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Nitrification denitrification system and nitrification denitrification treatment method

机译:硝化脱氮系统和硝化脱氮处理方法

摘要

PROBLEM TO BE SOLVED: To rapidly decrease the concentration of dissolved oxygen in a denitrification tank to make its atmosphere a reducing one in a biological nitration denitrification treatment so that the nitrogen removing capability can be stabilized, the amount of a hydrogen doner to be used can be decreased, and the load of operation management can be reduced.;SOLUTION: There is provided a nitration denitrification system comprising a nitration tank, a denitrification tank, and a reducing agent adding part for adding a reducing agent to the denitrification tank, and characterized in that the reducing agent is a ferrous compound. The nitration denitrification system can make the atmosphere in the denitrification tank a reducing one by letting dissolved oxygen in the denitrification tank be rapidly consumed making use thereof that a divalent iron ion of the ferrous compound is oxidized to become a trivalent iron ion. As a result, the efficiency of the denitrification reaction in the denitrification tank can be improved without increasing the amount of the hydrogen doner added thereinto. Further, the influence of the inflow of the dissolved oxygen into the denitrification tank can be eliminated regardless of the fluctuation of the quality of water to be treated, and thereby the operation management can be made easier.;SELECTED DRAWING: Figure 1;COPYRIGHT: (C)2019,JPO&INPIT
机译:要解决的问题:为了快速降低脱氧罐中溶解氧的浓度,使其气氛在生物硝化脱氮处理中减少一种,使得氮去除能力可以稳定,所用的氢气剂的量可以稳定减少,可以减少操作管理的负荷。;解决方案:提供了一种硝化拒绝硝化体系,其包含硝化罐,脱氮罐和还原剂,用于将还原剂加入去硝化罐,并表征其是还原剂是铁化合物。硝化反硝化系统可以通过使脱氧罐中的溶解氧快速消耗利用,使得铁离子的二价铁离子被氧化以成为三价铁离子以使其氧化以成为三价铁离子的降解罐中的气氛。结果,可以提高反硝化罐中的脱氮反应的效率而不增加其中加入的氢化物的量。此外,无论待处理水质质量的波动如何,都可以消除将溶解氧的流入到脱硝罐中的影响,从而可以更容易地进行操作管理。;选定的绘图:图1;版权: (c)2019,JPO和INPIT

著录项

  • 公开/公告号JP6889586B2

    专利类型

  • 公开/公告日2021-06-18

    原文格式PDF

  • 申请/专利号JP20170069726

  • 发明设计人 須田 祐一;

    申请日2017-03-31

  • 分类号C02F3/34;C02F1/70;

  • 国家 JP

  • 入库时间 2022-08-24 19:34:04

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