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Emission sources and mitigation of fluorinated Non-CO2 greenhouse gas in registered CDM projects

机译:注册CDM项目中氟化非二氧化碳温室气体排放源及减缓

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Typical non-CO2 greenhouse gases in clean development mechanism (CDM) projects include methane (CH4), nitrous oxide (N2O), and fluorinated gases (F-gases). The use of F-gases, such as hydrofluorocarbons (HFCs), perfluorocarbons (PFCs), and sulfur hexafluoride (SF6), has increased sharply in the semiconductor and electronics manufacturing industries. The global warming potential of F-gases is very high, ranging from 140 to 23 900. Therefore, there has been considerable interest in the reduction of F-gas emissions. This paper examines the emission sources, methodology, and reduction technologies of F-gases, using the project design documents of CDM projects registered in the United Nations Framework Convention on Climate Change (UNFCCC). In comparison to other non-CO2 gases, CDM projects have significantly reduced annual F-gas emissions. CDM projects achieved reductions of HFCs using thermal oxidation technology, mostly involving the chlorodifluoromethane (HCFC-22) production process; conversely, PFC reductions targeted the aluminum smelting process to reduce the anode effect. The extent of SF6 reduction in CDM projects was relatively high in the liquid crystal display (LCD) manufacturing process using thermal and catalytic oxidation, although SF6 recovery technology was much more effective in terms of capital and annual costs. Overall, large amounts of F-gases could be alleviated using thermal or catalytic oxidation. However, the economical reduction of F-gas emissions would be possible using recovery technology. (c) 2017 Society of Chemical Industry and John Wiley & Sons, Ltd.
机译:清洁发展机制(CDM)项目中的典型非二氧化碳温室气体包括甲烷(CH 4),氧化二氮(N 2 O)和氟化气体(F气)。在半导体和电子制造行业中,使用F气(如氢氟烃(HFC),全氟化碳(HFC),全氟化碳(PFC)和硫醛(SF6)增加。 F气的全球变暖潜力非常高,范围从140到23 900。因此,对F气排放的减少有相当大的兴趣。本文使用“联合国气候变化框架公约”(UNFCCC)注册的CDM项目的项目设计文件来研究F-GARES的排放来源,方法和减少技术。与其他非二氧化碳气体相比,CDM项目显着降低了年度F气排放。 CDM项目使用热氧化技术达到HFC的减少,主要涉及氯二氟甲烷(HCFC-22)的生产过程;相反,PFC减少靶向铝制冶炼过程,以减少阳极效应。尽管SF6回收技术在资本和年度成本方面更有效,但CDM项目的SF6突出的SF6减少的程度在液晶显示器(LCD)制造过程中相对较高。总的来说,使用热或催化氧化可以缓解大量的F气。然而,使用恢复技术可以实现F气排放的经济减少。 (c)2017化学工业协会和约翰瓦利& SONS,LTD.

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