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Mitigation of CO 2 e Emissions from the Municipal Solid Waste Sector in the Kingdom of Bahrain

机译:减少巴林王国城市固体废物部门产生的CO 2 e排放

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摘要

Mitigating climate change to limit the global temperature increase (relative to pre-industrial temperatures) to 2 °C is receiving considerable attention around the world. Here, historical and future carbon dioxide equivalent (CO 2 e) emissions from municipal solid waste (MSW) in Bahrain were calculated using the revised Intergovernmental Panel on Climate Change (IPCC) 1996 and IPCC 2006 methods. The extent to which waste-to-energy (WtE) technologies can contribute to climate change mitigation was assessed by performing a multicriteria analysis. The results indicated that CO 2 e emissions from MSW in Bahrain have been increasing since the Askar landfill was constructed in 1986. Emission recalculations indicated that CO 2 e emissions from MSW contribute 6.2% of total emissions in Bahrain rather than the 11.6% reported in the second national communication. Methane emissions from MSW in 2030 are predicted to be 22–63 Gg. The WtE technologies anaerobic digestion and landfill gas recovery gave the best and gasification the worst multicriteria analysis model results. A database of WtE plants around the world should be compiled to allow decisions around the world to be based on best practices. The potential for maximizing energy recovery and decreasing costs needs to be investigated to allow WtE plants to compete better with renewable and nonrenewable energy sources.
机译:缓解气候变化以将全球温度升高(相对于工业化前的温度)限制为2°C受到了全世界的极大关注。在此,巴林市的城市固体废物(MSW)排放的历史和未来二氧化碳当量(CO 2 e)排放量是使用经修订的政府间气候变化专门委员会(IPCC)1996和IPCC 2006方法计算的。通过执行多标准分析,评估了废物能源转换(WtE)技术对缓解气候变化的贡献程度。结果表明,自1986年阿斯卡(Askar)垃圾填埋场建成以来,巴林MSW的CO 2 e排放一直在增加。排放重新计算表明,MSW CO 2 e排放占巴林总排放的6.2%,而不是巴林报告的11.6%。第二次国家信息通报。到2030年,城市生活垃圾的甲烷排放量预计为22-63 Gg。 WtE技术的厌氧消化和垃圾填埋气回收率最佳,而气化则是最差的多标准分析模型结果。应该汇编世界各地的WtE工厂数据库,以使全世界的决策都可以基于最佳实践。需要研究使能量回收最大化和降低成本的潜力,以使WtE工厂能够更好地与可再生和不可再生能源竞争。

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