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A kind of composite bacteria agent and its construction method for strengthening the anaerobic degradation of propionic acid

A technology of compound bacterial agent and activated bacteria, applied in chemical instruments and methods, microorganism-based methods, biochemical equipment and methods, etc., can solve the problems of limited methanogens' physiological and ecological functions and deficiencies.

Active Publication Date: 2021-11-16
江门市环木工程技术有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] In view of the above problems, the purpose of the present invention is to provide a method for strengthening the degradation of propionic acid by constructing fatty acid oxidizing bacteria and electrogenic bacteria mutual symbiont complex bacterial agent, which solves the dependence of propionic acid mutual degradation in traditional anaerobic systems. Methanogens are thus limited by the lack of physiological and ecological functions of methanogens

Method used

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  • A kind of composite bacteria agent and its construction method for strengthening the anaerobic degradation of propionic acid
  • A kind of composite bacteria agent and its construction method for strengthening the anaerobic degradation of propionic acid
  • A kind of composite bacteria agent and its construction method for strengthening the anaerobic degradation of propionic acid

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Effect test

Embodiment 1

[0041] This embodiment provides a composite bacterial agent that strengthens the anaerobic degradation of propionic acid and its construction method. The composite bacterial agent includes fatty acid oxidizing bacteria Syntrophobacterfumaroxidans and electrogenic bacteria Geobactorsulfurreducens (hereinafter referred to as: G.sulfurreducen); the composite bacterial agent The build process of the agent is as follows:

[0042] (1) Activation and enrichment of G.sulfurreducen

[0043] G.sulfurreducens was purchased from the American Type Culture Collection (ATCC, number 51573). The components of the G.sulfurreducens medium used in this example mainly refer to the medium components recommended by ATCC, and are improved according to the actual situation of this experiment and relevant literature. The components are shown in Tables 1-3.

[0044] Table 1 Complete medium of G.sulfurreducens

[0045] Element content Element content sodium acetate 1.64g / L NH 4...

Embodiment 2

[0073] According to the system of the present invention, the effects of different concentrations of propionic acid, different concentrations of ammonia nitrogen and different pH on the metabolic growth of mutual symbionts were studied respectively.

[0074] (1) To study the effects of different propionic acid concentrations (2000-4500mg / L) on the metabolic growth of mutual symbionts, the operation period is 19 days, and three groups are operated at the same time.

[0075] (2) To study the effects of different ammonia nitrogen concentrations (500-3000mg / L) on the metabolic growth of mutual symbionts. Propionic acid was 1500mg / L, and the operation period was 19 days. Three groups were operated at the same time.

[0076] (3) To study the effects of different pH (5.5-8.0) on the metabolic growth of mutual symbionts, propionic acid 1500mg / L, the operation cycle is 19 days, and three groups are operated at the same time.

[0077] In order to reduce the risk of bacterial contaminatio...

Embodiment 3

[0082] Further study the application effect of the composite bacterial agent of the present invention in actual wastewater. The composite bacterial agent constructed under the optimum conditions in Example 2 was added to the sludge dehydration liquid anaerobic fermentation system and regulated according to the above-mentioned optimal factor range, the inoculum ratio of the composite bacterial agent was 20.5±5.5g VSS / L sewage . Measure the VFAs value before and after water out, the results are as follows Figure 5 .

[0083] Depend on Figure 5 The results showed that the effluent VFAs decreased from 1013mgHAc / L to 245mgHAc / L, a decrease of 75.8%, among which propionic acid decreased by 83.9%, which was a significant decrease. It shows that the composite microbial agent of the present invention is better applied in the process of wastewater treatment.

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Abstract

The invention discloses a composite bacterial agent for strengthening anaerobic degradation of propionic acid and a construction method thereof. The composite bacterial agent includes fatty acid oxidizing bacteria Syntrophobacterfumaroxidans and electrogenic bacteria Geobactorsulfurreducens. The present invention activates the fatty acid oxidizing bacteria Syntrophobacterfumaroxidans and the electrogenic bacteria Geobactorsulfureducens, uses the anaerobic bottle to insert the electrode as the experimental mode, and adds the activated bacterial liquid in the anode chamber to construct a mutual symbiosis system that strengthens the degradation of propionic acid. The composite bacterial agent can be used in the process of sewage treatment; this method has the advantages of simple structure, flexible operation, quick start, stable operation, no need for aeration and low operating cost, and can be adjusted by pH value, ammonia nitrogen and initial propionic acid concentration. Optimum conditions for acid degradation.

Description

technical field [0001] The invention belongs to the technical field of anaerobic fermentation, and relates to a microbial battery, in particular to a composite bacterial agent for strengthening the anaerobic degradation of propionic acid and a construction method thereof. Background technique [0002] Anaerobic biotechnology is widely used to treat high-concentration organic wastewater and has achieved good practical results due to its ability to simultaneously reduce organic matter in wastewater and increase productivity. The basic principle is to realize the gradual degradation of organic matter and the production of methane through the synergistic effect of hydrolytic fermentation bacteria, acetogenic bacteria and methanogenic bacteria. One of the main challenges to the efficient and stable operation of conventional anaerobic processes is the acid inhibition problem caused by the accumulation of volatile fatty acids (Volatile Fatty Acids, VFAs) in the system. During the ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C12N1/20C02F3/34C02F3/28C02F3/00C12R1/01C02F101/34
CPCC02F3/005C02F3/28C02F3/34C02F2101/34C12N1/20
Inventor 汪涛匡彬朱葛夫郏建波刘敏超李玉瑛李冰杨涛张梦辰徐晓龙
Owner 江门市环木工程技术有限公司
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