CN105087357A - System and method for regenerating solid phase load high-viscosity microbial material and recycling carriers - Google Patents

System and method for regenerating solid phase load high-viscosity microbial material and recycling carriers Download PDF

Info

Publication number
CN105087357A
CN105087357A CN201510548766.8A CN201510548766A CN105087357A CN 105087357 A CN105087357 A CN 105087357A CN 201510548766 A CN201510548766 A CN 201510548766A CN 105087357 A CN105087357 A CN 105087357A
Authority
CN
China
Prior art keywords
molten
overflow
solution
sedimenting
reverse
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
CN201510548766.8A
Other languages
Chinese (zh)
Other versions
CN105087357B (en
Inventor
钱春香
詹其伟
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.)
Southeast University
Original Assignee
Southeast University
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 Southeast University filed Critical Southeast University
Priority to CN201510548766.8A priority Critical patent/CN105087357B/en
Publication of CN105087357A publication Critical patent/CN105087357A/en
Application granted granted Critical
Publication of CN105087357B publication Critical patent/CN105087357B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • CCHEMISTRY; METALLURGY
    • C12BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
    • C12MAPPARATUS FOR ENZYMOLOGY OR MICROBIOLOGY; APPARATUS FOR CULTURING MICROORGANISMS FOR PRODUCING BIOMASS, FOR GROWING CELLS OR FOR OBTAINING FERMENTATION OR METABOLIC PRODUCTS, i.e. BIOREACTORS OR FERMENTERS
    • C12M45/00Means for pre-treatment of biological substances
    • CCHEMISTRY; METALLURGY
    • C12BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
    • C12NMICROORGANISMS OR ENZYMES; COMPOSITIONS THEREOF; PROPAGATING, PRESERVING, OR MAINTAINING MICROORGANISMS; MUTATION OR GENETIC ENGINEERING; CULTURE MEDIA
    • C12N1/00Microorganisms, e.g. protozoa; Compositions thereof; Processes of propagating, maintaining or preserving microorganisms or compositions thereof; Processes of preparing or isolating a composition containing a microorganism; Culture media therefor

Landscapes

  • Life Sciences & Earth Sciences (AREA)
  • Health & Medical Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Wood Science & Technology (AREA)
  • Organic Chemistry (AREA)
  • Bioinformatics & Cheminformatics (AREA)
  • Zoology (AREA)
  • Genetics & Genomics (AREA)
  • Biotechnology (AREA)
  • Biomedical Technology (AREA)
  • Microbiology (AREA)
  • Biochemistry (AREA)
  • General Engineering & Computer Science (AREA)
  • General Health & Medical Sciences (AREA)
  • Sustainable Development (AREA)
  • Molecular Biology (AREA)
  • Medicinal Chemistry (AREA)
  • Tropical Medicine & Parasitology (AREA)
  • Virology (AREA)
  • Apparatus Associated With Microorganisms And Enzymes (AREA)
  • Micro-Organisms Or Cultivation Processes Thereof (AREA)

Abstract

The invention discloses a system and a method for regenerating a solid phase load high-viscosity microbial material and recycling carriers. The microbial material is added to a powder box of a powder supply system, and is conveyed to a reverse dissolving settling system; water enters the reverse dissolving settling system from a water inlet; after entering the reverse dissolving settling system, the powder and the water are reversely stirred, evenly mixed and dissolved under the action of a stirrer; after a microbial strain is dissolved in the water, a microbial bacterial liquid crude product is prepared, and solid phase carriers settle; the microbial bacterial liquid crude product is conveyed to a secondary dissolving overflow system, and the microbial bacterial liquid crude product is evenly mixed and dissolved once again; the microbial bacterial liquid further treated by the secondary dissolving overflow system is conveyed to a natural settling overflow system, and naturally settles under the effect of gravity; the residual solid phase carriers settle and enter a settling chamber, and the prepared microbial bacterial liquid directly enters a spray facility. The system and the method disclosed by the invention are simple in operation, obvious in effect and friendly to environment; the regenerating rate of microbial thallus is effectively improved, and recycling of the carriers is realized.

