专题论文

空气细颗粒物污染的来源、危害及控制对策

  • 赵顺征 ,
  • 易红宏 ,
  • 唐晓龙 ,
  • 高凤雨 ,
  • 左嫣然
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  • 北京科技大学土木与环境工程学院, 北京 100083
赵顺征, 博士研究生, 研究方向为大气污染控制技术, 电子信箱: zhaoshunzheng86@126.com

收稿日期: 2014-07-17

  修回日期: 2014-10-27

  网络出版日期: 2014-12-05

Source and Harm of Air Fine Particulate Matter Pollution and Control Strategies

  • ZHAO Shunzheng ,
  • YI Honghong ,
  • TANG Xiaolong ,
  • GAO Fengyu ,
  • ZUO Yanran
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  • College of Civil and Environmental Engineering, University of Science and Technology Beijing, Beijing 100083, China

Received date: 2014-07-17

  Revised date: 2014-10-27

  Online published: 2014-12-05

摘要

近年来由空气细颗粒物(PM2.5)引起的大气污染现象频发,成为全社会广泛关注的环境问题.结合国内外研究,综述了PM2.5污染的来源、危害及控制对策的相关研究进展.研究表明,人类活动排入大气中的一次颗粒物、一次颗粒物与大气中的气态污染物相互作用形成的二次颗粒物是PM2.5的主要来源.长期暴露在PM2.5环境中,会对人体的呼吸系统、心脑血管系统、神经系统及免疫系统的健康造成伤害.PM2.5还会导致大气能见度下降,影响正常的生产、生活.针对中国PM2.5的污染现状,提出了PM2.5污染的控制对策及建议.

本文引用格式

赵顺征 , 易红宏 , 唐晓龙 , 高凤雨 , 左嫣然 . 空气细颗粒物污染的来源、危害及控制对策[J]. 科技导报, 2014 , 32(33) : 61 -66 . DOI: 10.3981/j.issn.1000-7857.2014.33.008

Abstract

In recent years, atmospheric pollution caused by air fine particulate matter (PM2.5) happens frequently in most areas of China, which has seriously affected the human body health and industrial production and thus received extensive concern form the whole society. This paper reviews the research progress on the source and harm of air fine particulate matter pollution and control strategies. The primary particulate matter and secondary particulate matters, largely produced by human activity, are the main sources of PM2.5. When people are constantly exposed to air polluted by PM2.5, the human respiratory system, cardiovascular system, nervous system and immune system are jeopardized badly. In addition, PM2.5 could cause a decline in the atmospheric visibility, which will affect the normal production and life. According to the current status of PM2.5 pollution, comprehensive suggestions for China's PM2.5 pollution control are put forward.

