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ENHANCED ELECTRO-OXIDATION FOR TKN REMOVAL FROM HIGHLY POLLUTED INDUSTRIAL WASTEWATER

机译:从高污染的工业废水中增强了TKN的电氧化

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Many industrial effluents contain concentrated Total Kjeldahl Nitrogen (TKN), which may might be also accompanied with ammonia, sulfur, iron, total solids, etc. Conventional wastewater treatment plants are unable to remove TKN, to a level acceptable for the ecosystem, thus, such wastewater has to be treated at the source; however, adequate methods have not been demonstrated yet. The industrial wastewater of concern, which contained 14 g TKN/L and 11 g NH4/L had a low probability to be biologically treated, therefore, an enhanced electro-oxidation method was proposed in this study. The industrial effluent was subjected to a series of tests, where finally the electro-Fenton oxidation demonstrated the best results; however, the method was designed to be effective without an addition of external iron; iron pollutant contained in wastewater was used instead. DC electrical field permitted to keep iron at an adequate state for the Fenton reactions. The results from batch reactors of 2.2L showed an excellent removal of TKN and ammonia - 98.7% and 99.5%, respectively. In order to decrease the detention time to 24h, an Electro-Fenton Sequential Batch Reactor (EF-SBR) was invented and designed. Considering a low degradability of TKN in the form of amides, the developed Enhanced Electro-Fenton Oxidation method based on wastewater components, is an effective approach in preventing the discharge of organic nitrogen to the sewage system and therefore protecting the environment. Moreover, the proposed design is sustainable since limits supplying additional chemicals and optimizes energy use. The technology is ready for a full-scale application.
机译:许多工业污水含有浓缩的总KJELDAHL氮(TKN),其也可以伴有氨,硫,铁,总固体等。常规废水处理厂无法去除TKN,以对生态系统可接受的水平,因此这些废水必须在源处进行处理;但是,尚未证明足够的方法。含有14g TKN / L和11g NH 4 / L的关注的工业废水具有较低的生物处理的概率,因此在本研究中提出了增强的电氧化方法。对工业流出物进行一系列试验,最后电芬氧化呈现最佳效果;然而,该方法设计用于无需添加外部铁;使用废水中含有的铁污染物代替。允许直流电场以足够的状态保持铁,以使FENTON反应的适当状态。批量反应器的结果分别表现出优异的TKN和氨 - 98.7%和99.5%。为了将滞留时间降至24h,发明和设计了一种电芬顿序列批量反应器(EF-SBR)。考虑到酰胺形式的TKN降低性,基于废水组分的显影增强的电芬氧化方法是一种有效的方法,防止有机氮气排放到污水系统,从而保护环境。此外,所提出的设计是可持续的,因为提供额外的化学品并优化能量使用。该技术已准备好进行全面应用。

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