Description

The system and method that the regenerating reactivating of the sticky microbial material of a kind of solid supported height and carrier loop utilize
Technical field
The invention belongs to the interdisciplinary science technology of microbiological art and environmental science, relate to the regenerating reactivating of the sticky microbial material of a kind of solid supported height and the method for carrier loop utilization.
Background technology
Microorganism is that one that the earth occurs the earliest is biological, has become omnipresent on the earth, the huge biomass of huge number, participates in natural Diagenetic and metallogenetic processes widely.Based on the process of nature microorganism Diagenesis And Mineralization, microorganism is separated by from nature, by thinking regulation and control, it is controlled to complete in the short period of time at the bonding process that nature is very long, and then prepared miscellaneous microbial material, be widely used in foundation stabilization, side slope protection, Dust Improvement, heavy metal passivation, organic matter degradation and the preparation of building prefabrication product.Compared with traditional physics, chemical process, microbial process environmental friendliness, non-secondary pollution, less investment, instant effect, simple to operate.
As the microniological proudcts of liquid state, condition of storage is harsh, and thalline volume is large, transport inconvenience, and cost is higher.In view of the shortcoming of liquid product, solid-state bacterium powder has very large advantage at storage, transporter mask, is conducive to the sizable application realizing microbial material.For the microorganism of a class high viscosity matter, must the certain solid phase carrier of load at preparation bacterium powder, as colloid quasi-microorganism load calcium carbonate, haydite etc. when preparing bacterium powder, and the process of the regenerating reactivating of bacterium powder, carrier, facility, scale serialization application etc. are sprayed in carrier blocking becomes an engineer applied difficult problem urgently to be resolved hurrily.
Summary of the invention
The object of this invention is to provide the regenerating reactivating of the sticky microbial material of a kind of solid supported height and the system and method for carrier loop utilization, so that microbial cells regenerating reactivating rate effectively can be improved, realize the recycle of carrier, a difficult problem for facility is sprayed in resolved vector blocking, realizes engineer applied by vehicle-mounted form.
For achieving the above object, the present invention is by the following technical solutions:
The system that the regenerating reactivating of the sticky microbial material of solid supported height and carrier loop utilize, comprises powder supplying system, the molten sedimenting system of reverse solution, the molten overflow system of secondary solution and natural subsidence overflow system, wherein,
Described powder supplying system comprises powder box, is provided with screw rod in powder box, and screw rod is connected with the drive-motor for driving it to rotate, and the exit of powder box is provided with motor and is connected with transfer lime, and transfer lime connects the molten sedimenting system of reverse solution;
One side roof part of the molten sedimenting system of described reverse solution is provided with powder feed mouth, and bottom is provided with water-in, and the top of opposite side is provided with the first overflow port, is provided with two agitators in the molten sedimenting system of reverse solution;
One side bottom of the molten overflow system of described secondary solution is provided with the molten overflow system import of secondary solution, and the top of opposite side is provided with the second overflow port, is provided with the 3rd agitator in the molten overflow system of secondary solution;
One side bottom of described natural subsidence overflow system is provided with the import of natural subsidence overflow system, and the top of opposite side is provided with the 3rd overflow port.
Further, the bottom of the molten sedimenting system of described reverse solution, the molten overflow system of secondary solution and natural subsidence overflow system is provided with the settling pocket that there is stopping valve at two ends.
Further, the molten sedimenting system of described reverse solution, the molten overflow system of secondary solution and natural subsidence overflow system are equipped with chuck, and are respectively arranged with chuck import and Jacket outlet in bottom and top.
Further, two agitator retrograde rotations in the molten sedimenting system of described reverse solution are stirred.
