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Simultaneous adsorption and biological treatment of pre-treated landfill leachate by fed-batch operation

机译:分批分批操作同时吸附和预处理生物质垃圾渗滤液

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Due to high chemical oxygen demand (COD), ammonium-N content and presence of toxic compounds such as heavy metals, direct biological treatment of landfill leachate results in low removal efficiencies. In order to improve biological treatability of the leachate. coagulation-flocculation and air stripping of ammonia were used as pre-treatment. Pre-treated leachate was treated biologically using an aeration tank operated in fed-batch mode in the absence and presence of powdered activated carbon (PAC) as adsorbent. PAC addition improved COD removal significantly especially at concentrations above 0.5 gl~(-1). However, improvements in COD removals were marginal for PAC concentrations above 2 gl~(-1). Nearly 86% COD removal was achieved with 2 gl~(-1) PAC added biological treatment whereas, COD removals by only biological oxidation and only PAC adsorption were nearly 74 and 38%, respectively at the end of 30 h of fed-batch operation. An empirical equation was developed to describe the contribution of adsorption over biological treatment as a function of PAC concentration.
机译:由于化学需氧量(COD)高,铵态氮含量高以及有毒化合物(如重金属)的存在,对垃圾渗滤液进行直接生物处理导致去除效率低下。为了提高渗滤液的生物可处理性。凝结絮凝和氨气吹出作为预处理。在不存在和存在粉末状活性炭(PAC)作为吸附剂的情况下,使用以分批进料模式操作的曝气池对经过预处理的渗滤液进行生物处理。 PAC的添加显着改善了COD的去除,尤其是在浓度高于0.5 gl〜(-1)时。但是,PAC浓度高于2 gl〜(-1)时,COD去除的改善作用很小。在加料分批操作的30小时结束时,添加2 gl〜(-1)PAC生物处理可实现近86%的COD去除,而仅生物氧化和仅PAC吸附可分别去除近74%和38%的COD。 。建立了一个经验方程来描述吸附对生物处理的贡献与PAC浓度的关系。

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