Distribution characteristics of particulate matter pollution in Shanghai Huangpu River Ferry

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  • (Logistics Research Center, Shanghai Maritime University, Shanghai 201306, China)

Received date: 2018-11-28

  Revised date: 2019-01-24

  Online published: 2019-01-04

Abstract

In order to understand the particulate matter pollution of the ferry air and improve the environment of passengers and staff, the particulate matter pollution of the “East Golden Line” of the Huangpu River Ferry in Shanghai was measured by the Fluke 985 particle counter of the United States. The temporal and spatial distribution characteristics, influencing factors and the severity of ferry pollution of particulate matter with particle sizes of 0.30~0.49 μm, 0.50~0.99 μm, 1.00~1.99 μm, 2.00~4.99 μm, 5.00~9.99 μm and more than 10.00 μm were analyzed, and the average concentration of particulate matter in the whole ferry was predicted. Results show that the concentration of particulate matter in the second deck terrace of ferry is often high, the influence of human flow rate on coarse particle size is more obvious. The main pollutants in the first and second inner cabins are particles with larger size (5.00~9.99 μm, ≥10.00 μm), and the main pollutants in the twotier terrace are particles with finer size (0.30~0.49 μm,0.50~0.99 μm,1.00~1.99 μm,2.00~4.99 μm).

Cite this article

MAO Hui-lun HE Hong-di . Distribution characteristics of particulate matter pollution in Shanghai Huangpu River Ferry[J]. Journal of Dalian Maritime University, 2019 , 45(2) : 113 -122 . DOI: 10.16411/j.cnki.issn1006-7736.2019.02.016

References

[1]霍文毅,黄风茹,陈静生等.河流颗粒物重金属污染评价方法比较研究[J].地理科学,1997(01):82-87.
[2]夏春晶,张倩,陈建云等.冬季地铁隧道空气中颗粒物体积质量分布及相关性分析[J].城市轨道交通研究,2017,20(07):35-39.
[3]文强,禹胜林,谭涛等. 火车站内PM10及PM2.5污染调查研究[A].第35届中国气象学会年会S17气候环境变化与人体健康[C].2018:7.
[4]李锦,孙梦婷,刘国红等.深圳市不同类型公共场所室内PM_(10)与PM_(2.5)污染情况及相关性[J].职业与健康,2018,34(16):2259-2261+2265.
[5]倪骏,张莉萍,陈健等.上海轨道交通列车车厢内空气质量影响因素的探讨[J].环境与职业医学,2012,29(04):240-242.
[6]Qiao Ting, Xiu Guangli, Zheng Yijun et al. Preliminary investigation of PM 1 , PM 2.5 , PM 10 and its metal elemental composition in tunnels at a subway station in Shanghai, China[J]. Transportation Research Part D,2015,41.[7]Kim M, Park S, Namgung H-G et al. Estimation of inhaled airborne particle number concentration by subway users in Seoul, Korea[J]. Environmental Pollution 231 (2017) 663-670.
[8]吴颖娣,梁珍,沈恒根等.上海某地铁站台空气颗粒物粒径分布[J/OL]东华大学学报(自然科学版):1-10[2018-10-25].
[10]王崑阳,张晶,欧阳.北京市地铁车站内可吸入颗粒物浓度分布特征[J].环境保护与循环经济,2018,38(06):51-53.
[11]何生全,金龙哲,吴祥等.北京典型地铁系统可吸入颗粒物实测研究[J].安全与环境工程,2017,24(01):40-44+50.
[12]Yan Caiqing, Zheng Mei, Yang Qiaoyun et al. Commuter exposure to particulate matter and particle-bound PAHs in three transportation modes in Beijing, China[J]. Environmental Pollution,2015,204.
[13]Erik Velasco, Sok Huang Tan. Particles exposure while sitting at bus stops of hot and humid Singapore[J].Atmospheric Environment 142(2016) 251-263.
[14]Lim S, Dirks D K, Salmond J A, et al. Determinants of spikes in ultrafine particle concentration whilst commuting by bus[J]. Atmospheric Environment 112(2015)1-8.
[15] Song W.W., Ashmore* M.R., Terry A.C.. The influence of passenger activities on exposure to particles inside buses[J]. Atmospheric Environment 43(2009)6271-6278.
[16] Asmi E, Antola M, Tarja Yli-Tuomi et al. Driver and passenger exposure to aerosol particles in buses and trams in Helsinki, Finland[J]. Science of the Total Environment ,407(2009)2860–2867.
[17]汤鸣.利用气象条件预测西安市可吸入颗粒物浓度[J].沈阳理工大学学报,2011,30(02):56-60.
[18]何红弟,赵积强,程丽军等.上海市夏季高架道路边颗粒物垂直分布研究[J].安全与环境学报,2018,18(03):1177-1184.
[20]付敏,蔡磊,陈裕等.大气颗粒物浓度变化特征及其与气象因子的关系研究[J].安徽农学通报,2018,24(18):119-121.
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