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Treatment of landfill leachate using palm shell-activated carbon column: Axial dispersion modeling and treatment profile

机译:使用棕榈壳活性炭柱处理垃圾渗滤液的方法:轴向分散模型和处理方法

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摘要

The flow inside an adsorption column for the treatment of landfill leachate is a poorly understood parameter due to lack of studies on its fluid dynamics. In order to address this matter, axial dispersion modelling was conducted to determine the flow pattern of landfill leachate in a column with palm shell-activated carbon (PSAC) as media. In addition, the treatment profile of leachate via adsorption onto PSAC in terms of chemical oxygen demand (COD) and turbidity removal as well as leachate pH was studied. Lithium chloride (LiCl) was used as a non-reactive tracer. The vessel dispersion number (D/uL) was determined to be between 0.01 and 1, implying small and slow dispersion occurring in a plug flow-like dynamics. The model was applicable for modeling of leachate flow inside a pack bed column. Empty bed contact time (EBCT) was utilized to determine the treatment profile with regards to COD and turbidity removal from leachate. The highest 50% breakthrough of COD removal at 1460 mg/g was obtained at EBCT of 14.7 min. The EBCT has no significant effect on turbidity removal and effluent pH.
机译:由于缺乏对其流体动力学的研究,因此用于处理垃圾渗滤液的吸附塔内部的流量是一个鲜为人知的参数。为了解决此问题,进行了轴向分散建模,以确定了以棕榈壳活性炭(PSAC)为介质的填埋场渗滤液在色谱柱中的流动模式。此外,研究了通过吸附到PSAC上的渗滤液的处理特性,包括化学需氧量(COD)和除浊度以及渗滤液的pH值。氯化锂(LiCl)用作非反应示踪剂。测得的容器分散度数(D / uL)在0.01到1之间,这意味着在像活塞流一样的动力学过程中会发生小而缓慢的分散。该模型适用于模拟填充床塔内渗滤液的流动。利用空床接触时间(EBCT)确定关于渗滤液中COD和浊度去除的处理方式。在EBCT为14.7分钟时,获得了最高的50%的COD去除突破,为1460 mg / g。 EBCT对去除浊度和废水pH值没有显着影响。

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