Further, the powder feed mouth of the molten sedimenting system of described reverse solution is provided with division board near the first overflow port side.
Further, the connecting pipeline of described water-in, the molten overflow system import of secondary solution, the import of natural subsidence overflow system is provided with impeller pump and spinner-type flowmeter.
The method that the regenerating reactivating of the sticky microbial material of solid supported height and carrier loop utilize, step is as follows:
(1) microbial material adds the powder box of powder supplying system, is delivered to the powder feed mouth of the molten sedimenting system of reverse solution by screw rod, motor, transfer lime; Water enters the molten sedimenting system of reverse solution by water-in; After powder and water enter the molten sedimenting system of reverse solution, under two agitator effects, reverse stirring and evenly mixing solution is molten, prepares microbial inoculum crude product after microorganism strains is water-soluble, and solid phase carrier is settled down to bottom the molten sedimenting system of reverse solution;
(2) the microbial inoculum crude product that prepared by the molten sedimenting system of reverse solution is delivered to the import of the molten overflow system of secondary solution by the first overflow port; Microbial inoculum crude product mixing solution again under the 3rd agitator effect is molten, and the solid phase carrier of Xie Rong is settled down to bottom the molten overflow system of secondary solution;
(3) microbial inoculum that the molten overflow system of secondary solution processes further is delivered to the import of natural subsidence overflow system by the second overflow port; Microbial inoculum is natural subsidence under gravity, and residual solid phase carrier is settled down to bottom natural subsidence overflow system, and the microbial inoculum of preparation directly enters sprinkling facility.
Further, solid phase carrier in the molten sedimenting system of reverse solution, the molten overflow system of secondary solution and natural subsidence overflow system is deposited in bottom, enters the settling pocket of bottom separately, when solid phase carrier runs up to a certain amount of in settling pocket, collect solid phase carrier, the solid phase carrier reusable edible of collection.
Further, through being entered by the first chuck import be arranged on the molten sedimenting system of reverse solution after heating medium heats in heating installation, the heating medium flowed out via the first Jacket outlet enters the chuck of the molten overflow system of secondary solution via the second chuck import; The heating medium that second Jacket outlet flows out enters the chuck of natural subsidence overflow system via the 3rd chuck import, heating medium is got back in heating installation via the 3rd Jacket outlet, enter the molten sedimenting system of reverse solution by the first chuck import again after heating, realize the recycle of heating medium.
The invention has the beneficial effects as follows:
The present invention compared with prior art, has the following advantages:
1, the molten sedimenting system of reverse solution two reverse stirrings of agitator, improve the solubility rate of microorganism strains in solid phase carrier, improve the utilization ratio of microorganism strains.
2, the molten sedimenting system of reverse solution, the molten overflow system of secondary solution, natural subsidence overflow system are equipped with chuck, can pass into heating medium and realize heating, improve the resurrection rate of microorganism strains.
3, the molten sedimenting system of reverse solution, the molten overflow system of secondary solution, natural subsidence overflow system are equipped with settling pocket, collect solid phase carrier, achieve the recycle of carrier.
4, settling pocket adopts transparent glass material, can see the deposition of solid phase carrier in settling pocket intuitively; Settling pocket two ends are provided with stopping valve, and upper end stopping valve is in normally open, and lower end stopping valve is in closing condition; When solid phase carrier in settling pocket is released, close upper end stopping valve, open lower end stopping valve, at the end of blowing, close lower end stopping valve, open upper end stopping valve, realize operate continuously, improve production efficiency.
5, the molten sedimenting system of reverse solution, the molten overflow system of secondary solution, natural subsidence overflow system are equipped with overflow port, adopt overflow manner to be both conducive to extending the settling time of solid phase carrier, achieve again unpowered discharging, reduce energy consumption.
