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Investigation of water-energy-emission nexus of air pollution control of the coal-fired power industry: A case study of Beijing-Tianjin-Hebei region, China

机译:燃煤电力行业大气污染控制水能源排放关系的研究-以京津冀地区为例

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摘要

Coal-fired power generation is water- and energy-intensive and is associated with high emissions. As a result, China has issued a strict emission policy ("ultra-low emission control") for the coal-fired power industry. This study investigated the water, energy and emissions nexus (WEEN), focusing on end-of pipe treatment technologies for the coal-fired power industry in the Beijing-Tianjin-Hebei region. The result revealed that the energy consumption for pollutant removal was 1.2 million tons coal equivalent (Mtce) for the 118 investigated plants in 2014. Of the energy consumed, 60%, 11% and 29% was used for SO2, NOx, and dust removal, respectively. Water consumption for pollutant removal was 13% of total water consumption for electricity generation. The result implied that this policy could reduce SO2, NOx, and dust emissions by 89%, 90%, and 88%, respectively, while consuming an average of 2% less energy and 8% more water as tradeoffs. Construction cost associated with implementing these technology changes could be as high as 5-14 billion yuan in total. The synergies and tradeoffs quantified in this study provide numerical information that could assist with making decisions on the most suitable technology sets for emission control with consideration of water, energy, emissions and cost.
机译:燃煤发电消耗大量的水和能源,并伴有高排放。结果,中国对燃煤电力行业发布了严格的排放政策(“超低排放控制”)。本研究调查了水,能源和排放之间的联系(WEEN),重点研究了京津冀地区燃煤电力行业的管道末端处理技术。结果表明,2014年被调查的118家工厂的污染物去除能耗为120万吨煤当量(Mtce)。在能耗中,分别有60%,11%和29%用于SO2,NOx和粉尘的去除。 , 分别。去除污染物的用水量占发电总用水量的13%。结果表明,这项政策可以使二氧化硫,氮氧化物和粉尘的排放量分别减少89%,90%和88%,同时折衷可以平均减少2%的能源消耗和8%的水消耗。实施这些技术变更所需的建设成本总计可能高达5-14亿元。这项研究中量化的协同作用和折衷提供了数值信息,可以帮助您在考虑水,能源,排放和成本的基础上,针对最适合排放控制的技术制定决策。

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