Flora for degrading sludge and removing foul smell and usage method thereof

A technology of bacterial flora and sludge, which is applied in the field of microbial treatment of sludge and sludge treatment, can solve the problems of technical bottlenecks, large scale of sludge production, high cost, etc., and achieve the goal of increasing the total amount of sludge, increasing the degradation rate, The effect of shortening the time

Inactive Publication Date: 2017-06-13
无锡市利特联环保科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] Decoupling technology, acid-base dissolution technology, etc., but there are high costs or technical bottlenecks, and there is no certain market application and promotion
At present

Method used

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  • Flora for degrading sludge and removing foul smell and usage method thereof

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Experimental program
Comparison scheme
Effect test

Embodiment 1

[0017] Embodiment 1: a kind of flora that degrades sludge and deodorizes, and this composite flora includes: 10wt% Thiobacillus denitrificans, 5wt% halotolerant bacteria, 2.6wt% Nitrophyllous bacteria, 3 wt% filamentous sulfur bacteria, 4.0wt% bifidobacteria, 2.6wt% nitrogen-fixing bacteria, 3.2wt% filamentous bacteria, 2.6wt% rhizobia, 2.6wt% iron bacteria, 1.3wt% cyanobacteria, 6.6wt% bacteriophiles , 7.4wt% halophilic bacteria, 2.6wt% sulfur bacteria, 2.6wt% oleophilic bacteria, 21wt% lactobacillus, 9.2wt% yeast, 6.6wt% bacillus, 2.6wt% actinomycetes, 1.3wt% photosynthetic Bacteria, 3.2wt% thermoaerobic bacteria.

Embodiment 2

[0018] Embodiment 2: a kind of flora that degrades sludge and deodorizes, and this composite flora includes: 3.8kg Thiobacillus denitrificans, 2.0kg halotolerant bacteria, 1.0kg Nitrophyllum phylloxera, 1.1kg Filamentous sulfur bacteria, 1.2kg bifidobacteria, 1.0kg nitrogen-fixing bacteria, 1.0kg filamentous bacteria, 1.0kg rhizobia, 1.0kg iron bacteria, 1.0kg cyanobacteria, 2.0kg bacterophiles, 2.8kg halophiles, 1.0kg Sulfur bacteria, 1.0kg oleophilic bacteria, 6kg lactobacillus, 3.0kg yeast, 4.7kg bacillus, 1.0kg actinomycetes, 1.0kg photosynthetic bacteria, 1.2kg high temperature aerobic bacteria, salt-tolerant bacteria, bifidobacteria, Halobacteria, nitrogen-fixing bacteria, and bacillus constitute the sludge-decomposing flora, and the number of salt-tolerant bacteria: 1.7×10 -5 ~2.2×10 -5 Billion / ml; number of bifidobacteria: 1.0×10 -2 ~1.5×10 -2 Billion / ml; number of halophilic bacteria: 2.3×10 -5 ~3.2×10 -5 Billion / ml; Number of nitrogen-fixing bacteria: 0.8×10 ...

Embodiment 3

[0020] Embodiment 3: a kind of domestication method of degrading sludge, deodorizing flora bacterial classification:

[0021] A. Add 50kg of pure water, 12kg of brown sugar, 150g of potassium dihydrogen phosphate, and 50g of vitamin C into a culture vessel, stir and dissolve to make a culture solution.

[0022] B. Add 5kg of culture medium, 1.2kg of bifidobacteria, 1.0kg of filamentous bacteria, 6kg of lactobacillus, 3kg of yeast, 1.0kg of actinomycetes, 1.0kg of photosynthetic bacteria, and 4.7kg of bacillus into the culture vessel, and stir evenly , Seal the culture vessel, keep the temperature at 25-35°C, and then stir twice a day for half an hour to ventilate. After a week, the test pH is below 4, which means success. If unsuccessful, continue to cultivate until successful.

[0023] C. Add 5kg of culture solution to the culture vessel, add 2kg of halophilic bacteria, 1kg of iron bacteria, 1kg of cyanobacteria, 2kg of halophilic bacteria, 2.8kg of halophilic bacteria, 1.0k...

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Abstract

Provided is a flora for degrading sludge and removing foul smell and a usage method thereof. The compound flora includes, by weight, 10%-12% of thiobacillus denitrificans, 1.3%-5% of salt resistant bacteria, 2.6%-3.9% of nitrous acid leafy bacteria, 2.1%-3% of filamentous sulfur bacteria, 3.2%-4.0% of bifidobacterium, 1.3%-2.6% of nitrogen-fixing bacteria, 2.6%-3.2% of filamentous bacteria, 2.1%-2.6% of rhizobia, 2.6%-4.0% of iron bacteria, 1.3%-2.6% of cyanobacteria, 5.3%-6.6% of thermophilic bacteria, 5.3%-7.4% of halophilic bacteria, 0.5%-2.6% of sulfur producing bacteria, 1.3%-2.6% of oilphilic bacteria, 10.6%-21% of lactobacillus, 5.3%-9.2% of saccharomycetes, 7.9%-15.9% of bacillus, 2.6%-5.3% of actinomycetes, 1.3%-2.6% of photosynthetic bacteria and 3.2%-4.8% of high-temperature aerobic bacteria.

Description

technical field [0001] The invention relates to the field of sludge treatment, in particular to the field of sludge treatment by microorganisms. Background technique [0002] Currently, sludge disposal generally adopts landfill or dry incineration. Landfill can easily pollute soil and groundwater, and the cost of incineration is huge and waste gas is emitted. [0003] The activated sludge method is mostly used in the treatment of urban sewage in our country, which has the advantages of low capital investment and good treatment effect. [0004] point, but it has always had one of the biggest drawbacks, that is, a large amount of excess sludge will be generated during operation. Excess sludge usually contains more toxic and harmful substances and unstabilized organic matter. If it is not properly treated and disposed of, it will cause direct or potential pollution to the environment. In the traditional activated sludge method, the degradation of 1kgBOD5 (biochemical OxygenDe...

Claims

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Application Information

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IPC IPC(8): C12N1/20C12N1/16C02F11/02C12R1/01C12R1/41C12R1/225
CPCC12N1/20C02F11/02C02F2303/02C02F2303/06C12N1/16
Inventor 李亚斌
Owner 无锡市利特联环保科技有限公司
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