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首页> 外文期刊>Renewable & Sustainable Energy Reviews >Biochemical methane potential assessment of municipal solid waste generated in Asian cities: A case study of Karachi, Pakistan
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Biochemical methane potential assessment of municipal solid waste generated in Asian cities: A case study of Karachi, Pakistan

机译:亚洲城市产生的城市固体废物的生化甲烷潜在评估:以卡拉奇,巴基斯坦为例

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Municipal solid waste (MSW) generation rate in Asian cities is exponentially increasing with rise in urbanization and commercial activities. Beside this, the cities in developing Asia are deficient in adequate waste management and facing energy shortage as well. The ineffectual waste management practice is one of the main causative factors behind the negative repercussions on public health and environment. This paper provides an estimation of power generation potential along with economic and environmental benefits of biochemical methane pro-duction from MSW. The biochemical methane potential (BMP) test of the MSW generated in Karachi, Pakistan was conducted by using the fresh synthetic waste sample. Through the analysis of the results obtained in this study and available data of the MSW generation (quantity, organic fraction and moisture content) in Karachi it is estimated that, every year about 5600 tons of methane are being wasted to atmosphere adding enormous share in global climate change. This study estimated that, about 63 MWe electric power can be generated by establishing biowaste digestion plants with power generation facilities in the city. The generated power can contribute 2.1% share in daily power supply and 21% power shortage can be reduced as well. Additionally, about 401.3 million-PKRs (2.6 million-US$) revenue can be earned every year by selling the power generated by utilizing the MSW in waste to energy plants. Moreover, 0.13 Mt CO2-eq/annum greenhouse effect caused by methane emissions from open disposal of MSW can be eliminated.
机译:亚洲城市的城市固体垃圾(MSW)生成率随着城市化和商业活动的上升是指数增长的。除此之外,发展中国家的城市也缺乏充足的废物管理,面临能源短缺。无效的废物管理实践是对公共卫生和环境负面影响背后的主要致病因素之一。本文估算了发电潜力以及从MSW的生化甲烷的经济和环境益处。通过使用新鲜的合成废物样品进行卡拉丘,巴基斯坦生物化学甲烷潜力(BMP)试验。通过分析本研究中获得的结果和卡拉奇中的MSW代(数量,有机分数和水分含量)的可用数据,估计,每年约为5600吨甲烷正在浪费在全球范围内的大气中气候变化。本研究估计,通过建立城市发电设施的BioWasty消化植物,可以产生大约63 MWE的电力。产生的电源可以在每日电源中贡献2.1%,也可以减少21%的功率短缺。此外,每年可以通过利用垃圾浪费对能源厂产生的功率来获得大约40130万美元的PKRS(260万美元)的收入。此外,可以消除由MSW开放式处理引起的0.13 MT CO2-EQ / ANNUM温室效应。

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