首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Development of simultaneous nitrification-denitrification (SND) in biofilm reactors with partially coupled a novel biodegradable carrier for nitrogen-rich water purification
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Development of simultaneous nitrification-denitrification (SND) in biofilm reactors with partially coupled a novel biodegradable carrier for nitrogen-rich water purification

机译:在生物膜反应器中进行同时硝化 - 硝化碳化(SND)的开发,其具有部分偶联一种用于富含氮的水净化的新型生物降解载体

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Development of simultaneous nitrification-denitrification (SND) is a promising approach for nitrogenrich water purification. Coupling biofilm reactors with novel biodegradable carrier of Pumelo Peel (PP) and various conventional plastic fillers (polyurethane filler, SPR-1 suspension filler, TA-II elastic filler and sphere filler) were examined to achieve SND in this study. Results represented that partially coupled with PP could achieve highly efficient SND. Optimal performance appealed in a bioreactor of coupling PP and SPR-1filler with ammonia and total nitrogen removal efficiencies of 96.8 +/- 4.0% and 78.9 +/- 9.5%, respectively, as well as low effluent CODMn of 1.85 +/- 0.86 mg L-1. Notably, PP and conventional plastic filler played obviously different roles in combined bioreactor system. Microbial analysis suggested that dominant genera were Thiothrix, Gemmata, unclassified comanonadaceae, unclassified Rhizobiales, Salipiger, Chloronema and Klebsiella in optimal combined bioreactor, which indicated novel co-existence of heterotrophic nitrification, solid-phase, non-solid-phase heterotrophic and sulfur-based autotrophic denitrification for achieving efficient SND. (C) 2017 Elsevier Ltd. All rights reserved.
机译:同时硝化 - 反硝化(SND)的发展是一种有希望的氮素水纯化的方法。在本研究中,研究了用Pumelo Peel(PP)和各种常规塑料填料(聚氨酯填料,SPR-1悬浮填料,TA-II弹性填料,TA-II弹性填料,TA-II弹性填料)的生物膜反应器。表示与PP部分耦合的结果可以实现高效的SND。在偶联的PP和SPR-1填充剂的生物反应器中呼吸最佳性能,分别具有96.8 +/- 4.0%和78.9 +/- 9.5%的全氮去除效率,以及1.85 +/- 0.86 mg的低污水CODEM L-1。值得注意的是,PP和常规塑料填料在组合生物反应器系统中发挥明显不同的作用。微生物分析表明,占优势的属,Gemmata,未分类的Comanonadaceae,未播种的Rhizobiales,Salipiger,Collonema和Klebsiella在最佳的组合生物反应器中,表明新颖的异养硝化,固相,非固相异养和硫 - 基于自养的脱氧层实现高效的SND。 (c)2017 Elsevier Ltd.保留所有权利。

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