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Environmental, energy, and economic analysis of integrated treatment of municipal solid waste and sewage sludge: A case study in China

机译:城市生活垃圾和污泥综合处理的环境,能源和经济分析:以中国为例

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Incineration is well used to treat municipal solid wastes (MSW) but is difficult to treat sewage sludge (SS) because it requires a large amount of heat to remove high content of moisture in SS. Over 50 billion tons of SS are discharged annually in China, and the need for a better waste treatment strategy is urgent. This paper is to introduce a waste disposal technology referring to the integrated treatment of MSW and SS. Four scenarios were analyzed including Mono-incineration of MSW (Case 1) and SS (Case 2), co-incineration of SS and MSW by traditional (Case 3) and integrated ways (Case 4), in terms of environment, energy and economic impact by means of LCA, CED and TEA method. From the environmental perspective, the top four mid-point categories involving the largest effect on four cases are N-C (non-carcinogens), OLD (Ozone layer depletion), TET (Terrestrial eco-toxicity), and GWP (Global warming potential). Case 4 has the most positive effect on climate change and resources (-1.44 kg CO2 eq and -18 MJ, respectively) according to end-point categories. From the view of energy, Case 4 shows the best performance of energy efficiency, and significantly saves the non-renewable energy (0.21 t coal per ton feedstock compared with Case 3). From the economic part, Case 4 is preferentially potential with the best profit, cutting down 79.08% of cost in coal than that in Case 3. These results provide understandings of developing an effective approach for co-treating MSW and SS in the near future. (C) 2018 Elsevier B.V. All rights reserved.
机译:焚化技术非常适合处理城市固体废物(MSW),但难以处理污水污泥(SS),因为它需要大量热量才能去除SS中的高水分。中国每年排放超过500亿吨SS,迫切需要更好的废物处理策略。本文将介绍一种涉及MSW和SS一体化处理的废物处理技术。在环境,能源和经济方面,分析了四种情景,包括城市固体废弃物的单焚化(案例1)和SS(案例2),通过传统方式(案例3)和传统方法(案例4)共焚化SS和MSW通过LCA,CED和TEA方法产生影响。从环境角度来看,对四种病例影响最大的前四个中点类别是N-C(非致癌物),OLD(臭氧层消耗),TET(陆地生态毒性)和GWP(全球变暖潜能)。根据端点类别,案例4对气候变化和资源(分别为1.44 kg CO2当量和-18 MJ)具有最积极的影响。从能源的角度来看,案例4表现出最佳的能源效率,并显着节省了不可再生能源(与案例3相比,每吨原料为0.21吨煤)。从经济方面来看,案例4优先具有最高的利润潜力,比案例3减少了79.08%的煤炭成本。这些结果为理解在不久的将来开发一种有效的城市生活垃圾和SS共同处理方法提供了理解。 (C)2018 Elsevier B.V.保留所有权利。

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