6, the method for the present invention's employing, simple to operate, Be very effective, environmental friendliness, effectively improve microbial cells regenerating reactivating rate, achieve the recycle of carrier, solves the difficult problem that facility is sprayed in carrier blocking, realize engineer applied by vehicle-mounted form.
Accompanying drawing explanation
Fig. 1 is the schematic diagram of system of the present invention.
In figure, 1-powder supplying system, 101-powder box, 102-screw rod, 103-motor, 104-transfer lime, 105-drive-motor; The molten sedimenting system of the reverse solution of 2-, 201-powder feed mouth, 202-water-in, 203-first overflow port, 204-division board, 205-first impeller pump, 206-the first rotor under meter, 207-first agitator, 208-second agitator, 209-first settling pocket, 210-first stopping valve, 211-second stopping valve, the import of 212-first chuck, 213-first Jacket outlet; 3-separates molten overflow system bis-times, 301-separates molten overflow system import for bis-times, 302-second overflow port, 303-the 3rd agitator, 304-second impeller pump, 305-second spinner-type flowmeter, 306-second settling pocket, 307-the 3rd stopping valve, 308-the 4th stopping valve, the import of 309-second chuck, 310-second Jacket outlet; The right settler overflow system of 4-, the import of 401-natural subsidence overflow system, 402-the 3rd overflow port, 403-the 3rd impeller pump, 404-third trochanter under meter, 405-the 3rd settling pocket, 406-the 5th stopping valve, 407-the 6th stopping valve, 408-the 3rd chuck import, 409-the 3rd Jacket outlet.
Embodiment
Below in conjunction with accompanying drawing, the present invention is further described.
Be illustrated in figure 1 the regenerating reactivating of the sticky microbial material of solid supported of the present invention height and the system of carrier loop utilization, comprise powder supplying system 1, the molten sedimenting system of reverse solution 2, the molten overflow system 3 of secondary solution and natural subsidence overflow system 4.
Powder supplying system 1 comprises powder box 101, screw rod 102 is provided with in powder box 101, screw rod 102 is connected with the drive-motor 105 for driving it to rotate, the exit of powder box 101 is provided with motor 103 and is connected with transfer lime 104, and transfer lime 104 connects the powder feed mouth 201 of the molten sedimenting system 2 of reverse solution.
One side roof part of the molten sedimenting system 2 of reverse solution is provided with powder feed mouth 201, and bottom is provided with water-in 202, and the top of opposite side is provided with the first overflow port 203, and powder feed mouth 201 is provided with division board 204 near the first overflow port 203 side; Be provided with two agitators in the molten sedimenting system 2 of reverse solution, be respectively the first agitator 207 and the second agitator 208; The inlet and outlet that the bottom of the molten sedimenting system 2 of reverse solution is provided with the first settling pocket 209, first settling pocket 209 is respectively arranged with the first stopping valve 210 and the second stopping valve 211; The molten sedimenting system 2 of reverse solution is also provided with chuck, and is provided with the first chuck import 212 bottom it, and top is provided with the first Jacket outlet 213; The transfer line of the import of the molten sedimenting system 2 of reverse solution is provided with the first impeller pump 205 and the first rotor under meter 206.
One side bottom of the molten overflow system of secondary solution 3 is provided with the molten overflow system import 301 of secondary solution, and the top of opposite side is provided with the second overflow port 302, is provided with the 3rd agitator 303 in the molten overflow system 3 of secondary solution; The inlet and outlet being provided with the second settling pocket 306, second settling pocket 306 bottom the molten overflow system 3 of secondary solution is respectively arranged with the 3rd stopping valve 307 and the 4th stopping valve 308; The molten overflow system 3 of secondary solution is also provided with chuck, and is provided with the second chuck import 309 bottom it, and top is provided with the second Jacket outlet 310; The transfer line of the import of the molten overflow system 3 of secondary solution is provided with the second impeller pump 304 and the second spinner-type flowmeter 305.
One side bottom of natural subsidence overflow system 4 is provided with natural subsidence overflow system import 401, and the top of opposite side is provided with the 3rd overflow port 402; The inlet and outlet that the bottom of natural subsidence overflow system 4 is provided with the 3rd settling pocket the 405, three settling pocket 405 is respectively arranged with; Natural subsidence overflow system 4 is also provided with chuck, and is provided with the 3rd chuck import 408 bottom it, and top is provided with the 3rd Jacket outlet 409; The transfer line of the import of natural subsidence overflow system 4 is provided with the 3rd impeller pump 403 and third trochanter under meter 404.
