[1] |
Cotton F A, Wilkinson G, Murillo C A, et al. Advanced inorganic chemistry[M]. 6th edition ed. New York: John Wiley & Sons, 1999
|
[2] |
Cullen W R, Reimer K J. Arsenic speciation in the environment[J]. Chemical Reviews, 1989, 89:713-764
|
[3] |
McAuliffe C A, Arsenic, Antimony, Bismuth[M]. In comprehensive coordination chemistry. Vol. 7, Wilkinson, Gilard, Mcleverty, Eds., Oxford: Pergamon, 1987:237-298
|
[4] |
National Research Council. Arsenic in drinking water[M]. Washington DC: National Academy Press, 1999
|
[5] |
Matschullat J. Arsenic in the geospherea review[J]. Sci Total Environ, 2000, 249:297-312
|
[6] |
Mandal B K, Suzuki K T. Arsenic round the world: a review[J]. Talanta, 2002, 58:201-235
|
[7] |
Smedley P L, Kinniburgh D G. A review of the source, behaviour and distribution of arsenic in natural waters[J]. Appl Geochem, 2002, 17:517-568
|
[8] |
Tseng C H. Blackfoot disease and arsenic: a never-ending story[J]. Journal of Environmental Science and Health Part C, 2005,23: 55-74
|
[9] |
Anawar H M, Akai J, Komaki K, et al. Geochemical occurrence of arsenic in groundwater of Bangladesh: sources and mobilization processes[J]. J Geochem Explor, 2003, 77:109-131
|
[10] |
Tufano K J, Fendorf S. Biogeochemical conditions governing arsenic migration in surface and subsurface environments[J]. Geochim Cosmochim Acta, 2006, 70:A658-3802
|
[11] |
O'Shea B M, Clark G, Jankowski J. A comparison of arsenic occurrence and geochemistry in two groundwater environments[J]. Geochim Cosmochim Acta, 2006, 70:A579-3802
|
[12] |
Harvey C F, Swartz C H, Badruzzaman A B M, et al. Groundwater arsenic contamination on the Ganges Delta: biogeochemistry, hydrology, human perturbations, and human suffering on a large scale[J]. Comptes Rendus Geosciences, 2005, 337:285-296
|
[13] |
Swartz C H, Blute N K, Badruzzman B, et al. Mobility of arsenic in a Bangladesh aquifer: Inferences from geochemical profiles, leaching data, and mineralogical characterization[J]. Geochim Cosmochim Acta, 2004, 68:4539-4557
|
[14] |
Stollenwerk K G, Geochemical processes controlling transport of arsenic in groundwater: a review of adsorption[M]. In Arsenic in Ground Water Welch, Stollenwerk, Eds., Kluwer Academic Publishers, 2003:67-100
|
[15] |
Wang S, Mulligan C N. Effect of natural organic matter on arsenic release from soils and sediments into groundwater[J]. Environ Geochem Health, 2006, 28:197-214
|
[16] |
McArthur J M, Banerjee D M, Hudson-Edwards K A, et al. Natural organic matter in sedimentary basins and its relation to arsenic in anoxic ground water: the example of West Bengal and its worldwide implications[J]. Appl Geochem, 2004, 19:1255-1293
|
[17] |
Bauer M, Blodau C. Mobilization of arsenic by dissolved organic matter from iron oxides, soils and sediments[J]. Sci Total Environ, 2006, 354:179-190
|
[18] |
Harvey C F, Swartz CH, Badruzzaman A B M, et al. Arsenic mobility and groundwater extraction in Bangladesh[J]. Science, 2002, 298:1602-1606
|
[19] |
Kalbitz K, Wennrich R, Mobilization of heavy metals and arsenic in polluted wetland soils and its dependence on dissolved organic matter[J]. Sci Total Environ, 1998, 209:27-39
|
[20] |
Cano-Aguilera I, Haque N, Morrison G M, et al. Use of hydride generation-atomic absorption spectrometry to determine the effects of hard ions, iron salts and humic substances on arsenic sorption to sorghum biomass[J]. Microchem J, 2005, 81:57-60
|
[21] |
Grafe M, Eick M J, Grossl P R. Adsorption of arsenate (Ⅴ) and arsenite (Ⅲ) on goethite in the presence and absence of dissolved organic carbon[J]. Soil Sci Soc Am J, 2001, 65:1680-1687
|
[22] |
Redman A D, Macalady D L, Ahmann D. Natural organic matter affects arsenic speciation and sorption onto hematite[J]. Environ Sci Technol, 2002, 36:2889-2896
|
[23] |
Grafe M, Eick M J, Grossl P R, et al. Adsorption of arsenate and arsenite on ferrihydrite in the presence and absence of dissolved organic carbon[J]. J Environ Qual, 2002, 31:1115-1123
|
[24] |
Takahashi Y, Minai Y, Ambe S, et al. Comparison of adsorption behavior of multiple inorganic ions on kaolinite and silica in the presence of humic acid using the multitracer technique[J]. Geochim Cosmochim Acta, 1999, 63:815-836
|
[25] |
Ko I, Davis A P, Kim J Y, et al. Effect of contact order on the adsorption of inorganic arsenic species onto hematite in the presence of humic acid[J]. J Hazard Mater, 2007, 141:53-60
|
[26] |
de Jonge L W, Kjaergaard C, Moldrup P. Colloids and colloid-facilitated transport of contaminants in soils: an introduction[J]. Vadose Zone Journal, 2004, 3:321-325
|
[27] |
Ko I, Kim J Y, Kim K W. Arsenic speciation and sorption kinetics in the As-hematite-humic acid system[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2004, 234:43-50
|
[28] |