参考文献

[1] Cheng Z, Wang S X, Jiang J K, et al. Long-term trend of haze pollutionand impact of particulate matter in the Yangtze River Delta, China[J].Environmental Pollution, 2013, 182: 101-110.
[2] Yin H, Mu S Y, Zhao L, et al. Microscopic morphology and elementalcomposition of size distributed atmospheric particulate matter in Urumqi,China[J]. Environmental Earth Sciences, 2013, 69: 2139-2150.
[3] Tian Y Z, Wu J H, Shi G L, et al. Long-term variation of the levels,compositions and sources of size- resolved particulate matter in amegacity in China[J]. Science of the Total Environment, 2013, 463: 462-468.
[4] Sun Y L, Wang Z F, Fu P Q, et al. Aerosol composition, sources andprocesses during wintertime in Beijing, China[J]. Atmospheric Chemistryand Physics, 2013, 13: 4577-4592.
[5] Sun Y L, Wang Z F, Dong H B, et al. Characterization of summer organicand inorganic aerosols in Beijing, China with an Aerosol ChemicalSpeciation Monitor[J]. Atmospheric Environment, 2012, 51: 250-259.
[6] 王跃思,姚利,刘子锐,等. 京津冀大气霾污染及控制策略思考[J]. 中国科学院院刊, 2013, 28: 353-363.Wang Yuesi, Yao Li, Liu Zirui, et al. Formation of haze pollution inBeijing-Tianjin-Hebei region and their control strategies[J]. Bulletin ofthe Chinese Academy of Sciences, 2013, 28: 353-363.
[7] Meng Z, Dabdub D, Seinfeld J H. Chemical coupling between atmosphericozone and particulate matter[J]. Science, 1997, 277: 116-119.
[8] Abdullahi K L, Delgado- Saborit J M, Harrison R M. Emissions andindoor concentrations of particulate matter and its specific chemicalcomponents from cooking: A review[J]. Atmospheric Environment, 2013,71: 260-294.
[9] Just B, Rogak S, Kandlikar M. Characterization of ultrafine particulatematter from traditional and improved biomass cookstoves[J].Environmental Science & Technology, 2013, 47: 3506-3512.
[10] Shen G F, Wei S Y, Wei W, et al. Emission factors, size distributions,and emission inventories of carbonaceous particulate matter fromresidential wood combustion in rural China[J]. Environmental Science &Technology, 2012, 46: 4207-4214.
[11] Pant P, Harrison R M. Estimation of the contribution of road trafficemissions to particulate matter concentrations from field measurements:A review[J]. Atmospheric Environment, 2013, 77: 78-97.
[12] Oh C, Cha G. Influence of oxygenate content on particulate matteremission in gasoline direct injection engine[J]. International Journal ofAutomotive Technology, 2013, 14: 829-836.
[13] Campos V P, Couto E R, Miranda J P, et al. Chemical speciation andphase fractionation of N, S and Cl compounds in the atmosphere ofReconcavo, Bahia, Brazil[J]. Microchemical Journal, 2013, 109: 58-67.
[14] Pekey H, Pekey B, Arslanbas D, et al. Source apportionment of personalexposure to fine particulate matter and volatile organic compounds usingpositive matrix factorization[J]. Water Air and Soil Pollution, 2013, 224(1): 1403.1-1403.11.
[15] 莫华, 朱法华, 王圣. 火电行业大气污染物排放对PM2.5的贡献及减排对策[J]. 中国电力, 2013, 46: 1-6.Mo Hua,Zhu Fahua,Wang Sheng. Contribution to PM2.5 of atmosphericpollutant emission from thermal power sector and emission reductioncountermeasures[J]. Electric Power, 2013, 46: 1-6.
[16] AtkinsonR,AreyJ.Atmosphericdegradationofvolatileorganic compounds[J]. Chemical Reviews, 2003, 103: 4605-4638.
[17] Atkinson R, Arey J. Gas-phase tropospheric chemistry of biogenic volatileorganic compounds: A review[J]. Atmospheric Environment, 2003, 37:S197-S219.
