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Effects of space heating on the pollutant emission intensities in '2+26' cities

机译:空间加热对“2 + 26”城市污染物排放强度的影响

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摘要

The PM2.5 concentration of the air pollution transmission channel cities (APTCC) of the Beijing-Tianjin-Hebei area ("2 + 26" cities) is significantly higher in the heating season than in the non-heating season. Space heating in northern China involves substantial fossil fuel combustion that produces haze-generating pollutants. In order to improve the atmospheric environment, it is necessary to quantitatively analyze the pollutants generated by such heating. In this study, the emission factors of several common heat sources, such as combined heat and power (CHP), boilers, rural biomass stoves, and scattered coal-heating are analyzed and classified into direct emissions and indirect emissions. Direct emissions refer to all emissions generated locally by the heat source due to fuel combustion, whereas indirect emissions are those generated elsewhere by the heat source due to electricity consumption. The "2 + 26" cities are then divided into six small urban agglomerations by cluster analysis, and the heat supply of various heat sources are investigated. Finally, the pollutant emission intensity due to heating is calculated per unit land area for each small urban agglomeration in 2016. This study shows that the emission intensity of pollutants generated by urban heating in Beijing and Tianjin is higher than that in other agglomerations, whereas the pollution generated by rural heating is higher than that generated by urban heating in many urban agglomerations. Finally, this study proposes suggestions for clean heating in northern China in order to reduce pollutant emissions.
机译:京津 - 河北地区的空气污染传输信道(APTCC)的PM2.5集中(APTCC)在加热季节明显高于非加热季节。中国北方的空间加热涉及大量化石燃料燃烧,产生恶霾产生污染物。为了改善大气环境,有必要定量分析这种加热产生的污染物。在这项研究中,分析了几种常见热源的排放因子,例如组合的热量和功率(CHP),锅炉,农村生物质炉具和散射的煤加热,并分为直接排放和间接排放。直接排放是指由燃料燃烧引起的热源在本地产生的所有排放量,而间接排放是由于电力消耗而在热源其他地方产生的排放。然后通过聚类分析将“2 + 26”城市分为六个小城市凝聚,并研究了各种热源的热源。最后,每单位土地面积为2016年每单位土地面积计算污染物排放强度。本研究表明,北京和天津城市供暖产生的污染物的排放强度高于其他聚集,而由农村供暖产生的污染高于许多城市集群中城市供热产生的污染。最后,本研究提出了在中国北方清洁加热的建议,以减少污染物排放。

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