
Chinese Journal of Applied Ecology ›› 2003, Vol. ›› Issue (1): 126-130.
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ZHAO Jinsong1,2, ZHANG Xudong1, YUAN Xing1,2, WANG Jing1
Received:2001-08-31
Revised:2002-03-12
CLC Number:
ZHAO Jinsong, ZHANG Xudong, YUAN Xing, WANG Jing. Characteristics and environmental significance of soil dissolved organic matter[J]. Chinese Journal of Applied Ecology, 2003, (1): 126-130.
| [1] Bolan NS, Baskaran S, Thiagarajan S.1996.An evaluation of the methods of measurement of dissolved organic carbon in soils, manures, sludges and streams water.Commun Soil Sci Plant Anal,27:2723~2737 [2] Boissier JM, Fontvieille D.1993.Biodegradable dissolved organic carbon in seepage waters from two forest soils.Soil Biol Biochem,25:1257~1261 [3] Boyer JN, Groffman PM.1996.Bioavailability of water extractable organic carbon fractions in forest and agricultural soil profiles.Soil Biol Biochem,28:783~790 [4] Casals P, Romanya J, Cortina J,et al.1995.Nitrogen supply rate in Scots pine (Pinus sylvestris L.) forest of contrasting slope aspect.Plant Soil,168~169:67~73 [5] Cao J (曹军), Tao S (陶澍).1999.Release kinetics of organic carbon from soil and sediment.Acta Sci Circums(环境科学学报),19: 297~302 (in Chinese) [6] Chen T-B (陈同斌), Chen Z-J (陈志军).1998.Dissolved organic matter and its effects on adsorption and desorption of pollutants in soils.Plant Nutrit Ferti Sci(植物营养与肥料学报),4:201~210 (in Chinese) [7] Cheng W, Zhang Q, Coleman DC,et al.1996.Is available carbon limiting microbial respiration in the rhizosphere.Soil Biol Biochem,28:1283~1288 [8] Cook BD, Allan DL.1992a.Dissolved organic carbon in old field soils: Compositional changes during the biodegradation of soil organic matter.Soil Biol Biochem,24:595~600 [9] Cook BD, Allan DL.1992b.Dissolved organic carbon in old field soils: Total amounts as measure of available resources for soil mineralization.Soil Biol Biochem,24:585~594 [10] Cronan CS.1985.Comparative effects of precipitation acidity on three forest soils: Carbon cycling response.Plant Soil,88:101~102 [11] Cronan CS, Aiken GR.1985.Chemistry and transport of soluble humic substances in forested watersheds of the Adirondack Park, New York.Geochim Cosmochim Acta,49:1697~1705 [12] Cronan CS, Driscoll CT, Newton RM,et al.1990.A comparative analysis of aluminum biogeochemistry in a northern and a southeastern forested watershed.Water Resour Res,26:1413~1430 [13] Currie WS, Aber JD.1997.Modeling leaching as a decomposition process in humid montane forests.Ecology,78:1844~1860 [14] David MB, Vance GF, Rissing JM,et al.1989.Organic carbon fraction in extracts of O and B horizons from a New England spodosol: Effects of acid treatment.J Environ Qual,18:212~217 [15] Dawson HJ, Hrutfiord BF, Zasoski RJ,et al.1981.The molecular weight and origin of yellow organic acids.Soil Sci,132:191~199 [16] Dawson HJ, Ugolini FC, Hrutfiord BF,et al.1978.Role of soluble organics in the soil processes of a podzol, Central Cascades, Washington.Soil Sci,126:290~296 [17] Edwards NT, Harris WF.1977.Carbon cycling in a mixed deciduous forest floor.Ecology,58:431~437 [18] Graber ER, Gerstl Z, Fischer E,et al.1995.Enhanced transport of atrazine under irrigation with effluent.Soil Sci Soc Am J,59:1513~1519 [19] Grn C, Torslov J, Albrechtsen HJ,et al.1992.Biodegradability of dissolved organic carbon in groundwater