Device and method for realizing synchronous short-process nitrification and denitrification dephosphorization to treat urban sewage on basis of hydroxylamine

A denitrification phosphorus removal and short-range nitrification technology, applied in the field of sewage biological treatment, can solve the problems of water eutrophication and high treatment cost, and achieve the effect of short time consumption, good effect and good nitrogen and phosphorus removal effect

Active Publication Date: 2018-06-08
BEIJING UNIV OF TECH
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Problems solved by technology

[0002] In recent years, the denitrification and phosphorus removal of urban sewage has attracted much attention. If the effluent of urban sewage treatment plants does not meet the standard, it will cause a series of environmental problems such a

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  • Device and method for realizing synchronous short-process nitrification and denitrification dephosphorization to treat urban sewage on basis of hydroxylamine
  • Device and method for realizing synchronous short-process nitrification and denitrification dephosphorization to treat urban sewage on basis of hydroxylamine
  • Device and method for realizing synchronous short-process nitrification and denitrification dephosphorization to treat urban sewage on basis of hydroxylamine

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Embodiment approach

[0034] The reactor used in this method is SBR, made of plexiglass, cylindrical, with an effective volume of 10L. An aeration device is installed at the bottom of the synchronous short-path nitrification and denitrification phosphorus removal reactor, and the required dissolved oxygen can be controlled by adjusting the flow meter and DO online feedback. The built-in agitator of the synchronous short-range nitrification and denitrification phosphorus removal reactor ensures that the mud and water are mixed evenly during the reaction stage. The water is fed by the peristaltic pump, and the water is discharged by the electric drain valve. The reaction process is controlled by the online platform. The dosing of hydroxylamine is realized by the dosing pump, which is convenient and quick.

[0035] The device and method for realizing synchronous short-range nitrification and denitrification phosphorus removal based on hydroxylamine are characterized in that they include the following...

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Abstract

The invention provides a device and a method for realizing synchronous short-process nitrification and denitrification dephosphorization to treat urban sewage on the basis of hydroxylamine, and belongs to the field of urban domestic sewage biological treatment. The domestic sewage enters a synchronous short-process nitrification and denitrification dephosphorization reactor through a water inlet pump. In the synchronous short-process nitrification and denitrification dephosphorization reactor, during anaerobic stirring, phosphorus-accumulating bacteria sufficiently utilize carbon source release phosphorus in raw water; during the aerobiotic treatment, the stable short-process nitrification is realized through addition of hydroxylamine; under the anoxic condition, denitrifying phosphorus-accumulating bacteria use nitrite nitrogen as electron acceptors to absorb phosphorus in the water; nitrite nitrogen is reduced into nitrogen gas. Compared with a conventional denitrification dephosphorization process, the process has the advantages that the carbon source is saved; the aeration quantity is reduced.

Description

technical field [0001] The invention relates to a device and method for synchronous short-range nitrification and denitrification dephosphorization treatment of urban sewage based on hydroxylamine, which belongs to the field of sewage biological treatment, and is especially suitable for denitrification of urban domestic sewage with low C / N. Background technique [0002] In recent years, the denitrification and phosphorus removal of urban sewage has attracted much attention. If the effluent of urban sewage treatment plants does not meet the standard, it will cause a series of environmental problems such as eutrophication of the water body, and there is also the problem of high treatment costs. The high energy consumption of the traditional nitrogen and phosphorus removal process mainly exists in the links of aeration and carbon source consumption. [0003] As we all know, the whole nitrification reaction is carried out under the action of ammonia oxidizing bacteria (AOB) and ...

Claims

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Application Information

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IPC IPC(8): C02F3/30
CPCC02F3/308
Inventor 彭永臻李佳李夕耀
Owner BEIJING UNIV OF TECH
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