[1] |
Landis M, Keeler G J, Al-Wali K I, et al. Divalent inorganic reactive gaseous mercury emissions from a mercury cell chlor-alkali plant and its impact on near-field atmospheric dry deposition[J]. Atmospheric Environment, 2004, 38: 613-622
|
[2] |
Lindberg S E and Stratton W J. Atmosphere mercury speciation: concentrations and behavior of reactive gaseous mercury in ambient air[J]. Environmental Science and Technology, 1998, 32: 49-57
|
[3] |
Lindberg S E, Stratton W J, Pai P, et al, Measurements and modeling of a water soluble gas-phase mercury species in ambient air[J]. Fuel Processing Technology, 2000a, 65-66: 143-150
|
[4] |
Linqvist O, Johansson K, Aastrup M, et al. Mercury in the swedish environment[J]. Water Air Soil Pollution, 1991, 55: 1-261
|
[5] |
Schroeder W H, Munthe J, Lindqvist O. Cycling of mercury between water, air and soil compartments of the environment[J]. Water, Air and Soil Pollution, 1989, 48: 337-347
|
[6] |
Hall B. The gas phase oxidation of elemental mercury by ozone[J]. Water, Air and Soil Pollution, 1995, 80:1069-1077
|
[7] |
Lin C J, Pehkonen S O. The chemistry of atmospheric mercury: a review[J]. Atmospheric Environment, 1999, 33: 2067-2079
|
[8] |
Sommar J, Hallquist M, Ljungstrm E, et al. On the gas phase reactions between volatile biogenic mercury species and the nitrate radical[J]. Journal of Atmospheric Chemistry, 1997, 27(3): 233-247
|
[9] |
Sommar J, Grdfeldt K, Strmberg D, et al. A kinetic study of the gas-phase reaction between the hydroxyl radical and atomic mercury[J]. Atmospheric Environment, 2001,35(17): 3049-3054
|
[10] |
Tokos J J S, Hall B, Calhoun J A, et al. Homogeneous gas-phase reaction of Hg0 with HO2, O3, CH3I and (CH3)2S: implication for atmospheric Hg cycling[J]. Atmospheric Environment, 1998, 32(5): 823-827
|
[11] |
Lindqvist O, Rodhe H. Atmospheric mercury-a review[J]. Tellus, 1985, 37B: 136-159
|
[12] |
Slemr F, Schuster G, Seiler W. Distribution, speciation, and budget of atmospheric mercury[J]. Journal of Atmospheric Chemistry, 1985, 3: 407-434
|
[13] |
Stratton W J, Lindberg S E., Use of a refluxing mist chamber for measurement of gas phase mercury (Ⅱ) species in the atmosphere[J]. Water, Air and Soil Pollution, 1995,80: 1269-1278
|
[14] |
Stratton W J, Lindberg S E, Perry C J. Atmospheric mercury speciation: laboratory and field evaluation of a mist chamber method for measuring reactive gaseous mercury[J]. Environmental Science and Technology, 2001, 35: 170-177
|
[15] |
Peterson G, Iverfeldt , Munthe J. Atmospheric mercury species over central and northern Europe model calculations and comparison with observations from the Nordic air precipitation network for 1987 and 1988[J]. Atmospheric Environment, 1995, 29:47-67
|
[16] |
Sheu G R, Mason R P. An examination of methods for the measurements of reactive gaseous mercury in the atmosphere[J]. Environmental Science and Technology, 2001,35: 1209-1216
|
[17] |
Kim J, Fitzgerald W. Gaseous mercury profiles in the tropical Pacific Ocean[J]. Geophysics Research Letters, 1988, 15: 40-43
|
[18] |
Mason R P, Fitzgerald W F. The distribution and bioorganic cyclingof mercury in the equatorial Pacific Ocean[J]. Deep-Sea Research Ⅱ, 1993,40: 1897-1924
|
[19] |
Lindberg S E, Zhang H, Meyers T P. Final report: everglades. mercury air surface exchange study E-MASE. West Palm Beach, FL: South Florida Water Management District,1999
|
[20] |
Mason R, Fitzgerald W F, Morel M M. The biogeochemical cycling of elemental mercury:anthropogenic influences[J]. Geochimica Et Cosmochimica Acta, 1994, 58:3191-3198
|
[21] |
