CN101423556A - Starch milk treatment process and apparatus - Google Patents

Starch milk treatment process and apparatus Download PDF

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Publication number
CN101423556A
CN101423556A CNA2008101835455A CN200810183545A CN101423556A CN 101423556 A CN101423556 A CN 101423556A CN A2008101835455 A CNA2008101835455 A CN A2008101835455A CN 200810183545 A CN200810183545 A CN 200810183545A CN 101423556 A CN101423556 A CN 101423556A
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starch
starch milk
treatment process
groove
concussion
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CNA2008101835455A
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CN101423556B (en
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邓亚东
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Abstract

The invention relates to a starch producing method and a special tool, namely a starch milk processing technique and equipment. The starch milk processing technique is as follows: in the process of processing starch, the ultrasonic processing process is adopted. The equipment thereof is a vessel-shaped ultrasonic vibrating groove (1) which is provided with a feeding port (7) and a discharging port (3) and is related with an ultrasonic generator. The adoption of ultrasonic high frequency oscillation process ensures that fibers or protein in the starch milk are separated from starch better and more quickly, thereby drastically reducing labor hour, improving the yield of starch, and reducing the production cost.

Description

Starch milk treatment process and equipment
Technical field
The present invention relates to a kind of starch producing method and special tool, i.e. starch milk treatment process and equipment.
Background technology
In starch production process, be in the starch course of processing of raw material particularly at grains such as employing corns, generally all take operations such as immersion, fragmentation, abrasive dust, screening, separation.At first use sulfurous gas soaked with liquid raw material, destroy its proteic structure, carry out fragmentation again and remove plumule, pulverize with impact grinding again, dispel fiber by screening again, with whizzer albumen and starch are separated at last, promptly obtained starch product.Find in the practice that fiber or albumen and starch separation performance are all undesirable in the above-mentioned technology, it is more to expend man-hour, and the yield of product is lower, and combined reaction is that the cost of product is higher.
Summary of the invention
It is higher to the purpose of this invention is to provide a kind of working (machining) efficiency, and the product yield is higher, starch process that product cost is lower and specific equipment.
Above-mentioned purpose is realized by following technical scheme: a kind of starch milk treatment process is characterized in: in the course of processing of starch, adopt the ultrasonication operation.
The said ultrasonication operation that in the starch course of processing, adopts, be raw material through soak, after broken, impact grinding pulverizes, formed starch milk carries out the ultrasonic wave high-frequency vibration to be handled.
The said ultrasonication operation that in the starch course of processing, adopts, be raw material through soak, broken, impact grinding is pulverized, after the screening, formed starch milk carries out the ultrasonic wave high-frequency vibration to be handled, and carries out separation circuit then.
The said ultrasonication operation that in the starch course of processing, adopts, be raw material through soak, after broken, impact grinding pulverizes, formed starch milk carries out the ultrasonic wave high-frequency vibration to be handled, after treated starch milk sieves, carry out the ultrasonic wave high-frequency vibration again and handle, carry out separation circuit then.
The equipment that said ultrasonic wave high-frequency vibration treatment process adopts is a kind of container-like ultrasonic oscillation groove, and the concussion groove is provided with opening for feed and discharge port, and concussion groove and ultrasonic generator interrelate.
Said concussion groove is a container of being made up of cell wall all around and following bottom land, and a side is provided with opening for feed, and opposite side is provided with discharge port, be provided with a concussion plate in the groove, below the concussion plate supporting roll is arranged, supporting roll is contained on the bottom land, and concussion plate and ultrasonic generator interrelate.
Be provided with multilayer in the said concussion groove and can carry out the concussion plate of high frequency oscillation under ultrasonic generator drives, opening for feed is located at the top of cell wall, and discharge port is located at the bottom of groove, constitutes the reciprocal loop of material.
