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Anaerobic facultative probiotic symbiotic metabolic enzyme preparation and sludge treatment method

A technology of probiotics and metabolic enzymes is applied in the field of probiotics symbiotic metabolic enzyme preparations, which can solve the problems of high reduction cost, huge equipment investment, and inability to industrialize treatment, and achieves reduction of sludge viscosity, low energy consumption, and improved bioavailability. usability effect

Pending Publication Date: 2020-08-25
王胧庆
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The process is complicated, the evaporation energy consumption is generally high, the reduction cost is too high, and the equipment investment is huge, so it cannot be industrialized in large quantities.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment

[0046] Embodiment: 16 parts of Clostridium acetobutylicum; 12 parts of Clostridium; 15 parts of Clostridium ljungdahlii; 16 parts of phosphokinase; 15 parts of Clostridium thermocellum; 14 parts of Frankia; 10 parts of halotolerant bacillus; 18 parts of bacillus; 5 parts of hydroxybutyryl; 14 parts of dehydrogenase; 15 parts of acetyl; 12 parts of streptomyces; 11 parts of butyryl coenzyme; 10 parts of Clostridium saccharobutyricum; 12 parts of Clostridium septicum; 15 parts of pyruvate; 13 parts of phosphodikinase; 18 parts of phosphoric acid;

[0047] In the present invention, it can also be a combination of the following schemes: 12,17,18 parts of Clostridium acetobutylicum; 10,13,14 parts of Clostridium; 12,15,17,18 parts of Clostridium ljungdahlii; Clostridium 12, 13, 17, 18; Clostridium saccharobutyricum 8, 9, 11, 12; Clostridium septicum 10, 13, 14;

[0048] Frankia 12, 14, 16, 17; Halotolerant Bacillus 8, 9, 11, 12; Polymorpha 15, 17, 20, 23, 24, 25; Bacillus 15, 17, ...

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PUM

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Abstract

The invention discloses an anaerobic facultative probiotic symbiotic metabolic enzyme preparation. The preparation comprises the following components in parts by mass of 10-14 parts of clostridium which is a group of gram-positive bacteria and can generate spores, and the diameter of the spores is greater than the width of thalli, so that the thalli are expanded to be fusiform, and 12 to 18 partsof clostridium acetobutylicum, 12 to 18 parts of clostridium ljungdahlii, 12 to 18 parts of clostridium thermocellum, 8 to 12 parts of clostridium saccharobutyricum, 10 to 14 parts of clostridium septicum, 12 to 17 parts of frankia, 8 to 12 parts of salt-tolerant bacillus, 15 to 25 parts of bacteroides polymorphus, 15 to 22 parts of bacillus, 10 to 14 parts of streptomyces, 10 to 16 parts of ruminococcus, 12 to 18 parts of phosphokinase, 13 to 18 parts of acetyl coenzyme, 6 to 10 parts of acetyltransferase, 10 to 14 parts of phosphopyruvate hydratase, 10 to 15 parts of phosphodikinase, 11 to 18 parts of dehydrogenase, 10 to 14 parts of hydroxybutyryl coenzyme, 4 to 6 parts of hydroxybutyryl, 12 to 18 parts of acetyl, 12 to 18 parts of pyruvic acid, and 15-22 parts of phosphoric acid. The invention discloses a sludge treatment method. The preparation is simple to dewater in sludge treatment and degrades harmful substances, so that the sludge treatment is low in cost, pollution-free andlow in energy consumption.

Description

technical field [0001] The invention relates to the technical field of probiotic symbiotic metabolic enzyme preparations, in particular to an anaerobic and aerobic probiotic symbiotic metabolic enzyme preparation and a sludge treatment method. Background technique [0002] The sludge contains a large amount of water, which can be divided into water outside the membrane and water inside the membrane. The overall water content of the sludge is as high as 80%. The water outside the membrane is easy to deal with, but the difficulty is how to deal with the water inside the membrane. If the water content of sludge is treated by heating water removal method, 1 kilowatt-hour of electricity is needed to reduce 1% of water per 1 kg of sludge. The state stipulates that the water content of sludge after treatment should not exceed 40%, so heating water removal is used. The water method is a very energy-intensive method. The process is complicated, the evaporation energy consumption is...

Claims

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Application Information

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IPC IPC(8): C12N1/20C12N9/12C12N9/10C12N9/88C12N9/04C02F11/04C02F11/147C12R1/145C12R1/07C12R1/465C12R1/01
CPCC02F11/04C02F11/147C12N1/20C12N9/0006C12N9/1029C12N9/12C12N9/1294C12N9/88C12Y402/01011
Inventor 王胧庆
Owner 王胧庆
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