from an unconfined aquifer.Sci Total Environ,117/118:241~251 [20] Guggenberger G, Glaser B, Zech W.1994a.Heavy metal binding by hydrophobic and hydrophilic dissolved organic fractions in a spodosol A and B horizon.Water, Air, Soil Pollut,72:111~127 [21] Guggenberger G, Zech W, Schulten H-R.1994b.Formation and mobilization pathways of dissolved organic matter: Evidence from chemical structural studies of organic matter fractions in acid forest floor solutions.Org Geochem,21:51~66 [22] Han N, Thompson ML.1999.Soluble organic carbon in a biosolids-amended mollisol.J Environ Qual,28: 652~658 [23] Haines BL, Waide JB, Todd RL.1982.Soil solution nutrient concentrations sampled with tension and zero-tension lysimeters: report of discrepancies.Soil Sci Soc Am J,46:658~661 [24] Haynes RJ.2000.Labile organic matter as an indicator of organic matter quality in arable and pastoral soils in New Zealand.Soil Biol Biochem,32:211~219 [25] Herbert BE, Bertsch PM.1995.Characterization of dissolved and colloidal organic matter in soil solution: A review.In: Kelly JM, McFee WW eds.Carbon Forms and Functions in Forest Soils.Madison: SSSA.63~88 [26] Huang WZ, Schoenau JJ.1996.Distribution of water-soluble organic carbon in an aspen forest soil.Can J For Res,26:1266~1272 [27] Huang WZ, Schoenau JJ.1998.Fluxes of water-soluble nitrogen and phosphorous in the forest floor and surface mineral soil of a boreal aspen stand.Geoderma,81:251~264 [28] Huang Y, Eglinton G, van der Hage ERE,et al.1998.Dissolved organic matter and its parent organic matter in grass upland soil horizons studied by analytical pyrolysis techniques.Eur J Soil Sci,49:1~15 [29] Johansson G.1992.Release of organic C from growing roots of meadow fescue (Festuca pratensis L.).Soil Biol Biochem,24:427~433 [30] Johnson WP, Amy GL.1995.Facilitated transport and enhanced desorption of polycyclic aromatic hydrocarbon by natural organic matter in aquifer sediments.Environ Sci Technol,29:807~817 [31] Kalbitz K, Solinger S,Park J-H,et al.2000.Controls on the dynamics of dissolved organic matter in soils: a review.Soil Sci,165:277~304 [32] Lawrence GB, David MB.1996.Chemical evaluation of soil-solution in acid forest soils.Soil Sci,161:298~313 [33] Lee D-Y, Farmer J.1989.Dissolved organic matter interaction with napropamide and four other nonionic pesticides.J Environ Qual,18:468~474 [34] Lee D-Y, Farmer J, Aochi Y.1990.Sorption of napropamide on clay and soil in the presence of dissolved organic matter.J Environ Qual,19:567~573 [35] Lin B (林滨), Tao S (陶澍), Cao J (曹军),et al.1996.Contents and sorption coefficients of soluble organic compounds in soil and sediments from Yichun River catchment.China Environ Sci(中国环境科学),16:307~310 (in Chinese) [36] Maxin C, Kgel-Knabner I.1995.Partitioning of PAH to DOM: Implications on PAH mobility in soils.Eur J Soil Sci,46:193~204 [37] McDowell WH, Currie WS, Aber JD,et al.1998.Effects of chronic nitrogen amendments on production of dissolved organic carbon and nitrogen in forest soils.Water, Air, Soil Pollut,105:175~182 [38] McDowell WH, Likens GE.1988.Origin, composition, and flux of dissolved organic carbon in the Hubbard Brook Valley.Ecol Monogr,58:177~195 [39] Meyer JL, Edwards RT, Risley R.1987.Bacterial growth on dissolved organic carbon from blackwater river.Microb Ecol,13:13~29 [40] Meyer JL, Tate CM.1983.The effects of