Immobilized microorganism production device and production method

A technology for immobilizing microorganisms and production equipment, applied in chemical instruments and methods, sustainable biological treatment, biological water/sewage treatment, etc. Simple, low investment and operating costs

Active Publication Date: 2017-09-22
TONGJI UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0007] In view of this, the existing processing technology of immobilized microorganisms is still immature and needs further research and improvement

Method used

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  • Immobilized microorganism production device and production method
  • Immobilized microorganism production device and production method
  • Immobilized microorganism production device and production method

Examples

Experimental program
Comparison scheme
Effect test

Embodiment approach 1

[0049] The present embodiment provides a device for preparing immobilized microorganisms, wherein, 5 barrels of material barrels are 800mm deep, barrels, cylinder wall thickness 20mm, bottom plate diameter 400mm, bottom aperture of material barrel 5 is 28mm, and switching head 8 has a small diameter of 28mm. The maximum diameter is 50mm, the discharge steel pipe is 9 pipes with a diameter of 5mm, and the screen is 30 mesh.

[0050] The specific operation process is as follows:

[0051] (1), open the first submersible pump 14, fill water in the material barrel 5, make the water volume account for 1 / 3 of the material barrel volume, turn on the stirring motor 2, adjust the stirring rate to be 700r / min, then add 5% polyvinyl alcohol , stirring at a rate of 500r / min for 20min until the mixture is uniform;

[0052] (2), continue to add other carrier materials in the material tank, stir for 15min at a stirring rate of 800r / min, until the microorganism immobilized carrier is obtained...

Embodiment approach 2

[0058] The present embodiment provides a device for preparing immobilized microorganisms, wherein, 5 barrels of material barrels are 800mm deep, barrels, cylinder wall thickness 20mm, bottom plate diameter 400mm, bottom aperture of material barrel 5 is 28mm, and switching head 8 has a small diameter of 28mm. The maximum diameter is 50mm, the discharge steel pipe 9 has a diameter of 3mm, and the screen mesh is 30 mesh.

[0059] The operation process includes the following steps:

[0060] (1), open the first submersible pump 14, fill water in the material barrel 5, make the water volume account for 1 / 3 of the material barrel volume, turn on the stirring motor 2, adjust the stirring rate to be 700r / min, then add 5% polyvinyl alcohol , stirring at a rate of 500r / min for 20min until the mixture is uniform;

[0061] (2), continue to add other carrier materials in the material tank, stir for 15min at a stirring rate of 800r / min, until the microorganism immobilized carrier is obtaine...

Embodiment approach 4

[0076] The present embodiment provides a device for preparing immobilized microorganisms, wherein, 5 barrels of material barrels are 800 mm deep, barrels, cylinder wall thickness 20 mm, bottom plate diameter 400 mm, bottom aperture of material barrel 5 is 28 mm, and switching head 8 has a small diameter of 28 mm. The maximum diameter is 50mm, the discharge steel pipe is 9 pipes with a diameter of 5mm, and the screen is 30 mesh.

[0077] The operation process includes the following steps:

[0078] (1), open the first submersible pump 14, fill water in the material barrel 5, make the water volume account for 1 / 3 of the material barrel volume, turn on the stirring motor 2, adjust the stirring rate to be 700r / min, then add 5% polyvinyl alcohol , stirring at a rate of 500r / min for 20min until the mixture is uniform;

[0079] (2), continue to add other carrier materials in the material tank, stir for 15min at a stirring rate of 800r / min, until the microorganism immobilized carrier ...

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PUM

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Abstract

The invention provides an immobilized microorganism production device and production method. The production device includes a bracing frame, a material stirring barrel, at least two reaction tanks and a water tank. The material stirring barrel and the water tank are arranged at the upper part of a bracing frame, adjacent to each other. The two reaction tanks are arranged at the lower part of the bracing frame, adjacent to each other, and form mutual circulation. The water tank communicates with the material stirring barrel and the reaction tanks, respectively, for water supply and water replenishing. Material discharging pipes capable of being opened and closed are arranged at the bottom of the material stirring barrel and align right with the reaction tanks for dripping of materials. Through uniform stirring of material mixing and material particle forming, automatic control is achieved, the embedding technical process is further simplified, the high yield is increased, and stable operation and the product quality are ensured.

Description

technical field [0001] The invention belongs to the technical field of environmental protection machinery, and relates to an immobilized microorganism production equipment and a production method. Background technique [0002] At present, in order to deal with the increasingly serious pollution problem, scientists from all over the world are trying to find water treatment technologies with low cost, low energy consumption and low secondary pollution. [0003] Due to the unique role of microorganisms in the removal of pollutants, biodegradation is regarded as a relatively effective, economical and energy-saving water treatment technology. When the existing traditional microbial technology treats sewage, it usually directly inoculates microorganisms in the sewage to be treated, and reduces the concentration of pollutants through the growth, absorption and metabolism of microorganisms. [0004] However, due to environmental factors, competition, easy loss and other reasons, th...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C02F3/10C02F3/28
CPCC02F3/10C02F3/2806Y02W10/10
Inventor 柴晓利杨宁
Owner TONGJI UNIV
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