022150 East Senyuan street, Guangming Road, Yakeshi City, Hulunbuir City, Inner Mongolia Autonomous Region (in the building of Senyuan group)

Patentee after: Hulunbuir homologous Ecological Agriculture Co.,Ltd.

Address before: 318000 No. 6-63, Dayuan village, Baishuiyang Town, Linhai City, Taizhou City, Zhejiang Province

Patentee before: Cai Huiping

TR01 Transfer of patent right