Schroeder W H, Munthe J. Atmospheric mercury-An overview[J]. Atmos Environ, 1998, 32:809-812
|
[22] |
Amyot M, Lean D R S, Poissant L, et al. Distribution and transformation of elemental mercury in the St.Lawrence river and lake Ontario[J]. Canadian Journal of Fisheries And Aquatic Sciences, 2000, 57(Suppl 1):155 -163
|
[23] |
Mason R P, Morel P, Hemond H F. The role of microorganisms in elemental mercury formation in natural waters[J]. Water, Air and Soil Pollution, 1995, 80: 775-789
|
[24] |
Allard B, Arsenie I. Abiotic reduction of mercury by humic substances in aqueous systems e an important process for the mercury cycle[J]. Water, Air and Soil Pollution, 1991, 56: 457-464
|
[25] |
Robinson J B and Touvinen O H. Mechanism of microbial resistance and detoxication of mercury and organo-mercury compounds-physiological, biochemical and genetic analyses[J]. Microbiological Review, 1984, 48: 95-124
|
[26] |
Amyot M, Gill G A, Morel F M M. Production and loss of dissolved gaseous mercury in coastal seawater[J]. Environmental Science and Technology, 1997a, 31: 3606-3611
|
[27] |
Costa M, Liss P. Photoreduction of mercury in sea water and its possible implication for Hg0 air-sea fluxes[J]. Marine Chemistry, 1999, 68: 87-95
|
[28] |
Yamamoto M. Simulation of elemental mercury oxidation in presence of chloride ion in aquatic environment[J]. Chemosphere, 1996, 32: 1217-1224
|
[29] |
Lantzy R J, Mackenzie F T. Atmospheric trace metals:global cycles and assessment of man's impact[J]. Geochim. Cosmochim. Acta, 1979, 43:511-525
|
[30] |
Nriagu O. The biogeochemistry of mercury in the environment[J]. Elsevier, Amsterdam, 1989,pp:1
|
[31] |
Wang D Y, He L, Wei S Q, et al. Estimation of mercury emission from different sources to atmosphere in Chongqing, China[J]. Science of the Total Environment, 2006, 366(2/3): 722-728
|
[32] |
Liss P W, Slater P G. Flux of gases across the air-sea interface[J]. Nature, 1974, 247: 181-184
|
[33] |
Poissant L, Amyot M, Pilote M, et al. Mercury water-air exchange over the Upper St. Lawrence river and lake Ontario[J]. Environmental Science and Technology, 2000, 34 (15): 3069-3078
|
[34] |
Lindberg S E, Zhang H. Air/water exchange of mercury in the Everglades Ⅱ: Measuring and modeling evasion of mercury from surface waters in the everglades nutrient removal project[J]. Sci Total Environ, 2000, 259:135-143
|
[35] |
Feng X B, Yan H Y, Wang S F, et al, Seasonal variation of gaseous mercury exchange rate between air and water surface over Baihua reservoir, Guizhou, China[J].Atmospheric Environment,2004,38 (28): 4721-4732
|
[36] |
李华斌,王文华,彭安.甲基汞的大气-水-土壤界面交换通量[J]. 环境科学,2000,21(1):81-83
|
[37] |
Poissant L and Casimir A, Water-air and soil-air exchange rate of total gaseous mercury measured at background sites[J]. Atmospheric Environment, 1998,32: 883-893
|
[38] |
Grdfeldt K, Feng X B, Sommar J, et al. Total gaseous mercury exchange between air and water over lake and sea surfaces[J]. Atmosphere Environment, 2001, 35: 3027-3038
|
[39] |
Zhang H, Dill C, Kuiken T, et al. Change of dissolved gaseous mercury concentrations in a southern reservoir lake (Tennessee) following seasonal variation of solar radiation[J]. Environment Science and Technology, 2006, 40: 2114-2119
|
[40] |
Andersson Maria E, Grdfeldt Katarina, Wngberg Ingvar,et al. Seasonal and daily variation of mercury evasion at coastal and off shore sites from the Mediterranean sea[J]. Marine Chemistry, 2007, 104: 214-226
|
[41] |
Ferrara R, Mazzolai B, Lanzillotta E,et al. Temporal trends in gaseous mercury evasion from the Mediterranean seawaters[J]. The Science of the Total Environment, 2000, 259: 183-190
|
