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Sectoral co-control of air pollutants: case of a chlor-alkali/polyvinyl chloride sector in China

机译:空气污染物的部门共同控制:以中国氯碱/聚氯乙烯部门为例

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Taking coordinated control measures is widely considered as a way to reduce multiple emissions simultaneously. In China, the chlor-alkali/polyvinyl chloride sector is facing great pressure to mitigate air emissions including greenhouse gases. This work presents a set of assessment methods to assess the co-control effects of optional reduction measures on SO2, NOx, and CO2 emissions systematically. These methods include co-control effect coordination system, pollutant reduction cross-elasticity, and unit pollutant abatement cost. A marginal abatement cost curve of single pollutant is constructed to determine technological alternatives that can reduce emission. Results of co-control effect coordination system and pollutant reduction cross-elasticity show that most renewable energy sources, process retrofitting, chemical recovery, as well as energy system optimization measures have good co-control effect. Unit pollutant abatement cost analysis further showed that process retrofitting, chemical recovery, as well as energy-saving measures are superior to renewable energy sources and end-of-pipe measures. Reduction potential analysis of measures is presented using marginal abatement cost curves. The cumulative emission reductions of SO2, NOx, and CO2 are 87,926.0 tons/yr. 49,998.4 tons/yr. and 11.9 x 10(6) tons/yr. respectively. (C) 2015 Elsevier Ltd. All rights reserved.
机译:采取协调控制措施被广泛认为是同时减少多种排放物的一种方法。在中国,氯碱/聚氯乙烯行业面临着减轻包括温室气体在内的空气排放的巨大压力。这项工作提出了一套评估方法,以系统地评估可选减排措施对SO2,NOx和CO2排放的共同控制效果。这些方法包括协同控制效果协调系统,污染物减少交叉弹性和单位污染物减排成本。构建了单一污染物的边际减排成本曲线,以确定可以减少排放的技术替代方案。协同控制效果协调系统和污染物减少交叉弹性的结果表明,大多数可再生能源,工艺改造,化学回收以及能源系统优化措施均具有良好的协同控制效果。单位污染物减排成本分析进一步表明,过程改造,化学回收以及节能措施优于可再生能源和管道末端措施。使用边际减排成本曲线显示了措施的减排潜力分析。 SO2,NOx和CO2的累计减排量为87,926.0吨/年。 49,998.4吨/年和11.9 x 10(6)吨/年。分别。 (C)2015 Elsevier Ltd.保留所有权利。

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