watershed disturbance on dissolved organic carbon dynamics of a stream.Ecology,64:33~44 [41] Michalzik B, Matzner F.1999.Fluxes and dynamics of dissolved organic nitrogen and carbon in a spruce (Picea abies Karst.) forest ecosystem.Eur J Soil Sci,50:579~590 [42] Miltner A, Zech W.1998.Carbohydrate decomposition in beech litter as influenced by aluminium, iron and manganese oxides.Soil Biol Biochem,30:367~374 [43] Murphy DV, Macdonald AJ, Stockdale EA,et al.2000.Soluble organic nitrogen in agricultural soils.Biol Fertil Soils,30:374~387 [44] Nelson PN, Dictor M-C, Soulas G.1994.Availability of organic carbon in soluble and particle-size fractions from a soil profile.Soil Biol Biochem,26:1549~1555 [45] Nelson SD, Farmer WJ, Letey J,et al.2000a.Stability and mobility of napropamide complexed with dissolved organic matter in soil columns.J Environ Qual,29:1856~1862 [46] Nelson SD, Letey J, Farmer WJ,et al.1998.Facilitated transpost of napropamide by dissolved organic matter in sewage sludge amended soil.J Environ Qual,27: 1194~2000 [47] Nelson SD, Letey J, Farmer WJ,et al.2000b.Herbicide application method effects on napropamide complexation with dissolved organic matter.J Environ Qual,29:987~994 [48] Pohlman AA, McColl JG.1988.Soluble organics from forest litter and their role in metal dissolution.Soil Sci Soc Am J,52:265~271 [49] Qualls RG, Haines BL.1991.Geochemistry of dissolved organic nutrients in water percolating through a forest ecosystem.Soil Sci Soc Am J,55:1112~1123 [50] Qualls RG, Haines BL.1992a.Biodegradability of dissolved organic matter in forest throughfall, soil solution, and stream water.Soil Sci Soc Am J,56:578~586 [51] Qualls RG, Haines BL.1992b.Measuring adsorption isotherms using continuous unsaturated flow through intact soil cores.Soil Sci Soc Am J,56:456~460 [52] Qualls RG, Haines BL, Swank WT.1991.Fluxes of dissolved organic nutrients and humic substances in a deciduous forest.Ecology,72:254~266 [53] Raber B, Kgel-Knabner I, Stein C,et al.1998.Partitioning of polycyclic aromatic hydrocarbons to dissolved organic matter from different soils.Chemosphere,36:79~97 [54] Raulund-Rasmussen K, Borrggaard OK, Hansen HCB,et al.1998.Effects of natural soil solutes on weathering rates of soil minerals.Eur J Soil Sci,49:397~406 [55] Sollins P, Homann P, Caldwell BA.1996.Stabilization and destabilization of soil organic matter: Mechanisms and controls.Geoderma,74:65~105 [56] Totsche KU, Danzer J, Kgel-Knabner I.1997.Dissolved organic matter-enhanced retention of polycyclic aromatic hydrocarbons in soil miscible displacement experiments.J Environ Qual,26:1090~1100 [57] Wallis PM, Hynes HBN, Telang SA.1981.The importance of groundwater in the transportation of allochthonous dissolved organic matter to the streams draining a small mountain basin.Hydrobiologia,79:77~90 [58] Williams CF, Agassi M, Letey J,et al.2000.Facilitated transport of napropamide by dissolved organic matter through soil columns.Soil Sci Soc Am J,64: 590~594 [59] Yano Y, McDowell WH, Kinner N.1998.Quantification of biodegradable dissolved organic carbon in soil solution with flow-through bioreactors.Soil Sci Soc Am J,62:1556~1564 [60] Zsolnay A.1996.Dissolved humus in soil waters.In: Piccolo A ed.Humic Substances in Terrestrial Ecosystems.Amsterdam: Elsevier.171~223 |
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