[42] |
Grdfeldt K, Sommar J, Stromberg D, et al. Oxidation of atomic mercury by hydroxyl radicals and photoinduced decomposition of methylmercury in the aqueous phase[J]. Atmospheric Environment, 2001, 35 (17): 3039- 3047
|
[43] |
Zhang Hong, Dill Christopher.Apparent rates of production and loss of dissolved gaseousmercury (DGM) in a southern reservoir lake (Tennessee, USA)[J].Science of the Total Environment, 2008,392: 233-241
|
[44] |
Feng X B, Wang S F, Qiu G, L et al. Total gaseous mercury exchange between water and air during cloudy weather conditions over Hongfeng Reservoir, Guizhou, China[J]. Journal of Geophysical Research, 2008,113, D15309, doi:10.1029/2007JD009600
|
[45] |
Waite D T, Snihura A D, Liu Y et al. Uptake of atmospheric mercury by deionized water and aqueous solutions of inorganic salts at acidic, neutral and alkaline pH[J]. Chemosphere, 2002, 49: 341-351
|
[46] |
O'Driscoll N J, Beauchamp S, Siciliano S D, et al. Continuous analysis of dissolved gaseous mercury (DGM) and mercury flux in two freshwater Lakes in Kejimkujik park, Nova Scotia: evaluating mercury flux models with quantitative data[J]. Environmental Science and Technology, 2003, 37: 2226- 2235
|
[47] |
Ravichandran M. Interactions between mercury and dissolved organic matterda review[J]. Chemosphere, 2004, 55: 319-331
|
[48] |
Amyot M, Mierle G, Lean D R S, et al. Sunlight-induced formation of dissolved gaseous mercury in lake waters[J]. Environmental Science and Technology, 1994, 28: 2366-2371
|
[49] |
Zhang H, Lindberg S E. Sunlight and iron (Ⅲ)-induced photochemical production of dissolved gaseous mercury in freshwater[J]. Environment Science and Technology, 2001, 35: 928-935
|
[50] |
Xu X, Yang X, Miller D R, et al. Formulation of bi-directional atmosphere-surface exchanges of elemental mercury[J]. Atmospheric Environment, 1999, 33 (27): 4345- 4355
|
[51] |
Munthe J. The aqueous oxidation of elemental mercury by ozone[J]. Atmospheric Environment, Part A: General Topics, 1992,26A (8): 1461- 1468
|
[52] |
Wigfield D C, Perkins S L. Oxidation of elemental mercury by hydroperoxides in aqueous solutions[J]. Canadian Journal of Chemistry,1985, 63: 275-277
|
[53] |
Lalonde J D, Amyot M, Kraepiel A, et al. Photooxidation of Hg(0) in artificial and natural waters[J]. Environmental Science & Technology, 2001, 35: 1367-1372
|
[54] |
Charlotte Beucher, Pascal Wong-Wah-Chung, Claire Richard, et al.Dissolved gaseous mercury formation under UV irradiation of unamended tropical waters from French Guyana[J].The Science of the Total Environment, 2002, 290: 131-138
|
[55] |
Park Jong-Sung, Oh Sehee, Shin Mi-Yeon, et al. Seasonal variation in dissolved gaseous mercury and total mercury concentrations in Juam Reservoir, Korea[J]. Environmental Pollution, 2008,154(1): 12-20
|
[56] |
Hines N A, Brezonik P L. Mercury dynamics in a small Northern Minnesota lake: water to air exchange and photoreactions of mercury[J]. Marine Chemistry, 2004, 90:137- 149
|
[57] |
Tseng C M, Lamborg C, Fitzgerald W F, et al. Cycling of dissolved elemental mercury in Arctic Alaskan lakes[J]. Geochemical et Cosmochimica Acta, 2004, 68(6): 1173-1184
|
[58] |
Vandal G M, Mason R P, Fitzgerald W F. Cycling of volatile mercury in temperate lakes[J]. Water, Air and Soil Pollution, 1991, 56: 791-803
|
[59] |
Amyot M, Mierle G, Lean D R S,et al. Effect of solar radiation on the formation of dissolved gaseous mercury in temperate lakes[J]. Geochimica Et Cosmochimica Acta, 1997b, 61: 975-987
|
[60] |
Mason R P, Sullivan K A. Mercury in lake michigan[J]. The Science of the Total Environment. 1997, 31: 942-947
|