Ritter K, Aiken G R, Ranville J F, et al. Evidence for the aquatic binding of arsenate by natural organic matter-suspended Fe(Ⅲ)[J]. Environ Sci Technol, 2006, 40:5380-5387
|
[29] |
Chen Z, Cai Y, Solo-Gabriele H, et al. Interactions of arsenic and the dissolved substances derived from turf soils[J]. Environ Sci Technol, 2006, 40:4659-4665
|
[30] |
Buschmann J, Kappeler A, Lindauer U, et al. Arsenite and arsenate binding to dissolved humic acids: Influence of pH, type of humic acid, and aluminum[J]. Environ Sci Technol, 2006, 40:6015-6020
|
[31] |
Lin H T, Wang M C, Li G C. Complexation of arsenate with humic substance in water extract of compost[J]. Chemosphere, 2004, 56:1105-1112
|
[32] |
Warwick P, Inam E, Evans N. Arsenic's interaction with humic acid[J]. Environ Chem, 2005, 2:119-124
|
[33] |
Sharma P, Ofner J, Kappler A. Formation of binary and ternary colloids and dissolved complexes of organic matter, Fe and As[J]. Environ Sci Technol, 2010, 44:4479-4485
|
[34] |
Sharma A K, Tjell J C, Mosbaek H. Health effects from arsenic in groundwater of the Bengal delta: Effects of iron and water storage practices[J]. Environmental Geosciences, 2006, 13:17-29
|
[35] |
Bauer M, Blodau C. Arsenic distribution in the dissolved, colloidal and particulate size fraction of experimental solutions rich in dissolved organic matter and ferric iron[J]. Geochim Cosmochim Acta, 2009, 73:529-542
|
[36] |
Liu G, Cai Y. Complexation of arsenite with dissolved organic matter: conditional distribution coefficients and apparent stability constants[J]. Chemosphere 2010, 81:890-896
|
[37] |
Liu G, Fernandez A, Cai Y. Iron-bridged complexation of arsenite with dissolved organic matter. Environ Sci Technol, 2010, under review
|
[38] |
Yalcin S, Le C. Speciation of As using solid phase extraction cartridges[J]. J Environ Monit, 2001, 3:81-85
|
[39] |
Buschmann J, Sigg L. Antimony(Ⅲ) binding to humic substances: influence of pH and type of humic acid[J]. Environ Sci Technol, 2004, 38, 4535-4541
|
[40] |
Liu G, Fernandez A, Cai Y. Complexation of arsenite with dissolved organic matter in the absence and presence of natural sand[M]. Abstracts of Papers, 235th ACS National Meeting, 2008, GEOC-195
|
[41] |
Striegel A M. Multiple detection in size-exclusion chromatography of macromolecules[J]. Anal Chem, 2005, 77:104 A-115 A
|
[42] |
Newton K, Amarasiriwardena D, Xing B. Distribution of soil arsenic species, lead and arsenic bound to humic acid molar mass fractions in a contaminated apple orchard[J]. Environ Pollut (Amsterdam, Neth.), 2006, 143:197-205
|
[43] |
Wrobel K, Sadi B B M, Wrobel K, et al. Effect of metal ions on the molecular weight distribution of humic substances derived from municipal compost: ultrafiltration and size exclusion chromatography with spectrophotometric and inductively coupled plasma-MS detection[J]. Anal Chem, 2003, 75:761-767
|
[44] |
Li B, Bergmann J, Lassen S, et al. Distribution of elements binding to molecules with different molecular weights in aqueous extract of Antarctic krill by size-exclusion chromatography coupled with inductively coupled plasma mass spectrometry[J]. J Chromatogr, B 2005, 814:83-91
|
[45] |
Styblo M, Thomas D J. Binding of arsenicals to proteins in an in vitro methylation system[J]. Toxicol Appl Pharmacol, 1997, 147:1-8
|
[46] |
Raab A, Genney D R, Meharg A A, et al. Identification of arsenic species in sheep-wool extracts by different chromatographic methods[J]. Appl Organomet Chem, 2003, 17:684-692
|
[47] |
Jiang G, Gong Z, Li X F, et al. Interaction of trivalent arsenicals with metallothionein[J]. Chem Res Toxicol, 2003, 16:873-880
|
[48] |
Pizarro I, Gomez M, Camara C, et al. Evaluation of arsenic species-protein binding in cardiovascular tissues by bidimensional chromatography with ICP-MS detection[J]. J Anal At Spectrom, 2004, 19:292-296
|
[49] |
Cabaero A I, Madrid Y, Cámara C. Study of mercury-selenium interaction in chicken liver by size exclusion chromatography inductively coupled plasma mass spectrometry[J]. J Anal At Spectrom, 2005, 20:847-855
|
[50] |
Thanabalasingam P, Pickering W F. Arsenic sorption by humic acids. Environmental Pollution Series B[J]. Chemical and Physical, 1986, 12:233-246
|
[51] |
Riggle J, von Wandruszka R, Binding of inorganic phosphate to dissolved metal humates[J]. Talanta, 2005, 66:372-375
|
[52] |
Stevenson F J. Humus Chemistry[M]. New York: Wiley, 1994
|
[53] |
Corapcioglu M Y, Jiang S. Colloid-facilitated groundwater contaminant transport[J]. Water Resour Res, 1993, 29:2215-2226
|
[54] |
McCarthy J F, Zachara J M. Subsurface transport of contaminants[J]. Environmental Science and Technology, 1989, 23:496-502
|
[55] |
Fendorf S, Michael H A, van Geen A. Spatial and temporal variations of groundwater arsenic in south and southeast Asia[J]. Science, 2010, 328:1123-1127
|