The invention has the beneficial effects as follows: employing ultrasonic wave HF oscillation can make fiber or the albumen and faster and better the separating of starch in the starch milk, thereby reduces work hours significantly, improves the yield of starch, reduces production costs.
Description of drawings
Fig. 1 is the block diagram of first kind of embodiment;
Fig. 2 is the block diagram of second kind of embodiment;
Fig. 3 is the front view of first kind of concussion groove;
Fig. 4 is the right view of first kind of concussion groove;
Fig. 5 is the front view of second kind of concussion groove.
Among the figure as seen: the concussion groove 1, cell wall 2, discharge port 3, bottom land 4, oscillator 5, the concussion plate 6, opening for feed 7.
Embodiment
First kind of embodiment: as shown in Figure 1, the technical process of this Starch Production is in original immersion, pulverizes degerming, impact grinding pulverizing, sieves and go to have increased the operation of ultrasonic vibration in fiber, the separating process.Fig. 3,4 has introduced a kind of ultrasonic concussion groove 1, is a kind of container that is surrounded by cell wall 2, bottom land 4, and a side channel wall top is provided with opening for feed 7, the opposite side middle and lower part is provided with discharge port 3, a slice concussion plate 6 is housed in groove, supporting roll is arranged below the concussion plate 6, supporting roll floats on bottom land.Making starch with corn is example, and this process can be: with corn with and the sulfurous gas soaked with liquid is pulverized again, remove plumule.Raw material enters further pulverizing of impact grinding and makes starch milk then, opening for feed 7 from concussion groove 1 enters in the groove again, send ultrasonic wave more than the 22000HZ by ultrasonic generator, and by the concussion transmitter 5 ultrasonic wave pass to the concussion plate 6, concussion plate 6 produces the intensive high frequency oscillation, starch milk is vibrated, internal structure takes place sharply to change, starch and fiber, between rapidly the disassociation, enter down screener's preface again one, fiber is separated, and again material is sent into separating machine, starch promptly and albumen sepn and is collected into product.
Certainly, ultrasonic oscillation equipment can be diversified.Fig. 4 has introduced a kind of concussion groove 1, by around cell wall 2 and the container formed of following bottom land 4, one side is provided with opening for feed 7, opposite side is provided with discharge port 3, be provided with a concussion plate 6 in the groove, below the concussion plate 6 supporting roll is arranged, supporting roll can roll on bottom land, and concussion plate 6 interrelates with ultrasonic generator.Its contact method is a lot, can directly be contained in ultrasonic generator on the concussion groove 1, also can directly be contained in small-sized waterproof ultrasonic generator on the concussion plate 6, also can on the earthquake plate 6 ultrasonic transducer be installed, the ultrasonic wave of being sent by ultrasonic generator becomes electrical signal and enters transmitter, transmitter becomes electrical signal into ultrasonic wave again, and this mode relatively is fit to more remote hyperacoustic transmission.Certainly, can the combined with intelligent control techniques, adjust hyperacoustic every index according to demand at any time, obtain best effect.
The structure of concussion groove 1 also can be diversified.Fig. 5 has introduced another kind of ultrasonic oscillation groove.Two concussion plates that slightly tilt are up and down arranged in the groove, and opening for feed 7 and discharge port 3 are located at a side, and starch milk is from can back and forth flowing along the concussion plate, and the vibrations that are subjected to are more even.
Second kind of embodiment: as shown in Figure 2, the technical process of this Starch Production is in original immersion, pulverizes degerming, impact grinding pulverizing, sieves and go in fiber, the separating process, has increased the operation of two ultrasonic vibrations.For the first time be to carry out after impact grinding is pulverized.For the second time be after screening, to carry out.Fiber, ultrasonic vibration, separation processes flow process, its better effects if are gone in formation immersion, pulverizing degerming, impact grinding pulverizing, ultrasonic vibration, screening.According to preliminary experiment, under the same conditions, adopt this ultrasonic oscillation operation after, its starch shortens under 15% the situation process period, starch yield improves about 6%.Its benefit is very considerable.

