
Chinese Journal of Applied Ecology ›› 2003, Vol. ›› Issue (11): 2019-2025.
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WANG Genmei, ZHOU Lixiang
Received:2002-05-07
Revised:2002-06-19
Online:2003-11-15
CLC Number:
WANG Genmei, ZHOU Lixiang . Dynamics of dissolved organic matter in terrestrial ecosystem and its environmental impact[J]. Chinese Journal of Applied Ecology, 2003, (11): 2019-2025.
| [1] Andersson S,et al.2000.Leaching of dissolved organic carbon(DOC) and dissolved organic nitrogen(DON) in mor humus as affected by temperature and pH.Soil Biol Biochem,32:1~10 [2] Baham J, Sposito G.1994.Adsorption of dissolved organic carbon extracted from sewage sludge on montmorillonite and kaolinite in the presence of metal ions.J Environ Qual,23:147~153 [3] Baskaran S, Bolan NS, Rahman A,et al.1996.Effect of exogenoug carbon on the sorption and movement of atrazine and 2,4-D by soils.Aust J Soil Res,34:609~622 [4] Bellin CA, GAO C, Jin Y.1990.Sorption and degradation of pentachlorophenol in sludge-amended soils.J Environ Qual,19:603~608 [5] Chen T-B(陈同斌), Chen Z-J(陈志军).2002.Cadmium adsorption in soil influenced by dissolved organic matter derived from rice straw and sediment.Chin J Appl Ecol(应用生态学报), 13(2):183~186(in Chinese) [6] Christ MJ, David MB.1996.Temperature and moisture effects on the production of dissolved organic carbon in spodosol.Soil Biol Biochem,28(9):1191~1199 [7] Davis AD.1982.Adsorption of natural dissolved organic matter at the oxide/water interface.Geochim Cosmochim Acta,46:2381~2393 [8] Donald RG, Anderson DM, Stewart JWB.1993.Potential role of dissolved organic carbon in phosphorus transport in forested soils.Soil Sci Am J,57:1611~1618 [9] Dosskey MG, Bertsch PM.1997.Transport of dissolved organic matter through a sandy forest soil.Soil Sci Soc Am J,61:920~927 [10] Gerritse RG.1996.Column- and catchment-scale transport of cadmium:effect of dissolved organic matter.J Contam Hydrol, 22:145~163 [11] Gu B,et al.1994.Adsorption and desorption of natural organic matter on iron oxide: mechanisms and models.Environ Sci Technol,28:38~46 [12] Han NZ, Thompson ML.1999.Copper-binding ability of dissolved organic matter derived from anaerobically digested biosolids.J Environ Qual,28:939~944 [13] Homann PS, Grigal DF.1992.Molecular weight distribution of soluble organics from laboratory-manipulated surface soils.Soil Sci Soc Am J,56:1305~1310 [14] Hua L(华珞),et al.1998.Effects of organic manure on the amelioration of Cr- Zn-contaminated soils.Agro-Environ Prot(农业环境保护), 17(2):55~59(in Chinese) [15] Jandle R, Sollins P.1997.Water-extractable soil carbon in relation to the below ground carbon cycle.Biol Fertil Soils,25:196~201 [16] Jardine PM, Weber NL, McCarthy JF.1989.Mechanisms of dissolved carbon adsorption on soil.Soil Sci Am J,53:1378~1385 [17] Joadan RN, Yonge DR, Hathhorn WE.1997.Enhanced mobility of Pb in the presence of dissolved natural organic matter.J Contam Hydrol,29:59~80 [18] Johnson WP, Amy GL.1995.Facilitated transport and enhanced desorption of polycyclic aromatic hydrocarbons by natural organic matter in aguifer sediments.Environ Sci Technol,29:807~817 [19] Kaiser K, Zech W.1998.Rates of dissolved organic matter release and sorption in forest soils.Soil Sci, 163(9):714~725 [20] Kalbita K,et al.2000.Controls on the dynamics of dissolved organic matter in soils: A review.Soil Sci,165(4): 277~304 [21] Kalbitz K, Wennrich R.1998.Mobilization of heavy metals and arsenic in polluted wetland soils and its dependence on dissolved organic matter.Sci Total Environ,209:27~39 [22] Karlik B.1995.The comparison of leaching of dissolved organic matter from limed and nonlimed soils.Polish Ecol Stud, 19(3-4):221~227 [23] Keefer RF, Codling EE, Singh RN.1984.Fractionation of metal-organic components extracted from a sludge-amended soil.Soil Sci Soc Am J, 48:1054~1059 [24] Kuiters AT, Mulder W.1993.Water-soluble organic matter in forest soils I.Complexing properties and implications for soil equilibration.Plant and Soil, 152:215~224 [25] Lamy I.1993.Soil cadmium mobility as a consequence of sewage sludge disposal.J Environ Qual, 22:731~737 [26] Lavelle P.1988.Earthworm activities and the soil systems.Biol Fert Soil,6:237~251 [27] Leenheer JA.1981.Comprehensive approach to preparative isolation and fractionation of dissolved organic carbon from natural waters and wasters.Environ Sci Technol, 15:578~587 [28] Liechty HO,et al.1995.Dissolved organic carbon in northern hardwood stands with differing acidic inputs and temperature regimes.J Environ Qual, 24:927~933 [29] Li T-J(李天杰).1996.Soil Environics.Beijing: Higher