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WASTEWATER TREATMENT METHOD BY ANAEROBIC HYDROLYSIS-ACIDIFICATION ENHANCED WITH ZERO-VALENT IRON

机译:零价铁厌氧水解酸化处理废水的方法

摘要

A wastewater treatment method by anaerobic hydrolysis-acidification enhanced with zero-valent iron; 3 to 6 packed layers of zero-valent iron (2) are disposed at the middle portion of an anaerobic hydrolysis-acidification reactor (1); the lower portion of the anaerobic hydrolysis-acidification reactor (1) is connected to a water intake pump (3) via a water intake pipe, allowing the effluent water to enter a subsequent anaerobic or aerobic process; using the residual wastewater (4) from the wastewater treatment plant to start and acclimate the anaerobic hydrolysis-acidification reactor (1). The method greatly reduces the rust generation rate of zero-valent iron utilizing the condition of the anaerobic/air-tight environment. At the same time, the zero-valent iron enhances the contaminant degradation capacity in the anaerobic hydrolysis-acidification reactor (1), thus increasing the COD removal capability and facilitating the formation of acetic acid, a product that can be easily mineralized.
机译:零价铁强化厌氧水解-酸化的废水处理方法在厌氧水解-酸化反应器(1)的中部配置3〜6个零价铁堆积层(2)。厌氧水解酸化反应器(1)的下部通过进水管与进水泵(3)相连,使废水进入后续的厌氧或好氧工艺。使用废水处理厂中的残留废水(4)启动并适应厌氧水解-酸化反应器(1)。该方法利用厌氧/气密环境的条件大大降低了零价铁的生锈率。同时,零价铁提高了厌氧水解-酸化反应器(1)中的污染物降解能力,从而提高了COD的去除能力并促进了乙酸的形成,而乙酸易于矿化。

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