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Paper for Publication in IOP: Conference Series Leachate Treatment using three Years Aged Lysimetric Bioreactor Models

机译:IOP中出版纸张:会议系列渗滤液治疗使用三年的液化生物反应器模型

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This study was conducted as a response to address the problem of land availability for Cipayung landfill that no longer able to accommodate waste generation Depok City and to protect water pollution in receiving water body. Law No. 8/2008 explained that local governments and cities are required to create a sanitary landfill as a final waste processing system to replace open dumping that had been done by almost all the final processing of waste in cities in Indonesia. Sanitary landfill is the final waste processing system that works best and is environmentally friendly. The sanitary landfill will generate leachate. Leachate is the result of precipitation, evaporation, surface runoff, water infiltration into the waste, and also including the water contained in the waste. The purpose of this study was to determine the utilization of leachate generated by three years aged reactor.This study use a modeling tools as bioreactor landfill tank or so called lysimetric, that made of the polymer material that susceptible to high heat and pressure. This bioreactor landfill tank has a diameter of 0.83 m, with a surface area of 0.54 m~2 and a height of 2.02 m, with the examination duration of 115 days. This tank consists of several layer, such as sand layer, solid waste layer, water layer and piping system. These layer has 3 year aged. The In this research, leachate recirculation in bioreactor landfills was conducted with waste layered loading systems with percolation system. This research has been conducted since the beginning of 2016, sampling, field measurement and analysis of leachate and waste quality carried out for approximately 115 days of field measurements. Several parameter were measured such as pH, BOD, COD, nitrate, nitrite and TSS. From the analysis of the leachate quality parameters of pH, BOD, COD, nitrite, TSS, showed a reduction in the concentration of the three reactors. The concentration of parameters measured at the initial stage until the final stage, showed a reduction in the concentration of the parameters, even reaching 90% reduction for BOD (biological oxygen demand), COD, (chemical oxygen demand) nitrite, and TSS (total solid suspended) parameters. So it can be concluded that the recirculation of leachate of the sanitary landfill can reduce the concentration of pollutants in the leachate that will be discharged into water bodies, thereby reducing the pollution of the receiving water body. This research is funding by PUPT Kemristekdikti and DRPM UI
机译:本研究作为回应解决了CIPAUNG垃圾填埋场土地可用性问题,即不再能够容纳废物发电代购,并保护水污染在接受水体内。第8/2008号法律解释说,当地政府和城市需要创造一个卫生垃圾填埋场,作为最终废物处理系统,以取代几乎所有最终处理印度尼西亚的废物的最终处理所做的开放倾销。卫生垃圾填埋场是最佳的最终废物加工系统,可为环保。卫生垃圾填埋场将产生渗滤液。渗滤液是沉淀,蒸发,表面径流,水渗透到废物的结果,以及包括废物中所含的水。本研究的目的是确定三年后老化反应器产生的渗滤液的利用。本研究使用建模工具作为生物反应器垃圾填埋箱或所谓的溶液,其由易受高热和压力的聚合物材料制成。这种生物反应器垃圾填埋箱的直径为0.83米,表面积为0.54 m〜2,高度为2.02米,检查持续时间为115天。该罐包括几层,如砂层,固体废物层,水层和管道系统。这些层有3年年龄。在本研究中,用渗透系统的废物分层装载系统进行了生物反应器垃圾填埋场的渗滤液再循环。自2016年初开始,采样,现场测量和渗滤液和废物质量分析进行了这项研究,对现场测量的约115天进行了渗滤液和废物质量。测量几个参数,例如pH,BOD,COD,硝酸盐,亚硝酸盐和TS。根据PH,BOD,COD,亚硝酸盐,TSS的渗滤液质量参数的分析表明三种反应器的浓度降低。在初始阶段测量的参数浓度,直到最终阶段,参数浓度降低,甚至达到BOD(生物需氧量),COD,(化学需氧量)亚硝酸盐和TSS(总计)的90%固体悬浮)参数。因此,可以得出结论,卫生垃圾填埋场的渗滤液再循环可以降低将排出水体的渗滤液中污染物的浓度,从而减少接收水体的污染。这项研究是Pupt Kemristekdikti和Drpm UI的资金

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