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Application of Seaweed as an Alternative for Leachate Treatment of Heavy Metal

机译:海藻作为重金属渗滤液处理的替代品

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Improper management of sanitary landfill w ill become a huge problem to the environment. The main pollution occur by sanitary landfill is the generation of leachate which w ill affect groundwater, ecosystem and also human health because of the highly content of heavy metal. The removal of heavy metal in leachate has become important to maintain water quality standard before it w ill discharge to environment. In this study, the removal efficiency of heavy metal by seaweed was examined. Three optimum conditions have been selected to design high efficiency of treatment system which is optimum contact time, optimum pH of sample and optimum seaweed dosage. The removal performance was found on 40 minutes of contact time with the removal efficiency is 53.30%. For the optimum biosorption, pH value of Fe- was determined at 8 at a lab temperature. And 500mg amount of seaweed for 100mL was obtained as the most optimum removal of metal by seaweed. Biosorption of metal in raw leachate by seaweed was examined by taken the optimum condition obtained. Two metals in leachate sample, Fe~(2+) and Mn~(2+) was analyzed and the maximum percentage uptake value is 38.90% for Fe~(2+) and 52.90% for removal efficiency percentage of Mn~2. From this, it can be concluded that seaweed has a potential in heavy metal absorption in leachate. From the optimum condition obtained, suitable wastewater treatment in heavy metal removal by seaweed was proposed.
机译:卫生垃圾填埋场不当管理是对环境的巨大问题。卫生垃圾填埋场的主要污染是产生渗滤液的渗滤液,由于含重的重金属的含量高,它会影响地下水,生态系统和人类健康。在渗滤液中除去重金属的重质金属是在将水质排放到环境中进行水质标准的重要性。在这项研究中,检查了海藻的重金属的去除效率。选择了三种最佳条件以设计高效率的治疗系统,其是最佳接触时间,样品的最佳pH和最佳海藻剂量。在40分钟的接触时间内发现去除性能,除去效率为53.30%。对于最佳生物吸附,在实验室温度下在8时测定Fe-的pH值。获得500毫克100ml的海藻,作为海藻最佳的金属去除。通过采取最佳条件检查海藻中原料渗滤液中金属的生物吸收。分析了两种渗滤液样品中的金属,Fe〜(2+)和Mn〜(2+),Fe〜(2+)的最大百分比摄取值为38.90%,除去效率百分比的Mn〜2的52.90%。从这上,可以得出结论,海藻在渗滤液中具有重金属的潜力。从获得的最佳条件下,提出了海藻重金属中的合适废水处理。

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