贵州红枫湖地区冷暖两季土壤/大气界面间汞交换通量的对比
Comparison of Air/Soil Mercury Exchange Between Warm and Cold Season in Hongfeng Reservoir Region
查看参考文献22篇
文摘
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采用动力学通量箱(Dynamic Flux Chamber,DFC)与高时间分辨率自动大气测汞仪联用技术,于2002年7月和2003年3月对红枫湖地区土壤/大气界面上汞交换通量进行了测定.夏冬2季土壤-大气汞的交换通量分别为(27.4±40.1)ng·(m~2·h)~(-1)(n=255)和(5.6±19.4)ng·(m~2·h)~(-1)(n=192).夏季汞交换通量和光照、气温及土壤温度的相关系数分别为0.74、0.83和0.80,而冬季分别为0.88、0.56和0.59.对比研究表明:暖季土壤向大气的释汞通量远高于冷季;2个季节光照、温度等气象因素对土壤/大气界面间汞交换均有重要的影响. |
其他语种文摘
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In July 2002 and March 2003, the mercury exchange flux between soil and air was measured using dynamic flux chamber method in Hongfeng Reservoir region. Mercury exchange flux is (27.4 ±40.1) ng·(m~2·h)~(-1)(n = 255) and (5.6 ± 19.4) ng·(m~2·h)~(-1)( n = 192) in summer and winter respectively. The correlation coefficient between mercury flux and solar radiation, air temperature, soil temperature is 0.74, 0.83 and 0.80 in summer, and0.88, 0.56 and 0.59 in winter. From the data, it was found that the mercury emission is stronger in summer than that in winter, and compared to winter, mercury exchange between soil and air depends more on meteorological conditions in summer. |
来源
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环境科学
,2004,25(1):123-127 【核心库】
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关键词
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红枫湖
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汞交换通量
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土壤/大气界面
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季节变化
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地址
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中国科学院地球化学研究所, 贵阳, 550002
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语种
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中文 |
文献类型
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研究性论文 |
ISSN
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0250-3301 |
学科
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环境科学基础理论 |
基金
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国家自然科学基金项目
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文献收藏号
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CSCD:1512098
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参考文献 共
22
共2页
|
1.
Ebinghaus R. Antarctic spring time depletion of atmospheric mercury[J ].
Eviron Sci.Tech.nol.,2002,36:1238-1244
|
CSCD被引
16
次
|
|
|
|
2.
Rasmussen P E. Current methods of estimating atmospheric mercury fluxes in remote areas [ J ].
Environ.Sci.Technol,1994,28:2233-2241
|
CSCD被引
7
次
|
|
|
|
3.
Lindberg S E. Air/surface exchange of mercury vapor over forests--the need for a reassessment of continental biogenic emissions [ J ].
Atmospheric Environment,1998,32:895-908
|
CSCD被引
20
次
|
|
|
|
4.
Lindqvist O. Mercury in the Swedish environment[J].
Water.Air and Soil Pollution,1991,55:1-261
|
CSCD被引
124
次
|
|
|
|
5.
Mason R P. anthropogenic influences[J].
Geochimica et Cosmochimica Acta,1994,58:3191-3198
|
CSCD被引
62
次
|
|
|
|
6.
Schroeder W H. Atmospheric mercury--an overview[J].
Atmospheric Environment,1998,32:809-822
|
CSCD被引
148
次
|
|
|
|
7.
Gustin M. Assessing the contribution of natural sources to region al atmospheric mercury budgets [ J ].
The Science of the Total Environment,2000,259:61-71
|
CSCD被引
4
次
|
|
|
|
8.
Lindberg S E. tests over contaminated soils [ J ].
Environ.Sci.Technol,1995,29:126-135
|
CSCD被引
12
次
|
|
|
|
9.
Kim K H. Micrometeorological measurements of mercury vapor fluxes over background forest soils in eastern Tennessee[J].
Atmospheric Environment,1995,29:267-282
|
CSCD被引
24
次
|
|
|
|
10.
Carpi A. tests and results over background soil[J].
Atmospheric Environment,1998,32:873-882
|
CSCD被引
22
次
|
|
|
|
11.
Engle M A. Quantifying natural source mercury emission from the Ivanhoe Mining District.
Atmospheric environment,35:3987-3997
|
CSCD被引
1
次
|
|
|
|
12.
Coolbaugh M F. Annual emissions of mercury to the atmosphere from natural sources in Nevada and California[J].
Environmental Geology,2002,42:338-349
|
CSCD被引
12
次
|
|
|
|
13.
冯新斌. 土壤挥发性汞释放通量的研究.
环境科学,1996,17(2):20-25
|
CSCD被引
32
次
|
|
|
|
14.
Feng X. Total gaseous mercury in the atmosphere of Guiyang.
Atmospheric Environment,2003,304:61-72
|
CSCD被引
1
次
|
|
|
|
15.
商立海. 贵阳市大气气态汞的分布特征的初步研究[J].
矿物岩石地球化学通报,2003,2:156-158
|
CSCD被引
1
次
|
|
|
|
16.
Xiao Z F. Vertical fluxes of volatile mercury over soil and lake surface in Sweden[J].
Tellus,1991,43B:267-279
|
CSCD被引
7
次
|
|
|
|
17.
Zhang H. Dynamic flux chamber measurement of gaseous mercury emission fluxes over soils.
Atmospheric Environment,2002,36:835-846
|
CSCD被引
12
次
|
|
|
|
18.
Lindberg S E. Part 2--effect of flushing flow rate and verification of a two-resistance exchange interface simu lation model [ J ].
Atmospheric Environment,2002,36:847-859
|
CSCD被引
8
次
|
|
|
|
19.
冯新斌. 夏季自然水体与大气界面间气态总汞的交换通量.
中国科学:D辑,2002,32(7):609-616
|
CSCD被引
11
次
|
|
|
|
20.
Schluter K. evaporation of mercury from soils.
Environmental Geology,2000,39:3-4
|
CSCD被引
2
次
|
|
|
|
|