首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Start-up of the SHARON and ANAMMOX process in landfill bioreactors using aerobic and anaerobic ammonium oxidising biomass
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Start-up of the SHARON and ANAMMOX process in landfill bioreactors using aerobic and anaerobic ammonium oxidising biomass

机译:使用好氧和厌氧铵氧化生物质在垃圾填埋生物反应器中启动SHARON和ANAMMOX工艺

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The main aim of this study is to analyse the feasibility to use aerobic ammonium oxidising bacteria (AOB) and anammox/AnAOB biomass enriched from mined municipal solid waste for in situ SHARON and ANAMMOX processes in laboratory scale landfill bioreactors (LFBR) for ammonia nitrogen removal. For this purpose, three LFBRs were operated as Control (without biomass seed), SHARON (with AOB biomass seed) and ANAMMOX (with anammox biomass seed) for 315days. Results showed nitrogen loading rate of 1.0kgN/d was effectively removed in SHARON and ANAMMOX LFBR. In SHARON LFBR, partial nitritation efficiency reached up to 98.5% with AOB population of MPN of 5.1×10~6/mL obtained. ANAMMOX LFBR gave evolution of 95% of nitrogen gas as the end product confirmed the ANAMMOX process. Nitrogen transformations, biomass development and hydrazine and hydroxylamine formation authenticated the enriched AOB and anammox biomass activity in landfill bioreactors.
机译:这项研究的主要目的是分析在实验室规模的垃圾填埋生物反应器(LFBR)中使用需氧铵氧化细菌(AOB)和从市政固体垃圾中富集的厌氧菌/厌氧菌生物质进行原位SHARON和ANAMMOX工艺的可行性。为此,三个LFBR作为对照(无生物量种子),SHARON(有AOB生物量种子)和ANAMMOX(有厌氧生物量种子)运行315天。结果表明,在SHARON和ANAMMOX LFBR中有效去除了1.0kgN / d的氮负载量。在SHARON LFBR中,当AOB的MPN为5.1×10〜6 / mL时,部分硝化效率达到98.5%。随着最终产品证实了ANAMMOX工艺,ANAMMOX LFBR释放出95%的氮气。氮转化,生物量发展以及肼和羟胺的形成证实了垃圾填埋生物反应器中丰富的AOB和厌氧氨氧化生物量活性。

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