The method utilized based on regenerating reactivating and the carrier loop of the sticky microbial material of solid supported height of said system is as follows:
(1) microbial material adds the powder box 101 of powder supplying system 1, the powder feed mouth 201 of the molten sedimenting system 2 of reverse solution is delivered to by screw rod 102, motor 103, transfer lime 104, powder feed mouth 201 place is provided with division board 204, and solution is molten just flows out the molten sedimenting system 2 of reverse solution to avoid powder to pass through; Water enters the molten sedimenting system 2 of reverse solution by the first impeller pump 205 via water-in 202, and line of pipes is provided with the first rotor under meter 206; After powder and water enter the molten sedimenting system 2 of reverse solution, under the first agitator 207, second agitator 208 effect, reverse stirring and evenly mixing solution is molten, prepare microbial inoculum crude product after microorganism strains is water-soluble, solid phase carrier is settled down to bottom the molten sedimenting system 2 of reverse solution, enters the first settling pocket 209; First settling pocket 209 two ends are equipped with stopping valve, second stopping valve 211, first stopping valve 210 of the first stopping valve 210 and exit that are respectively its ingress is in normally open, and the second stopping valve 211 is in closing condition, when in the first settling pocket 209, solid phase carrier runs up to a certain amount of, close the first stopping valve 210, open the second stopping valve 211, collect solid phase carrier, after collection, close the second stopping valve 211, open the first stopping valve 210, the solid phase carrier reusable edible of collection; Can enter via the first chuck import 212 after heating medium heats in heating installation, enter the chuck of the molten overflow system 3 of secondary solution via the first Jacket outlet 213.
(2) the microbial inoculum crude product of reverse solution molten sedimenting system 2 preparation is delivered to the molten overflow system import 301 of secondary solution by the first overflow port 203, and line of pipes is provided with the second impeller pump 304, second spinner-type flowmeter 305; Microbial inoculum crude product mixing solution again under the 3rd agitator 303 acts on is molten, and the solid phase carrier of Xie Rong is settled down to bottom the molten overflow system 3 of secondary solution, enters the second settling pocket 306; Second settling pocket 306 two ends are provided with stopping valve, the 4th stopping valve the 308, three stopping valve 307 being respectively the 3rd the stopping valve 307 and exit being located at ingress is in normally open, and the 4th stopping valve 308 is in closing condition, when in the second settling pocket 306, solid phase carrier runs up to a certain amount of, close the 3rd stopping valve 307, open the 4th stopping valve 308, collect solid phase carrier, after collection, close the 4th stopping valve 308, open the 3rd stopping valve 307, the solid phase carrier reusable edible of collection; The heating medium that first Jacket outlet 213 flows out enters the chuck of the molten overflow system 3 of secondary solution via the second chuck import 309.
(3) microbial inoculum that the molten overflow system 3 of secondary solution processes further is delivered to natural subsidence overflow system import 401 by the second overflow port 302, and line of pipes is provided with the 3rd impeller pump 403, third trochanter under meter 404; Microbial inoculum is natural subsidence under gravity, residual solid phase carrier is settled down to bottom natural subsidence overflow system 4, enter the 3rd settling pocket 405, realize the recycle and reuse of solid phase carrier by the alternately unlatching of the 5th stopping valve 406, the 6th stopping valve 407, the microbial inoculum of the 3rd overflow port 402 overflow directly enters sprinkling facility; The heating medium that second Jacket outlet 310 flows out enters natural subsidence overflow system 4 via the 3rd chuck import 408, heating medium is got back in heating installation via the 3rd Jacket outlet 409, enter the molten sedimenting system of reverse solution by the first chuck import 212 again after heating, realize the recycle of heating medium.
The above is only the preferred embodiment of the present invention; be noted that for those skilled in the art; under the premise without departing from the principles of the invention, can also make some improvements and modifications, these improvements and modifications also should be considered as protection scope of the present invention.