Educational Press.143~145(in Chinese) [30] Liu W-P(刘维屏), Wang Q-Q(王琪全), Li K-B(李克斌).1998.Study on the adsorption mechanism of pesticides on soil humic acids and clays using recent analysis technology.China Environ Sci(中国环境科学), 18(2):102~106(in Chinese) [31] Lundquist EJ,et al.1999.Wet-dry cycles affect dissolved organic carbon in two California agricultural soils.Soil Biol Biochem, 31(7):1031~1038 [32] Lu YH,et al.2000.Dissolved organic carbon and methane emissions from a rice paddy fertilized with ammonium and nitrate.J Environ Qual, 29:1733~1740 [33] Madhum YA, Yong JL, Freed VH.1986.Binding of herbicides by water-soluble organic materials from soil.J Environ Qual, 15:64~68 [34] Malcolm RL.1993.Concentration and composition of dissolved organic carbon in soils, streams, and groundwaters.In:Beck AJ.ed.Organic Substances in Soil and Water:Natural Constituents and their Influences on Contaminate Behavior.Cambridge:Royal Society of Chemistry.19~29 [35] Martens DA, Frankenberger WT Jr.1992.Decomposition of bacterial polymers in soil and their influence on soil structure.Biol Fert Soils, 13:65~73 [36] Martin JP, Richards SJ.1963.Decomposition and binding action of a polysaccharide from Chromobacterium violaceum in soil.J Bact, 85:1288~1294 [37] McCarthy JF,et al.1993.Mobility of natural organic matter in a sandy aquifer.Environ Sci Technol, 27:667~676 [38] Merckx R,et al.2001.Decomposition of dissolved organic carbon after soil drying and rewetting as an indicator of metal toxicity in soils.Soil Biol Biochem, 33(2):235~240 [39] Miller MH,et al.1958.Characterization of chelating agents and their reaction with trace metals in soils.Proc Soil Sci Soc Am,22:225 [40] Moore TR, Souza WD, Koprivnjak JF.1992.Controls on the sorption of dissolved organic carbon by soils.Soil Sci,(2):120~129 [41] Mulholland PJ,et al.1990.What are the temporal and spatial variations of organic acids at the ecosystems level ? In: Organic Acids in Aquatic Ecosystems.Life Sciences Research Report.48 Chichester:John Wiley & Sons.315~329 [42] Myneni SCB, Brown JT, Martinez GA,et al.1999.Imaging of humic substance macromolecular structures in water and soils.Science,286:1335~1337 [43] Nelson SD,et al.2000.Stability and mobility of napropamide complexed with dissolved organic matter in soil column.J Environ Qual, 29:1856~1862 [44] Ohon T, Crannill BS.1996.Green and animal manure-derived dissolved organic matter effects on phosphorus sorption.J Environ Qual, 25(5):1137~1143 [45] Qiao X-W(乔雄梧).1999.Environmental behavior of pesticides in soils.Pestic Sci Man(农药科学与管理),3:12~17(in Chinese) [46] Qualls RG, Hainens BL.1991.Chemistry of dissolved organic nutrients in water percolating through forest ecosystems.Soil Sci Soc Am J, 55:1112~1123 [47] Romkens-Paul FAM, Dolfing J.1998.Effect of Ca on the solubility and molecular size distribution of DOC and Cu binding in soil solution samples.Environ Sci Technol,32:363~369 [48] Tao S(陶澍), Cao J(曹军).1996.Leachation kinetics of water soluble organic carbon from surface horizon of upland soil. China Environ Sci(中国环境科学),16(6):400~414(in Chinese) [49] Temminghoff Erwin JM, et al.1997.Copper mobility in a copper-contaminated sandy soil as affected by pH and solid and dissolved organic matter.Environ Sci Technol, 31:1109~1115 [50] Tong Y-A(同延安), Gao Z(高宗), Liu X-L(刘杏兰),et al.1995.Effect of organic manure and chemical fertilizer on balance of microelements in lou soil.Acta Pedol Sin(土壤学报), 32(3):315~320(in Chinese) [51] Wang G(王果),et al.1999.Adsorption of copper and cadmium on two soils as affected by water-soluble products of three organic materials.Acta Pedol Sin(土壤学报), 36(2):179~188(in Chinese) [52] Wang J-G(王敬国).1995.Soil Chemistry of Plant Nutrition.Beijing: Beijing Agricultural University Press.:56~57(in Chinese) [53] Zhang Y-S(章永松), Lin X-Y(林咸永), Luo A-C(罗安程).1998.Effect of manure(matter) on activation to different phosphate in soils.Plant Nutr Fert Sci(植物营养与肥料学报),4(2):145~150(in Chinese) [54] Zhou L-X(周立祥),et al.1994.Effect of municipal sewage sludge applied to agricultural land on crop and soil.Agro-Environ Prot(农业环境保护), 13(4):158~162(in Chinese) [55] Zhou LX, Wong JWC.2001.Effect of dissolved organic matters derived from sludge and composted sludge on soil Cu sorption.J Environ Qual, 30(3):878~883 [56] Zhou LX,Wong JWC.2003.Behavior of heavy metals in soil:Effect of dissolved organic matter.In:Selim M,eds.Geochemical and Hydrological Reactivity of Heavy Metals in Soil.New York:CRC Press.245~270 [65] Zhu Z-X(朱祖祥).1993.Edaphology. Beijing: Agricultural Press.36~45(in Chinese) |
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