Formation of atmospheric particulate mercury in the Tokyo metropolitan area

被引:96
|
作者
Sakata, M [1 ]
Marumoto, K [1 ]
机构
[1] Cent Res Inst Elect Power Ind, Komae Res Lab, Tokyo 2018511, Japan
关键词
airborne particles; heavy metals; municipal solid waste incineration; physical adsorption; thermodynamic analysis;
D O I
10.1016/S1352-2310(01)00432-0
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
DThe sources and formation of atmospheric particulate mercury, Hg(p), in the Tokyo metropolitan area were investigated. Nine municipal solid waste (MSW) incinerators are located within 10km of the study site. Airborne particles >10 mum in diameter were collected on a quartz fiber filter, and Hg(p) was measured by AAS following thermal desorption and gold trap amalgamation. Total gaseous mercury (TGM) was also determined using a continuous analyzer employing gold trap amalgamation and AAS. An average Hg(p) level of 0.098 +/- 0.051 ng m(-3) (3.5 +/- 1.4% for total Hg=Hg(p)+TGM) was observed during the period from April 2000 -March 2001, and Hg(p) levels tended to decrease during the summer. We investigated the relationship between concentrations of Hg(p) and Pb, a marker element for particles from MSW incineration. The propriety of using Pb as the marker element was verified based on the lead isotope ratios and the relationship between Pb, Cd and Zn concentrations. The results showed that Hg(p) concentration was correlated positively with Pb concentration and negatively with air temperature. On the other hand, the results of chemical leaching treatment for airborne particles indicated that most of the Hg in the particles might exist in the elemental form, Hg-0. This suggests that some of the Hg-0 emitted from MSW incinerators was adsorbed onto MSW incinerator particles in the atmosphere due to an abrupt decrease in temperature after emission, depending on air temperature. Thus, it is likely that the Hg(p) level in the Tokyo metropolitan area is closely related to the gaseous Hg-0 emissions from MSW incinerators. In addition, from the thermodynamic analysis, it is inferred that the formation of Hg(p) is governed by the physical adsorption equilibrium of Hg-0 between gas and particle phases. (C) 2002 Elsevier Science Ltd. All rights reserved.
引用
收藏
页码:239 / 246
页数:8
相关论文
共 50 条
  • [21] Explaining the recent migration trends of the Tokyo metropolitan area
    Ishikawa, Y
    Fielding, AJ
    [J]. ENVIRONMENT AND PLANNING A, 1998, 30 (10) : 1797 - 1814
  • [22] Job satisfaction of Japanese midwives in the Tokyo metropolitan area
    Koga, Yuko
    Iwata, Noboru
    [J]. EUROPEAN JOURNAL OF MIDWIFERY, 2023, 7
  • [23] Atmospheric mercury in Changbai Mountain area, northeastern China II. The distribution of reactive gaseous mercury and particulate mercury and mercury deposition fluxes
    Wan, Qi
    Feng, Xinbin
    Lu, Julia
    Zheng, Wei
    Song, Xinjie
    Li, Ping
    Han, Shijie
    Xu, Hao
    [J]. ENVIRONMENTAL RESEARCH, 2009, 109 (06) : 721 - 727
  • [24] In situ measurements of speciated atmospheric mercury and the identification of source regions in the Mexico City Metropolitan Area
    Rutter, A. P.
    Snyder, D. C.
    Stone, E. A.
    Schauer, J. J.
    Gonzalez-Abraham, R.
    Molina, L. T.
    Marquez, C.
    Cardenas, B.
    de Foy, B.
    [J]. ATMOSPHERIC CHEMISTRY AND PHYSICS, 2009, 9 (01) : 207 - 220
  • [25] Atmospheric pollution in the belgrade metropolitan area
    Zujic, A. M.
    Golobocanin, D. D.
    Miljevic, N. R.
    [J]. Proceeding of the 9th International Conference on Environmental Science and Technology Vol B - Poster Presentations, 2005, : B1040 - B1045
  • [26] OBSERVATIONS OF ATMOSPHERIC DOWNWARD RADIATION IN THE TOKYO AREA
    AIDA, M
    YAJI, M
    [J]. BOUNDARY-LAYER METEOROLOGY, 1979, 16 (04) : 453 - 465
  • [27] Analysis of Factors Affecting Centripetal Commuter Flow in Metropolitan Areas: A Case Study of the Osaka Metropolitan Area and the Tokyo Metropolitan Area
    Huang, Yongxiong
    Ye, Xiafei
    Fan, Xueyan
    Wang, Zhenbo
    [J]. CICTP 2020: ADVANCED TRANSPORTATION TECHNOLOGIES AND DEVELOPMENT-ENHANCING CONNECTIONS, 2020, : 2839 - 2850
  • [28] Atmospheric particulate mercury in Changchun City, China
    Fang, FM
    Wang, QC
    Liu, RH
    Ma, ZW
    Hao, QJ
    [J]. ATMOSPHERIC ENVIRONMENT, 2001, 35 (25) : 4265 - 4272
  • [29] Atmospheric particulate mercury: Concentrations and size distributions
    Kim, Pyung-Rae
    Han, Young-Ji
    Holsen, Thomas M.
    Yi, Seung-Muk
    [J]. ATMOSPHERIC ENVIRONMENT, 2012, 61 : 94 - 102
  • [30] Measurements of gamma dose rates in dwellings in the Tokyo Metropolitan area
    Saito, K
    Sakamoto, R
    Nagaoka, T
    Tsutsumi, M
    Moriuchi, S
    [J]. RADIATION PROTECTION DOSIMETRY, 1997, 69 (01) : 61 - 67