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Wastewater processing method of hydrolysis-acidification enhanced by addition of zero-valent iron (ZVI)

机译:添加零价铁增强水解酸化的废水处理方法

摘要

The invention discloses a wastewater processing method of hydrolysis-acidification enhanced by addition of zero-valent iron (ZVI), including the following steps: 3˜6 ZVI-filling layers are settled in the middle of an anaerobic hydrolysis-acidification reactor. Excess sludge taken from sewage treatment plant using as seed sludge is added into this anaerobic hydrolysis-acidification reactor for startup and domestication. In the present invention, ZVI are added into this anaerobic hydrolysis-acidification reactor to accelerate organic matters degradation and produce more acetic acids, accompanied with higher COD removal obtained. ZVI can be protected from rust in this anaerobic biological environment due to the air isolation. Also, ZVI can enhance anaerobic hydrolysis of wastewater through reducing refractory pollutants involved in wastewaters. This novel method made the effluent from the hydrolysis-acidification reactor present less COD concentration and simpler substrate form, benefiting for the following anaerobic methanogenesis or aerobic treatment.
机译:本发明公开了一种通过添加零价铁(ZVI)增强水解酸化的废水处理方法,包括以下步骤:在厌氧水解酸化反应器的中间沉降3〜6个ZVI填充层。从污水处理厂获得的剩余污泥用作种子污泥,被添加到该厌氧水解酸化反应器中,以进行启动和驯化。在本发明中,将ZVI添加到该厌氧水解-酸化反应器中以加速有机物降​​解并产生更多的乙酸,同时获得更高的COD去除率。在这种厌氧生物环境中,由于空气隔离,ZVI可以防止生锈。此外,ZVI可以通过减少废水中涉及的难处理污染物来增强废水的厌氧水解。这种新颖的方法使水解酸化反应器的出水呈现较低的COD浓度和较简单的底物形式,有利于后续的厌氧产甲烷或好氧处理。

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