[18] Laskin A, Gaspar D J, Wang W H, et al. Reactions at interfaces as asource of sulfate formation in sea-salt particles[J]. Science, 2003, 301:340-344.
[19] Sengelov L W, Hansen T B, Bartolome C, et al. Sulfation of condensedpotassium chloride by SO2[J]. Energy & Fuels, 2013, 27: 3283-3289.
[20] Liu Y C, Ma J Z, Liu C, et al. Heterogeneous uptake of carbonyl sulfideonto kaolinite within a temperature range of 220-330 K[J]. Journal ofGeophysical Research-Atmospheres, 2010, 115: D24311.
[21] Liu Y, Ma J, He H. Heterogeneous reactions of carbonyl sulfide onmineral oxides: Mechanism and kinetics study[J]. AtmosphericChemistry and Physics, 2010(10): 10335-10344.
[22] Liu Y, Ma Q, He H. Comparative study of the effect of water on theheterogeneous reactions of carbonyl sulfide on the surface of alpha-Al2O3 and MgO[J]. Atmospheric Chemistry and Physics, 2009(9): 6273-6286.
[23] 殷永文, 程金平, 段玉森, 等. 上海市霾期间PM2.5、PM10污染与呼吸科、儿呼吸科门诊人数的相关分析[J]. 环境科学, 2011, 32: 1894-1898.Yin Yongwen, Cheng Jinping, Duan Yusen, et al. Correlation analysisbetween the PM2.5, PM10 which were taken in the hazy day and thenumber of outpatient about breathing sections, breathing sections ofpediatrics in Shanghai[J]. Environmental Science, 2011, 32: 1894-1898.
[24] 杨维, 赵文吉, 宫兆宁, 等. 北京城区可吸入颗粒物分布与呼吸系统疾病相关分析[J]. 环境科学, 2013, 34: 237-243.Yang Wei, Zhao Wenji, Gong Zhaoning, et al. Spatial distribution ofinhalable particulate and association with respiratory disease in Beijingcity[J]. Environmental Science, 2013, 34: 237-243.
[25] Saravia J, Lee G I, Lomnicki S, et al. Particulate matter containingenvironmentally persistent free radicals and adverse infant respiratoryhealth effects: A review[J]. Journal of Biochemical and MolecularToxicology, 2013, 27: 56-68.
[26] Kroll A, Gietl J K, Wiesmuller G A, et al. In vitro toxicology of ambientparticulate matter: Correlation of cellular effects with particle size andcomponents[J]. Environmental Toxicology, 2013, 28: 76-86.
[27] MarchiniT,MagnaniN,D'AnnunzioV,etal.Impairedcardiacmitochondrialfunction and contractile reserve following an acute exposure toenvironmental particulate matter[J]. Biochimica Et Biophysica Acta-General Subjects, 2013, 1830: 2545-2552.
[28] Tankersley C G, Georgakopoulos D, Tang W Y, et al. Effects of ozoneand particulate matter on cardiac mechanics: Role of the atrialnatriuretic peptide gene[J]. Toxicological Sciences, 2013, 131: 95-107.
[29] Guerra R, Vera-Aguilar E, Uribe-Ramirez M, et al. Exposure to inhaledparticulate matter activates early markers of oxidative stress,inflammation and unfolded protein response in rat striatum[J].Toxicology Letters, 2013, 222: 146-154.
[30] Koton S, Molshatzki N, Yuval, et al. Cumulative exposure to particulatematter air pollution and long-term post-myocardial infarction outcomes[J]. Preventive Medicine, 2013, 57: 339-344.
[31] Leiva M A, Santibanez D A, Ibarra S, et al. A five- year study ofparticulate matter (PM2.5) and cerebrovascular diseases[J].Environmental Pollution, 2013, 181: 1-6.
[32] Bell M L, Zanobetti A, Dominici F. Evidence on vulnerability andsusceptibility to health risks associated with short- term exposure toparticulate matter: A systematic review and meta-analysis[J]. AmericanJournal of Epidemiology, 2013, 178: 865-876.
[33] MartinelliN,OlivieriO,GirelliD.Airparticulatematterand cardiovasculardisease: A narrative review[J]. European Journal of Internal Medicine,2013(24): 295-302.
[34] Vajanapoom N, Shy C M, Neas L M, et al. Estimation of particulatematter from visibility in Bangkok, Thailand[J]. Journal of ExposureAnalysis and Environmental Epidemiology, 2001(11): 97-102.