Claims (7)

1. a starch milk treatment process is characterized in that: in the course of processing of starch, adopt the ultrasonication operation.
2. starch milk treatment process according to claim 1, it is characterized in that: the said ultrasonication operation that in the starch course of processing, adopts, be raw material through soak, after broken, impact grinding pulverizes, formed starch milk carries out the ultrasonic wave high-frequency vibration to be handled.
3. starch milk treatment process according to claim 1, it is characterized in that: the said ultrasonication operation that in the starch course of processing, adopts, be raw material through soak, broken, impact grinding is pulverized, after the screening, formed starch milk carries out the ultrasonic wave high-frequency vibration to be handled, and carries out separation circuit then.
4. starch milk treatment process according to claim 1, it is characterized in that: the said ultrasonication operation that in the starch course of processing, adopts, be raw material through soak, after broken, impact grinding pulverizes, formed starch milk carries out the ultrasonic wave high-frequency vibration to be handled, after treated starch milk sieves, carry out the ultrasonic wave high-frequency vibration again and handle, carry out separation circuit then.
5. starch milk treatment process according to claim 1, it is characterized in that: the equipment that said ultrasonic wave high-frequency vibration treatment process adopts is a kind of container-like ultrasonic oscillation groove (1), concussion groove (1) is provided with opening for feed (7) and discharge port (3), and concussion groove (1) interrelates with ultrasonic generator.
6. starch milk treatment process according to claim 5, it is characterized in that: said concussion groove (1) is a container of being made up of cell wall (2) all around and following bottom land (4), one side is provided with opening for feed (7), opposite side is provided with discharge port (3), be provided with a concussion plate (6) in the groove, concussion plate (6) interrelates with ultrasonic generator.
7. starch milk treatment process according to claim 5, it is characterized in that: be provided with multilayer can be carried out high frequency oscillation under ultrasonic generator drives concussion plate (6) in the said concussion groove (1), opening for feed (7) is located at the top of cell wall, discharge port (3) is located at the bottom of groove, constitutes the reciprocal loop of material.
CN2008101835455A 2008-12-18 2008-12-18 Starch milk treatment process and apparatus Expired - Fee Related CN101423556B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2008101835455A CN101423556B (en) 2008-12-18 2008-12-18 Starch milk treatment process and apparatus

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2008101835455A CN101423556B (en) 2008-12-18 2008-12-18 Starch milk treatment process and apparatus

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CN101423556A true CN101423556A (en) 2009-05-06
CN101423556B CN101423556B (en) 2011-02-16

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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102276737A (en) * 2011-08-15 2011-12-14 马同金 Starch separator
CN104804102A (en) * 2015-04-17 2015-07-29 赖世权 Extracting method of potato starch
CN106589144A (en) * 2016-12-15 2017-04-26 湖南汇升生物科技有限公司 Separator for protein and starch
CN106749695A (en) * 2016-12-15 2017-05-31 湖南汇升生物科技有限公司 A kind of aleurone separator
CN106749696A (en) * 2016-12-15 2017-05-31 湖南汇升生物科技有限公司 A kind of aleurone separator
CN108148142A (en) * 2018-02-02 2018-06-12 河南工业大学 A kind of method of ultrasonic wave assisted extraction cornstarch

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102276737A (en) * 2011-08-15 2011-12-14 马同金 Starch separator
CN102276737B (en) * 2011-08-15 2013-07-03 马同金 Starch separator
CN104804102A (en) * 2015-04-17 2015-07-29 赖世权 Extracting method of potato starch
CN106589144A (en) * 2016-12-15 2017-04-26 湖南汇升生物科技有限公司 Separator for protein and starch
CN106749695A (en) * 2016-12-15 2017-05-31 湖南汇升生物科技有限公司 A kind of aleurone separator
CN106749696A (en) * 2016-12-15 2017-05-31 湖南汇升生物科技有限公司 A kind of aleurone separator
CN108148142A (en) * 2018-02-02 2018-06-12 河南工业大学 A kind of method of ultrasonic wave assisted extraction cornstarch
CN108148142B (en) * 2018-02-02 2021-05-07 河南工业大学 Ultrasonic-assisted corn starch extraction method

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Assignee: Changzhi Jinze Biological Engineering Co., Ltd.

Assignor: Deng Yadong

Contract record no.: 2011990000948

Denomination of invention: Starch milk treatment process and apparatus

Granted publication date: 20110216

License type: Exclusive License

Open date: 20090506

Record date: 20110929

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Granted publication date: 20110216

Termination date: 20141218

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