An experimental study on landfill technology to produce an alternative source of energy from organic waste

Wael M. A. Ahmedelbdawy, Abuelnuor A. A. Abuelnuor, Adil A. M. Omara, Sadah Adil Taha
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引用次数: 5

Abstract

Municipal solid waste (MSW) alludes to waste produced from residential, commercial, institution and public parks. The MSW is basically treated in three different methods: thermal conversion, biological treatment and landfilling. Landfilling is the process which used in this paper to treat the MSW. This paper aims to design and construct lab scale landfill model to provide a suitable technical solution for energy recovery in Khartoum using organic waste, and additionally to determine the amount of methane gas that can be produced from this landfill model. The methodology of experiment was carried out by digging the land to create a hole with dimensions of (2 m x 1.5 m x 2 m). The next step was construction of the first class of insulation layer recompacted clay. A protective layer was constructed and welded to prevent the leakage of waste water. Leachate collection system insulated was constructed and geotextile layer was added above it. Then, a manual collecting of food waste was done and the creation of the waste layer was carried out. Setup final closure layer was done which contains of geotextile. The landfill was filled in landfill parts to reach the ultimate height as soon as possible. Portable gas analyzer was used to measure CH4 concentrations by volume. The measuring process showed that the concentrations of CH4 vary in range 0.1 % to 0.3%. The results showed that the landfill technology could produce methane gas from organic waste and this indicated that organic waste can be an alternative source of energy.
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从有机废物中产生替代能源的填埋技术的实验研究
城市固体废物(MSW)是指住宅、商业、机构和公园产生的废物。城市生活垃圾基本上有三种不同的处理方法:热转化、生物处理和填埋。垃圾填埋是本文所采用的处理城市生活垃圾的方法。本文旨在设计和构建实验室规模的垃圾填埋场模型,为喀土穆利用有机废物回收能源提供合适的技术解决方案,并确定该垃圾填埋场模型可产生的甲烷气体量。实验方法是在地面上挖一个尺寸为(2米× 1.5米× 2米)的洞,下一步是建造第一类保温层重压粘土。为了防止废水的泄漏,施工并焊接了一层保护层。建立了渗滤液保温收集系统,并在其上加装土工布层。然后,对食物垃圾进行人工收集,并创建废物层。最后完成了包含土工布的封闭层的设置。填埋部位填埋,以尽快达到极限高度。采用便携式气体分析仪测定CH4的体积浓度。测定过程表明,CH4的浓度变化范围为0.1% ~ 0.3%。结果表明,垃圾填埋技术可以从有机废物中产生甲烷气体,这表明有机废物可以作为替代能源。
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