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Processes for the removal of recalcitrant organics from industrial wastewaters

机译:从工业废水中去除顽固有机物的方法

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Processes that are suitable for the elimination of recalcitrant organics from industrial wastewaters are reviewed. Most advantageous are separation processes which enable not only reuse of the water phase but also the recycling of the wastewater constituents. Besides separation processes many degradative wastewater techniques are available. However, for the removal of recalcitrant organics biological processes (which are economically beneficial) cannot be chosen, but a variety of nonbiological degradative processes exist which can be divided into oxidative and reductive technologies. The latter are in the research and development state. The chemical oxidative treatment technologies comprise wastewater incineration and wet air oxidation for wastewaters with high organic concentrations, the so-called advanced oxidation processes (AOPs) as e.g. ozone/hydrogen peroxide which generate the nonselective but very powerful oxidant OH radical, and processes with other oxidants as e.g. Fe(VI) compounds or peroxodisulfate. Also electrochemical oxidation of organic wastewater constituents is possible. All degradative processes that do not lead to total mineralization of organic wastewater constituents may form transformation products which sometimes are more toxic than the original organic compounds.
机译:审查了适合从工业废水中去除顽固有机物的工艺。最有利的是分离方法,该方法不仅能够使水相再利用,而且能够使废水成分再循环。除了分离工艺,还有许多降解废水技术可用。然而,为了除去顽固的有机物,不能选择生物学方法(在经济上是有益的),但是存在多种非生物降解方法,可以将其分为氧化技术和还原技术。后者处于研发状态。化学氧化处理技术包括废水焚烧和高有机物浓度的废水的湿空气氧化,所谓的高级氧化工艺(AOP)例如臭氧/过氧化氢,其产生非选择性但非常强大的氧化剂OH基,并与其他氧化剂(例如Fe(VI)化合物或过二硫酸盐。有机废水成分的电化学氧化也是可能的。所有不会导致有机废水成分完全矿化的降解过程都可能形成转化产物,有时其毒性要比原始有机化合物高。

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