A/O/A 及UCT生物脱氮除磷方法
2015-10-21刘微
刘微
【摘要】现在,水资源越来越缺乏,水体富营养化使人类面临着更严峻的水资源问题,而氮、磷是引起水体富营养化的主要原因。常规的污水处理技术主要是去除悬浮固体和有机物,对氮磷的处理效果一般。污水脱氮除磷常用的是生物法,成本低,适用范围广,操作简单,处理后的水体易达标。本文主要阐述生物脱氮除磷技术
【关键词】脱氮除磷;A/O/A;UCT
A/O/A and UCT biological denitrification and phosphorus removal method
LIU Wei
(Zhengzhou University, Zhengzhou 450000,China)
Abstract: now, the lack of water resources is more and more, eutrophication of water bodies to make mankind is faced with more severe water problems, and nitrogen and phosphorus is the main cause of eutrophication of water bodies. Conventional wastewater treatment technology is mainly to remove suspended solids and organic matter, the treatment effect of nitrogen and phosphorus. Sewage denitrification and phosphorus removal is commonly used biological method, low cost, wide range of application, simple operation, treatment after water easy to mark. This article mainly expounds biological denitrification and phosphorus removal technology.
Key words: nitrogen and phosphorus; A/O/A; UCT
1 A/O/A脱氮除磷工艺
1.1 工艺原理及过程
A/O/A工艺在系统上是最简单、效果最稳定的同步脱氮除磷工艺,在厌氧(缺氧)、好氧交替运行的条件下脱氮除磷。由于三个反应池严格分开,有利于不同微生物菌群的繁殖,因此效果较好。其工艺流程如图1所示。
进水首先进入厌氧池,在此聚磷菌可利用进水中的有机物作为碳源,将从沉淀池回流过来的富磷污泥进行厌氧释磷;但是由于剩余污泥从好氧池中排出,里面含有大量的硝酸盐,所以释磷不能充分进行;由于污泥中含有大量的硝酸盐,因此在厌氧池中还可以进行反硝化作用,反硝化菌和聚磷菌都为异养菌,形成了对碳源的竞争。随后进入缺氧池,在其中主要进行反硝化作用。好氧池混合液回流过来的大量硝酸盐进行反硝化脱氮,大部分的氮在此进行去除,但是由于反硝化需要碳源,因为前面聚磷菌已经消耗部分碳源,所以反硝化效果受到碳源的限制。随后废水又进入好氧池,在好氧池中进行有机物的去除和氨氮的硝化反应,然后再通过混合液回流将含有大量硝酸盐的泥水混合物回流至缺氧池中进行反硝化脱氮;……
