Rapid domesticating and enriching method of alkali-resisting sulfur oxidizing bacteria for biogas biological desulfurization

A technology of sulfur oxidizing bacteria and biological desulfurization, which is applied in the direction of using microorganisms, bacteria, etc., can solve the problems of poor solution stability, prone to side reactions, incomplete regeneration, etc., and achieves simple operation and is conducive to sludge interception and amplification , The effect of load impact resistance

Active Publication Date: 2015-09-16
ZHEJIANG UNIV
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  • Application Information

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Problems solved by technology

The wet oxidation method has disadvantages such as poor solution stability, prone to side reactions, incomplete regeneration, and high investment costs.

Method used

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  • Rapid domesticating and enriching method of alkali-resisting sulfur oxidizing bacteria for biogas biological desulfurization
  • Rapid domesticating and enriching method of alkali-resisting sulfur oxidizing bacteria for biogas biological desulfurization

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Embodiment 1

[0019] This example provides a method for rapid acclimatization and enrichment of alkali-resistant sulfur-oxidizing bacteria for biogas biodesulfurization. The artificially simulated water distribution is used as the inflow water. The experimental device can be used as SBR and CSTR at the same time. The experimental device is as follows: figure 2 As shown, the device is a circular reactor. When used as a CSTR, the partition can divide the device into an aeration tank and a sedimentation tank. The air outlet, water inlet, and water inlet are connected to the water inlet pump. The lower side wall is equipped with an air inlet pipe and a dissolved oxygen probe. The lower part of the biological aeration tank is equipped with an air aeration plate. The other end of the air intake pipe is connected to the air intake pump, and a mud discharge and sulfur discharge pipe is provided at the bottom of the biological aeration tank. When the sludge is domesticated, the partition of the dev...

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Abstract

The invention discloses a rapid domesticating and enriching method of alkali-resisting sulfur oxidizing bacteria used for biogas biological desulfurization. A sequencing batch reactor (SBR) and a continuous stirred tank reactor (CSTR) are used for domesticating and enriching the alkali-resisting sulfur oxidizing bacteria needed for biogas biological desulfurization. The method comprises the steps that firstly, secondary sludge from an urban sewage treatment plant is inoculated in the SBR and is domesticated under normal temperature and high-pH conditions, the concentration of sulfide is increased gradually, and sulfur oxidizing bacteria in the inoculated sludge are selectively domesticated and cultured; secondly, after the sludge is domesticated, operation of the SBR is changed to operation of the CSTR, the hydraulic retention time is shortened, the aeration quantity is increased, the concentration of sulfide is increased gradually, and the alkali-resisting sulfur oxidizing bacteria are successfully enriched; and finally, the aeration quantity is reduced, so that the surplus sludge in effluent is reduced while the operation cost is reduced. The method solves the problems that starting is slow and requirements for seed sludge are strict in a traditional direct continuous culturing mode, and effectively shortens the enriching time of the alkali-resisting sulfur oxidizing bacteria.

Description

technical field [0001] The invention belongs to the field of sludge domestication, and in particular relates to a rapid domestication and enrichment method for alkali-resistant sulfur-oxidizing bacteria used for biogas biodesulfurization. Background technique [0002] Biogas has a high calorific value because it contains about 60% to 70% methane, and has attracted much attention today when energy is increasingly scarce. Normally, biogas contains 0.01~1.00% (v / v) H 2 S, its source is mainly due to the decomposition of protein by microorganisms or the reduction of sulfate. h 2 S seriously affects the safety of biogas production and utilization. h 2 After S is inhaled into the human body, the respiratory system, circulatory system, digestive system and nervous system will be seriously affected, even death. When the biogas is burned, the H in it 2 S is oxidized to SOx, which will not only pollute the environment, but also corrode equipment, seriously affecting the atmosphe...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C12N1/36C12N1/20
CPCC12N1/36
Inventor 胡宝兰刘岩何崭飞叶天强徐新华郑平
Owner ZHEJIANG UNIV
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