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Simultaneous nitrogen and phosphorus removal (AO)2SBR sewage treatment process

A technology for synchronous nitrogen and phosphorus removal and domestic sewage, applied in the direction of aerobic and anaerobic process treatment, etc., can solve the problems of aerobic time consumption, shortened service life of instruments, and many times of anaerobic and aerobic alternation

Inactive Publication Date: 2009-05-06
SHANGHAI UNIVERSITY OF ELECTRIC POWER
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0008] The present invention in order to solve (AO) 3 In the SBR process, due to the large number of aerobic times and relatively long aerobic time, more energy is consumed, and the high number of anaerobic and aerobic alternations makes the service life of the instrument greatly shortened. A new process with greatly reduced treatment costs and stable and efficient nitrogen and phosphorus removal effects, namely (AO) 2 SBR process

Method used

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  • Simultaneous nitrogen and phosphorus removal (AO)2SBR sewage treatment process
  • Simultaneous nitrogen and phosphorus removal (AO)2SBR sewage treatment process
  • Simultaneous nitrogen and phosphorus removal (AO)2SBR sewage treatment process

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Embodiment

[0035] 1. Experimental water quality

[0036] The sequence batch reactor uses domestic sewage as the influent, and the average value of the influent water quality is as follows: COD248.7mg / L, NH 4 + -N32mg / L, TN39.2mg / L, TP3.8mg / L.

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Abstract

The invention relates to a sewage treatment process for removing the nitrogen and phosphorus simultaneously; the whole process reaction is carried out in a sequence batch type bioreactor, respectively undergoes six stages of an anaerobic period, an aerobic period, a hypoxia period, an aerobic period, static precipitation, and a water drainage idle period, namely an anaerobic section and an aerobic section are reduced on the basis of a (AO)3SBR process, so denitrifying phosphorus accumulating bacteria can be cultivated easily and become a advantageous bacteria type of the phosphorus accumulating bacteria; moreover, denitrifying phosphorus absorption is carried out on the denitrifying phosphorus accumulating bacteria in a 'one-carbon dual-use' of the reaction and no carbon source is needed to be added additionally, so the aim of carbon source conservation is achieved, one aerobic section is reduced, the aerobic time is decreased to 90min from 130min, and the energy consumption is reduced by about 31 percent; in addition, as (AO)2SBR process lacks an (A / O) alternate operation compared with the(AO)3SBR process, the service life of instrument is prolonged; the removal effect for TN, TP, COD, and TOC of the sewage is respectively 78.47 percent, 99.5 percent, 86 percent, and 79.3 percent; when part of sodium acetate is added to the sewage, the removal effects of the nitrogen and the phosphorus are both increased to a certain extent.

Description

technical field [0001] The invention relates to a domestic sewage treatment process for synchronous nitrogen and phosphorus removal. Background technique [0002] In the process of sewage treatment, under the condition of alternating anaerobic / anoxic operation, it is easy to enrich a type of DPAOs (denitrifying phosphorus accumulating bacteria) that has both denitrification and phosphorus removal functions. DPAOs can use oxygen, nitrate, and nitrous acid Salt acts as an electron acceptor, and its biological metabolism based on intracellular PHAs and glycogen is similar to that of traditional PAOs (phosphorus accumulating bacteria). Under anaerobic conditions, DPAOs absorb volatile fatty acids and store them as intracellular PHAs (polyhydroxyalkanoic acids), and at the same time intracellular polyphosphate hydrolysis decomposes phosphorus and glycogen; under aerobic conditions, a large amount of intracellular PHAs are consumed to quickly absorb phosphorus and synthesize glyco...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C02F3/30
Inventor 王罗春张超徐伟锋刘克家
Owner SHANGHAI UNIVERSITY OF ELECTRIC POWER
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