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Comparison of two biological treatment processes using attached- growth biomass for sanitary landfill leachate treatment

机译:使用附着生长生物质处理垃圾填埋场渗滤液的两种生物处理工艺的比较

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摘要

The objective of this investigation was to compare two biological systems using attached-growth biomass, for treatment of lea- chates generated in a typical municipal solid waste sanitary landfill. A moving-bed biofilm process, which is a relatively new type of biological treatment system, has been examined. It is based on the use of small, free-floating polymeric (polyurethane) elements, while biomass is being grown and attached as biofilm on the surface of these porous carriers. A granular activated carbon (GAC) moving-bed biofilm process was also tested. This method combines both physico-chemical and biological removal mechanisms for the removal of pollutants. The presence of GAC offers a suitable porous media, which is able to adsorb both organic matter and ammonia, as well as to provide an appropriate surface onto which biomass can be attached and grown. A laboratory-scale sequencing batch reactor (SBR) was used for the examination of both carriers. The effects of different operation strategies on the efficiency of these biological treatment processes were studied in order to optimize their performance, especially for the removal of nitrogen compounds and of biodegradable organic matter. It has been found that these processes were able to remove nitrogen content almost completely and simultaneously, the removal of organic matter (expressed as BOD_5 and COD), color and turbidity were sufficiently achieved.
机译:这项研究的目的是比较两种使用附着生物量的生物系统,以处理典型的城市固体废物卫生垃圾填埋场产生的渗滤液。已经研究了移动床生物膜工艺,这是一种相对新型的生物处理系统。它是基于使用小的,自由浮动的聚合物(聚氨酯)元素,而生物量正在生长并作为生物膜附着在这些多孔载体的表面。还测试了颗粒状活性炭(GAC)移动床生物膜工艺。该方法结合了物理化学和生物去除机制以去除污染物。 GAC的存在提供了合适的多孔介质,该介质能够吸附有机物和氨气,并提供合适的表面,可以在上面附着生物质并使其生长。实验室规模的测序间歇反应器(SBR)用于两种载体的检查。研究了不同操作策略对这些生物处理工艺效率的影响,以优化其性能,尤其是对于去除氮化合物和可生物降解的有机物。已经发现,这些过程能够几乎同时地去除氮含量,有机物(表示为BOD_5和COD),颜色和浑浊度的去除均得以充分实现。

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