Claims (9)

1. the regenerating reactivating of the sticky microbial material of solid supported height and the system of carrier loop utilization, it is characterized in that: comprise powder supplying system (1), the molten sedimenting system of reverse solution (2), the molten overflow system of secondary solution (3) and natural subsidence overflow system (4), wherein
Described powder supplying system (1) comprises powder box (101), screw rod (102) is provided with in powder box (101), screw rod (102) is connected with the drive-motor (105) for driving it to rotate, the exit of powder box (101) is provided with motor (103) and is connected with transfer lime (104), and transfer lime (104) connects the molten sedimenting system of reverse solution (2);
One side roof part of the molten sedimenting system of described reverse solution (2) is provided with powder feed mouth (201), bottom is provided with water-in (202), the top of opposite side is provided with the first overflow port (203), is provided with two agitators in the molten sedimenting system of reverse solution (2);
One side bottom of the molten overflow system of described secondary solution (3) is provided with the molten overflow system import (301) of secondary solution, the top of opposite side is provided with the second overflow port (302), is provided with the 3rd agitator (303) in the molten overflow system of secondary solution (3);
One side bottom of described natural subsidence overflow system (4) is provided with natural subsidence overflow system import (401), and the top of opposite side is provided with the 3rd overflow port (402).
2. the regenerating reactivating of the sticky microbial material of solid supported height as claimed in claim 1 and the system of carrier loop utilization, is characterized in that: the bottom of the molten sedimenting system of described reverse solution (2), the molten overflow system of secondary solution (3) and natural subsidence overflow system (4) is provided with the settling pocket that there is stopping valve at two ends.
3. the regenerating reactivating of the sticky microbial material of solid supported height as claimed in claim 1 and the system of carrier loop utilization, it is characterized in that: the molten sedimenting system of described reverse solution (2), the molten overflow system of secondary solution (3) and natural subsidence overflow system (4) are equipped with chuck, and are respectively arranged with chuck import and Jacket outlet in bottom and top.
4. the regenerating reactivating of the sticky microbial material of solid supported height as claimed in claim 1 and the system of carrier loop utilization, is characterized in that: two agitator retrograde rotations in the molten sedimenting system of described reverse solution (2) are stirred.
5. the regenerating reactivating of the sticky microbial material of solid supported height as claimed in claim 1 and the system of carrier loop utilization, is characterized in that: the powder feed mouth (201) of the molten sedimenting system of described reverse solution (2) is provided with division board (204) near the first overflow port (203) side.
6. the regenerating reactivating of the sticky microbial material of solid supported height as claimed in claim 1 and the system of carrier loop utilization, is characterized in that: the connecting pipeline of the molten overflow system import (301) of described water-in (201), secondary solution, natural subsidence overflow system import (401) is provided with impeller pump and spinner-type flowmeter.
7. the regenerating reactivating of the sticky microbial material of solid supported height and a method for carrier loop utilization, is characterized in that: step is as follows:
(1) microbial material adds the powder box of powder supplying system, is delivered to the powder feed mouth of the molten sedimenting system of reverse solution by screw rod, motor, transfer lime; Water enters the molten sedimenting system of reverse solution by water-in; After powder and water enter the molten sedimenting system of reverse solution, under two agitator effects, reverse stirring and evenly mixing solution is molten, prepares microbial inoculum crude product after microorganism strains is water-soluble, and solid phase carrier is settled down to bottom the molten sedimenting system of reverse solution;
(2) the microbial inoculum crude product that prepared by the molten sedimenting system of reverse solution is delivered to the import of the molten overflow system of secondary solution by the first overflow port; Microbial inoculum crude product mixing solution again under the 3rd agitator effect is molten, and the solid phase carrier of Xie Rong is settled down to bottom the molten overflow system of secondary solution;
(3) microbial inoculum that the molten overflow system of secondary solution processes further is delivered to the import of natural subsidence overflow system by the second overflow port; Microbial inoculum is natural subsidence under gravity, and residual solid phase carrier is settled down to bottom natural subsidence overflow system, and the microbial inoculum of preparation directly enters sprinkling facility.
8. the regenerating reactivating of the sticky microbial material of solid supported height as claimed in claim 7 and the method for carrier loop utilization, it is characterized in that: the solid phase carrier in the molten sedimenting system of reverse solution, the molten overflow system of secondary solution and natural subsidence overflow system is deposited in bottom, enter the settling pocket of bottom separately, when in settling pocket, solid phase carrier runs up to a certain amount of, collect solid phase carrier, the solid phase carrier reusable edible of collection.
9. the regenerating reactivating of the sticky microbial material of solid supported height as claimed in claim 7 and the method for carrier loop utilization, it is characterized in that: through being entered by the first chuck import be arranged on the molten sedimenting system of reverse solution after heating medium heats in heating installation, the heating medium flowed out via the first Jacket outlet enters the chuck of the molten overflow system of secondary solution via the second chuck import; The heating medium that second Jacket outlet flows out enters the chuck of natural subsidence overflow system via the 3rd chuck import, heating medium is got back in heating installation via the 3rd Jacket outlet, enter the molten sedimenting system of reverse solution by the first chuck import again after heating, realize the recycle of heating medium.
CN201510548766.8A 2015-08-31 2015-08-31 The system and method that the regenerating reactivating and carrier loop of a kind of viscous microbial material of solid supported height are utilized Active CN105087357B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201510548766.8A CN105087357B (en) 2015-08-31 2015-08-31 The system and method that the regenerating reactivating and carrier loop of a kind of viscous microbial material of solid supported height are utilized

