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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Material inter-recycling for advanced nitrogen and residual COD removal from bio-treated coking wastewater through autotrophic denitrification
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Material inter-recycling for advanced nitrogen and residual COD removal from bio-treated coking wastewater through autotrophic denitrification

机译:通过自养反硝化从生物处理的焦化废水中再循环互联氮和残留鳕鱼的再循环再循环

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摘要

For wastewaters containing high strength sulfide and nitrogen (e.g. coking wastewater), sulfide might be precipitated and recovered using ferrous salt. This study systematically investigated the feasibility of recovered and precipitated FeS (comparing to commercial FeS minerals) to support autotrophic denitrification for advance nitrogen removal from bio-treated coking wastewater in fluidized bed reactors. The reactor with precipitated FeS could achieve simultaneous removal of NO3--N and inert COD with high efficiencies of around 96.3% and 30.5%, at NO3--N and COD loading rates of 4.18 mg.L-1.h(-1) and 8.06 mg.L-1.h(-1), respectively. Whereas, the performance of commercial FeS reduced gradually and irreversibly after two days, which became completely ineffective after 40 days. Thiobacillus and Rhodanobacter dominated the biomass, which played a key role in the FeS-based denitrification process. This material inter-recycling concept benefits an advance and more sustainable treatment of wastewaters with high strength sulfide and nitrogen.
机译:对于含有高强度硫化物和氮气(例如焦化废水)的废水,硫化物可能沉淀并使用含铁盐回收。本研究系统地研究了回收和沉淀的FES(比较与商业FES矿物质)的可行性,以支持从流化床反应器中的生物处理的焦化废水中预先脱氮的自养反硝化。具有沉淀的FES的反应器可以同时除去NO3 - N和惰性鳕鱼,高效率约为96.3%和30.5%,NO 3 - N和COD加载率为4.18 mg.l-1.h(-1)分别为8.06 mg.l-1.h(-1)。然而,两天后,商业FE的性能逐渐减少,不可逆转,在40天后完全无效。 Thiobacillus和Rhodanobacter主导了生物量,在基于FES的脱硝过程中起着关键作用。这种材料再循环概念有利于具有高强度硫化物和氮气的废水的进步和更可持续的处理。

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