[35] Cheung H C, Wang T, Baumann K, et al. Influence of regional pollutionoutflow on the concentrations of fine particulate matter and visibility inthe coastal area of southern China[J]. Atmospheric Environment, 2005,39: 6463-6474.
[36] Kim Y J, Kim K W, Kim S D, et al. Fine particulate mattercharacteristics and its impact on visibility impairment at two urban sitesin Korea: Seoul and Incheon[J]. Atmospheric Environment, 2006, 40:S593-S605.
[37] 杨复沫,欧阳文娟, 刘源, 等. 大气颗粒物对能见度影响的研究进展[J]. 工程研究, 2013(5): 252-258.Yang Fumo,Ouyang Wenjuan, Liu Yuan, et al. Recent progress inresearch on impact of atmospheric particulate matters on visibility[J].Journal of Engineering Studies, 2013(5): 252-258.
[38] Zhao H J, Che H Z, Zhang X Y, et al. Characteristics of visibility andparticulate matter (PM) in an urban area of Northeast China[J].Atmospheric Pollution Research, 2013(4): 427-434.
[39] 杨新兴, 尉鹏, 冯丽华. 大气颗粒物PM2.5及其控制对策与措施[J]. 前沿科学, 2013(2): 20-29.Yang Xinxing, Wei Peng, Feng Lihua. Atmospheric particulate matterPM2.5 and its controlling countermeasures and measures[J]. FrontierScience, 2013(2): 20-29.
[40] 李培, 王新, 柴发合, 等. 我国城市大气污染控制综合管理对策[J]. 环境与可持续发展, 2011(5): 8-14.Li Pei, Wang Xin, Cai Fahe, et al. Recommandation and suggestion onpolicy and measures for air pollution control integrated management inChina[J]. Environment and Sustainable Development, 2011(5): 8-14.
[41] 方秀玉. 优化能源结构改善空气质量——从大气污染治理角度看北京市能源结构调整[J]. 节能与环保, 2013(6): 52-54.Fang Xiuyu. Optimize the energy structure to improve air quality[J].Energy Conservation and Environmental Protection, 2013(6): 52-54.
[42] 王淑兰, 柴发合, 高健. 我国中长期PM2.5污染控制战略及对策[J]. 环境与可持续发展, 2013(4): 10-13.Wang Shulan, Chai Fahe, Gao Jian, et al. Study on long-term strategiesand countermeasures of PM2.5 pollution control in China[J]. Environmentand Sustainable Development, 2013(4): 10-13.
[43] 朱增银, 李冰, 赵秋月, 等. 对国内外PM2.5研究及控制对策的回顾与展望[J]. 环境科技, 2013, 26(1): 70-74.Zhu Zengyin, Li Bing, Zhao Qiuyue, et al. A review and outlook of theresearch and pollution control on PM2.5 in domestic and overseas[J].Environmental Science and Technology, 2013, 26(1): 70-74.
[44] 贺泓, 王新明, 王跃思, 等. 大气灰霾追因与控制[J]. 中国科学院院刊,2013, 28: 344-352.He Hong, Wang Xinming, Wang Yuesi, et al. Formation mechanism andcontrol strategies of haze in China[J]. Bulletin of the Chinese Academyof Sciences, 2013, 28: 344-352.
[45] 杨晓东, 张玲, 姜德旺, 等. 钢铁工业废气及PM2.5排放特性与污染控制对策[J]. 工程研究, 2013(5): 240-251.Yang Xiaodong, Zhang Ling, Jiang Dewang, et al. Exhaust gas of iron &steel industry and emission characteristics of PM2.5 and pollution controlmeasures[J]. Journal of Engineering Studies, 2013(5): 240-251.
[46] 张楚莹, 王书肖, 赵瑜, 等. 中国人为源颗粒物排放现状与趋势分析[J]. 环境科学, 2009, 30: 1881-1887.Zhang Chuying, Wang Shuxiao, Zhao Yu, et al. Current status and futureprospects of anthropogenic particulate matter emissions in China[J].Environmental Science, 2009, 30: 1881-1887.
[47] 罗娜娜, 赵文吉, 晏星, 等. 交通与气象因子对不同粒径大气颗粒物的影响机制研究[J]. 环境科学, 2013, 34: 3741-3748.Luo Nana, Zhao Wenji, Yan Xing, et al. Study on influence of traffic andmeteorological factors on inhalable particle matters of different size[J].Environmental Science, 2013, 34: 3741-3748.
[48] 周毅. 人口与环境可持续发展[J]. 武汉科技大学学报: 社会科学版,2003(5): 1-6.Zhou Yi. The sustainable development of population and environment[J]. Journal of Wuhan University of Science & Technology: SocialScience Edition, 2003(5): 1-6.
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