| Literature DB >> 29705047 |
Yanqing Wang1, Xiaohong Zhang2, Wenjie Liao3, Jun Wu1, Xiangdong Yang4, Wei Shui5, Shihuai Deng1, Yanzong Zhang1, Lili Lin1, Yinlong Xiao1, Xiaoyu Yu1, Hong Peng1.
Abstract
China has become the largest generator of municipal solid waste (MSW) in the world with its rapid urbanization, population growth and raising living standard. Among diverse solid waste disposal technologies, MSW incineration has been becoming an attractive choice. In terms of systematic point, an integrated MSW incineration system should include an incineration subsystem and a bottom ash (BA) disposal subsystem. This paper employed an extend emergy assessment method with several improved indicators, which considers the emissions' impact, to evaluate the comprehensive performances of an integrated MSW incineration system. One existing incineration plant in Yibin City, Sichuan Province, China, as a case study, is evaluated using the proposed method. Three alternative scenarios (scenario A: the incineration subsystem + the BA landfill subsystem; scenario B: the incineration subsystem + the concrete paving brick production subsystem using BA as raw material; scenario C: the incineration subsystem + the non-burnt wall brick production subsystem using BA as raw material) were compared. The study results reveal that the ratio of positive output is 1.225, 2.861 and 1.230, the improved environmental loading ratio is 2.715, 2.742 and 1.533, and the improved environmental sustainability index is 0.451, 1.043 and 0.803 for scenario A, B and C respectively. Therefore, reuse of BA can enhance the sustainability level of this integrated system greatly. Comparatively, scenario B has the best comprehensive performance among the three scenarios. Finally, some targeted recommendations are put forward for decision-making.Keywords: BA disposal; Emergy; Emissions’ impacts; MSW incineration
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Year: 2018 PMID: 29705047 DOI: 10.1016/j.wasman.2018.04.003
Source DB: PubMed Journal: Waste Manag ISSN: 0956-053X Impact factor: 7.145