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201510548766.8A CN105087357B (en) 2015-08-31 2015-08-31 The system and method that the regenerating reactivating and carrier loop of a kind of viscous microbial material of solid supported height are utilized

Publications (2)

Publication Number Publication Date
CN105087357A true CN105087357A (en) 2015-11-25
CN105087357B CN105087357B (en) 2017-10-13

Family

ID=54568697

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201510548766.8A Active CN105087357B (en) 2015-08-31 2015-08-31 The system and method that the regenerating reactivating and carrier loop of a kind of viscous microbial material of solid supported height are utilized

Country Status (1)

Country Link
CN (1) CN105087357B (en)

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101402910A (en) * 2008-03-04 2009-04-08 周剑平 Reaction still for producing high-viscosity cell immobilization carrier
CN202898057U (en) * 2012-10-08 2013-04-24 安徽亚兰德新能源材料股份有限公司 Reaction kettle system for producing cobalt-covered spherical nickel hydroxide through continuous method
CN103933923A (en) * 2014-04-30 2014-07-23 潘兆金 Continuous reaction production line consisting of multiple serially connected reaction kettles
CN204394276U (en) * 2015-01-26 2015-06-17 保定嘉利食品机械有限公司 The frying pan that a kind of agitator reversely rotates
CN204490886U (en) * 2015-02-13 2015-07-22 吉林大学 A kind of biology cellulose fermentation system

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101402910A (en) * 2008-03-04 2009-04-08 周剑平 Reaction still for producing high-viscosity cell immobilization carrier
CN202898057U (en) * 2012-10-08 2013-04-24 安徽亚兰德新能源材料股份有限公司 Reaction kettle system for producing cobalt-covered spherical nickel hydroxide through continuous method
CN103933923A (en) * 2014-04-30 2014-07-23 潘兆金 Continuous reaction production line consisting of multiple serially connected reaction kettles
CN204394276U (en) * 2015-01-26 2015-06-17 保定嘉利食品机械有限公司 The frying pan that a kind of agitator reversely rotates
CN204490886U (en) * 2015-02-13 2015-07-22 吉林大学 A kind of biology cellulose fermentation system

Also Published As

Publication number Publication date
CN105087357B (en) 2017-10-13

Similar Documents

Publication Publication Date Title
CN202089962U (en) Solid-liquid separation anaerobic digestion device
CN203904338U (en) Double-path reflux anaerobic reaction system and reactor for producing biogas by using straw
CN102515461B (en) Sludge treatment system, sewage and sludge treatment system and treatment method
CN102965278B (en) Efficient two-phase anaerobic fermentation device
CN103936257A (en) Mobile sludge dewatering device with modification reaction device and dewatering method
CN203513348U (en) Sludge water treatment and reuse system for settling pond
CN103922552A (en) Multi-filter sludge dewatering system and method for single continuously conditioning pool
CN203794766U (en) Movable sludge dewatering device with modified reaction device
CN202945237U (en) Efficient two-phase anaerobic fermentation device
CN105087357A (en) System and method for regenerating solid phase load high-viscosity microbial material and recycling carriers
CN104710093B (en) Continuous sludge hydro-thermal treatment reaction kettle device
CN206970432U (en) A kind of online abatement system of sludge
CN204058203U (en) A kind of water collecting basin mud stirring device
CN207596687U (en) A kind of large-sized steel sludge digestion tank
CN207391244U (en) A kind of TSP dewatered sludges processing system
CN205990394U (en) A kind of horizontal biogas fermentation device
CN210826160U (en) Device for efficiently producing biogas by coupling anaerobic fermentation with biogas residue static fermentation
CN205442660U (en) Quartz sand pickling installation
CN202898050U (en) System for producing liquid form high-modulus water glass by combination of dry and wet
CN209906423U (en) Supercritical water oxidation treatment continuous experimental system for high-solid-content organic waste liquid
CN202594787U (en) Device for producing granular feed-grade calcium hydrogen phosphate by utilizing wet-process phosphoric acid
CN202784879U (en) Humidifying structure for calcined slag discharge
CN203429012U (en) Efficient energy-saving pollution-free dry processing system of bauxite washing tailing pulp
CN206607301U (en) Navajoite clinker, which is crushed, leaches filter
CN101844825A (en) Method for recycling molybdenum beneficiation wastewater

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
GR01 Patent grant
GR01 Patent grant
CP02 Change in the address of a patent holder

Address after: 210093 Nanjing University Science Park, 22 Hankou Road, Gulou District, Nanjing City, Jiangsu Province

Patentee after: Southeast University

Address before: 211103 No. 59 Wan'an West Road, Dongshan Street, Jiangning District, Nanjing City, Jiangsu Province

Patentee before: Southeast University

CP02 Change in the address of a patent holder