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Conversion Technologies: Evaluation of Economic Performance and Environmental Impact Analysis for Municipal Solid Waste in Malaysia

机译:转换技术:马来西亚市政固体废物经济绩效及环境影响分析的评价

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摘要

The generation of municipal solid waste (MSW) is increasing globally every year, including in Malaysia. Approaching the year 2020, Malaysia still has MSW disposal issues since most waste goes to landfills rather than being utilized as energy. Process network synthesis (PNS) is a tool to optimize the conversion technologies of MSW. This study optimizes MSW conversion technologies using a PNS tool, the “process graph” (P-graph). The four highest compositions (i.e., food waste, agriculture waste, paper, and plastics) of MSW generated in Malaysia were optimized using a P-graph. Two types of conversion technologies were considered, biological conversion (anaerobic digestion) and thermal conversion (pyrolysis and incinerator), since limited data were available for use as optimization input. All these conversion technologies were compared with the standard method used: landfilling. One hundred feasible structure were generated using a P-graph. Two feasible structures were selected from nine, based on the maximum economic performance and minimal environmental impact. Feasible structure 9 was appointed as the design with the maximum economic performance (MYR 6.65 billion per annum) and feasible structure 7 as the design with the minimal environmental impact (89,600 m3/year of greenhouse gas emission).
机译:每年在全球范围内增加市政固体废物(MSW),包括马来西亚。在2020年代到达2020年,马来西亚仍然有MSW处置问题,因为大多数浪费都是垃圾填埋场而不是被用作能源。过程网络合成(PNS)是一种优化MSW转换技术的工具。本研究使用PNS工具优化MSW转换技术,“过程图”(P-Traph)。使用p-graph优化马来西亚MSW的四种最高的组合物(即食物废物,农业废物,纸和塑料)。考虑了两种类型的转化技术,生物转化(厌氧消化)和热转换(热解和焚烧炉),因为有限的数据可用于优化输入。将所有这些转换技术与使用的标准方法进行比较:填埋场。使用P形图产生一百个可行的结构。来自九个选择两种可行的结构的基础上,最大的经济效益和环境影响最小。可行的结构9被任命为设计,具有最大的经济性能(MYR 6.65亿人)和可行的结构7作为设计,环境影响最小(温室气体排放89,600 M3 /年)。

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