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Effects of in situ nitrogen removal on degradation/stabilization of MSW in bioreactor landfill

机译:原位脱氮对生物反应器垃圾填埋场中MSW降解/稳定的影响

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The effects of in situ nitrogen removal on degradation of municipal solid waste (MSW) in bioreactor landfill system were investigated. The in situ nitrogen removal bioreactor landfill (NBL) consisted of fresh-refuse filled, methanogenic and nitrifying reactors was operated. The two-phase bioreactor landfill (BL) comprised of fresh-refuse filled and methanogenic reactors was used as control. The methanogenic and nitrifying reactors were all loaded with aged refuse whose placement time was 6-7 yr. Furthermore, the nitrifying reactor was in situ aerated. The results showed that the degradation of fresh-refuse was delayed and CH4 production also was reduced in the in situ nitrogen removal bioreactor landfill. It was feasible to perform in situ ammonia nitrification in aged refuse. Moreover, the efficiency of oxygen utility was high during the in situ nitrification because of the porous characteristic of aged refuse. Supplementing only 8.5 mg O-2 mg(-1) N d(-1) to aged refuse could make ammonia removed completely. However, aeration did not accelerate the further stabilization of aged refuse. (c) 2007 Elsevier Ltd. All rights reserved.
机译:研究了原位脱氮对生物反应器垃圾填埋系统中城市固体废物(MSW)降解的影响。运行了由新鲜垃圾填埋,产甲烷和硝化反应器组成的原位脱氮生物反应器垃圾填埋场(NBL)。由新鲜垃圾填充和产甲烷反应器组成的两相生物反应器垃圾填埋场(BL)被用作对照。产甲烷和硝化反应器均装有老化的垃圾,放置时间为6-7年。此外,将硝化反应器原位充气。结果表明,原位脱氮生物反应器垃圾填埋场中新鲜垃圾的降解被延迟,CH4的产生也被减少。在老化的垃圾中进行原位氨硝化是可行的。此外,由于老化垃圾的多孔性,原位硝化过程中的氧气利用效率很高。仅向老化的垃圾补充8.5 mg O-2 mg(-1)N d(-1)可使氨完全去除。但是,通气并不能加速老化垃圾的进一步稳定。 (c)2007 Elsevier Ltd.保留所有权利。

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