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Long-term spatiotemporal variations of atmospheric sulfur, nitrogen and particle pollutants in Chongqing, southwest China: implication of industrial transfer

机译:中国西南部重庆重庆大气硫,氮气和颗粒污染物的长期时空变化:工业转移的含义

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摘要

Industrial transfer has swept through in China. However, there is still a knowledge gap about its environmental effects. In this study, industrial transfer status was assessed and evaluated by industrial ratios (%; the gross product contributions of the secondary industry to the whole industry) and the impact of such transfer on atmospheric environment (SO2, NO2, PM10 (particles with aerodynamic diameter less than 10 m), precipitations of SO42-, NO3-, and NH4+) in the 38 districts and counties in Chongqing was analyzed and discussed for the period of 2006-2015. Results showed that industries were transferred obviously from the main urban region (MUR) into the 1-h economic region (OHER). Atmospheric sulfur and PM10 were efficiently put in control, but atmospheric nitrogen (NO2; precipitations of NO3- and NH4+) was increasing and posted a potential threat to air quality especially during 2011-2015. Correlations showed that industrial ratios had significantly positive relationships with concentrations of ambient SO2 and PM10 in the MUR and ambient NO2 in the OHER (p < 0.05) while a remarkably negative one with concentrations of ambient SO2 in the OHER (p < 0.05) during 2006-2015, implying that industrial transfer could be effective in transferring sulfur pollution but not as efficient in transferring atmospheric nitrogen and PM10 pollutions as SO2 between in the MUR and OHER. More measures should be taken to reduce nitrogen and PM10 emission and a regional monitoring network of ambient NH3 is in urgent need.
机译:工业转移在中国席卷。但是,关于其环境影响仍然存在知识差距。在这项研究中,通过工业比率评估和评估工业转移状态(百分比;中学行业的总产品捐款,以及这种转移对大气环境的影响(SO2,No2,PM10(具有空气动力学直径的颗粒)分析了在重庆38个地区和县的SO42-,No3-和NH4 +的沉淀,并讨论了2006 - 2015年的38个地区和县。结果表明,行业从主要都市区(MUR)明显地转移到1小时经济区(OHER)中。有效地控制大气硫和PM10,但大气氮气(NO2; NO 3和NH4 +的沉淀)正在增加,并在2011-2015期间发布对空气质量的潜在威胁。相关性表明,工业比率与随后的MUR和环境NO2中的环境SO2和PM10的浓度显着阳性关系(P <0.05),而在2006年期间,具有显着的阴性SO2的阴性SO2(P <0.05) -2015,暗示工业转移可能有效地转移硫污染,但在MUR和OHER之间的SO2之间转移大气氮和PM10污染时不有效。应采取更多措施来减少氮气和PM10排放,迫切需要环境监测网络的区域监测网络。

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