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Nitrogen removal from landfill leachate via ex situ nitrification and sequential in situ denitrification

机译:通过异地硝化和顺序原位反硝化去除垃圾渗滤液中的氮

摘要

Ex situ nitrification and sequential in situ denitrification represents a novel approach to nitrogen management at landfills. Simultaneous ammonia and organics removal was achieved in a continuous stirred tank reactor (CSTR). The results showed that the maximum nitrogen loading rate (NLR) and the maximum organic loading rate (OLR) was 0.65 g N l (1) d (1) and 3.84 g COD l (1) d (1), respectively. The ammonia and chemical oxygen demand (COD) removal was over 99% and 57%, respectively. In the run of the CSTR. free ammonia (FA) inhibition and low dissolved oxygen (DO) were found to be key factors affecting nitrite accumulation. In situ denitrification was studied in a municipal solid waste (MSW) column by recalculating nitrified leachate front CSTR. The decomposition of MSW was accelerated by the recirculation of nitrified leachate. Complete reduction of total oxidized nitrogen (TON) was obtained with maximum TON loading of 28.6 g N t (1) TS d(-1) and denitrification was the main reaction responsible. Additionally, methanogenesis inhibition was observed while TON loading was over 11.4 g N t (1) TS d (1) and the inhibition was enhanced with the increase of TON loading. (c) 2008 Elsevier Ltd. All rights reserved.
机译:非原位硝化和顺序原位反硝化是垃圾填埋场氮管理的一种新方法。在连续搅拌釜反应器(CSTR)中实现了氨和有机物的同时去除。结果表明,最大氮负荷率(NLR)和最大有机负荷率(OLR)分别为0.65 g N l(1)d(1)和3.84 g COD l(1)d(1)。去除氨和化学需氧量(COD)分别超过99%和57%。在CSTR的运行中。发现游离氨(FA)抑制和低溶解氧(DO)是影响亚硝酸盐积累的关键因素。通过重新计算硝化渗滤液前沿CSTR,在市政固体废物(MSW)色谱柱中对原位反硝化进行了研究。硝化渗滤液的再循环促进了城市固体废弃物的分解。完全还原总氧化氮(TON),最大TON负载为28.6 g N t(1)TS d(-1),反硝化是主要反应。另外,当TON负载量超过11.4 g N t(1)TS d(1)时,观察到甲烷生成抑制,并且随着TON负载量的增加,抑制作用增强。 (c)2008 Elsevier Ltd.保留所有权利。

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