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首页> 外文期刊>Waste Disposal & Sustainable Energy >Techno-economic assessment of energy generation through municipal solid waste: a case study for small/medium size districts in Pakistan
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Techno-economic assessment of energy generation through municipal solid waste: a case study for small/medium size districts in Pakistan

机译:通过市政固体废物对能源发电的技术经济评估:巴基斯坦中小型地区的案例研究

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摘要

Abstract There is an increase in annual waste generation due to urbanization, industrialization, and population growth. The waste management crisis in developing countries and its complexity from region to region has inspired extensive research work in this area. Poor management not only results in environmental hazards, but?it also?causes significant socio-economic losses. Due to the?absence of comprehensive studies on waste to energy (WTE) assessment, this study assesses and reports the merits of alternative technologies for converting WTE in small and medium-size districts. Quantitative analysis for waste collection data in this study uses a pilot study approach to provide useful insights and waste classification. A cantonment district of Pakistan (Wah Cantt) has been used as a case study for performing a technological and economic assessment of energy generation through the use of thermal and biological treatment processes. A mathematical modeling approach has been adopted for generating an economic value of each technology through which this waste can be processed. Further, the levelized cost of energy (LCOE) based assessment has been performed to provide a methodological framework for selecting the most feasible WTE technology in a small or medium-size district. Based on the model results, anaerobic digestion appears to be the most sustainable technology due to the organic nature of waste in Wah Cantt, land legislation, and availability of area to install a waste plant. Considering all the waste collected, the district can generate approximately 14.4?MW of energy through thermal treatment, 19,110?m3 of daily biogas through anaerobic digestion, and 5?million tons of fertilizer through composting. Hence, if a proper supply chain is established for converting a portion of Pakistan’s annual waste generation, a significant amount of waste energy potential can be restored.
机译:摘要,由于城市化,工业化和人口增长,每年的废物产生有所增加。发展中国家的废物管理危机及其从地区到地区的复杂性激发了该地区的广泛研究工作。管理不力不仅会造成环境危害,而且还会造成重大社会经济损失。由于缺乏关于浪费到能源(WTE)评估的全面研究,本研究评估并报告了在中小型地区转化WTE的替代技术的优点。本研究中废物收集数据的定量分析采用试验研究方法来提供有用的见解和废物分类。巴基斯坦州的一个州区(WAH CANTT)已被用作案例研究,用于通过使用热和生物处理过程对能源产生进行技术和经济评估。已经采用了一种数学建模方法来产生每种技术的经济价值,通过该技术可以处理这些废物。此外,已经进行了基于水平的能源成本(LCOE)评估,以提供方法学框架,以在中小型地区选择最可行的WTE技术。根据模型结果,由于WAH CANTT,土地立法和安装废物厂的区域的有机性质,厌氧消化似乎是最可持续的技术。考虑到所有收集的废物,该地区可以通过热处理产生大约14.4兆瓦的能量,每日沼气19,110 m3通过厌氧消化以及500万吨肥料通过堆肥。因此,如果建立了适当的供应链来转换巴基斯坦年度废物的一部分,则可以恢复大量的废物潜力。

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