不同森林植被下土壤活性有机碳含量及其季节变(7)
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时间:2025-03-13
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张 剑等: 不同森林植被下土壤活性有机碳含量及其季节变化 47
climate and litter quality[J]. Trends in Ecology and Evolution, 1995, 10: 63 66
[29] Silver W. L., Miya R. K. Global patterns in root decomposi-tion: Comparisons of climate and litter quality effects[J]. Oecologia, 2001, 129: 407 419
[30] Campbell C. A., Biederbeck V. O., Wen G., et al. Seasonal
trends in selected soil biochemical attributes: Effects of crop rotation in the semiarid prairie[J]. Can. J. Soil Sci., 1999, 79: 73 84
[31] Campbell C. A., Lafond G. P., Biederbeck O., et al. Seasonal
trends in soil biochemical attributes: Effects of crop man-agement on a Black Chernozem[J]. Can. J. Soil Sci., 1999, 79: 85 97
[32] Wang Q. K., Wang S. L. Soil organic matter under different
forest types in Southern China[J]. Geoderma, 2007, 142: 349 356
[33] Haynes R. J., Swift R. S. Stability of soil aggregates in rela-tion to organic constituents and soil water content[J]. J. Soil Sci., 1990, 41: 73 83
[34] Puget P., Angers D. A., Chenu C. Nature of carbohydrates as-sociated with water-stable aggregates of two cultivated soils[J]. Soil Biol. Biochem., 1999, 31: 55 63
[35] Ghani A., Dexter M., Sarathchandra U., et al. Assessment of
extractable hot-water carbon as an indicator of soil quality on soils under long-term pastoral, cropping, market gardening and native vegetation[J]. Proc. Aust. NZ. Joint Soils Conf., 2000, 2: 119 120
[36] Ghani A., Dexter M., Perrott K. W. Hot-water extractable
carbon in soils: a sensitive measurement for determining im-pacts of fertilization, grazing and cultivation[J]. Soil Biol. Biochem., 2003, 35: 1231 1243
[37] Liang B. C., Mackenize A. F., Schnitzer M., et al. Manage-ment-induced change in labile soil organic matter under con-tinuous corn in eastern Canadian soils[J]. Biol. Fert. Soils, 1998, 26: 88 94
[38] 张春霞, 郝明德, 魏孝荣, 等. 不同农田生态系统土壤微生
物生物量碳的变化研究[J]. 中国生态农业学报, 2006, 14(1): 81 83
379 386
[17] Vance E. D., Brooks P. C., Jenkinson D. S. An extraction
method for measuring soil microbial biomass[J]. Soil Boil. Biochem., 1987, 19: 703 707
[18] McGill W. B., Cannon K. R., Robertson J. A., et al. Dynamics
of soil microbial biomass and water-soluble organic C in Breton L. after 50 years of cropping to two rotations [J]. Can. J. Soil Sci., 1986, 66: 1 19
[19] Haynes R. J., Francis G. S. Changes in microbial biomass C,
soil carbohydrate composition and aggregate stability induced by growth of selected crop and forage species under field conditions[J]. J. Soil Sci., 1993, 44: 665 675
[20] Safarik I., Santruckova H. Direct determination of total soil
carbohydrate content. [J] Plant and Soil, 1992, 143: 109 114 [21] Sparling G., Vojvodic V. M., Schipper L. A. Hot-water-soluble
C as a simple measure of labile soil organic matter: The rela-tionship with microbial biomass C[J]. Soil Biol. Biochem., 1998, 30: 1469 1472
[22] Berger T. W., Neubauer C., Glatzel G. Factors controlling soil
carbon and nitrogen stores in pure stands of Norway spruce (Picea abies) and mixed species stands in Austria[J]. Forest Ecology and Management, 2002, 159: 3 14
[23] 姜培坤. 不同林分下土壤活性有机碳库研究[J]. 林业科学,
2005, 41(1): 10 13
[24] Kalbitz K., Solinger S., Park J. H., et al. Controls on the dy-namics of dissolved organic matter in soil: A review[J]. Soil Science, 2000, 165: 277 304
[25] Redl G., Hübner C., Wurst F. Changes in hot water soil ex-tracts brought about by nitrogen immobilization and miner-alization processes during incubation of amended soils[J]. Biol. Fertil. Soils, 1990, 10: 45 49
[26] Haynes R. J., Beare M. H. Influence of six crop species on
aggregate stability and some labile organic matter fractions[J]. Soil Biol. Biochem., 1997, 29: 1647 1653
[27] 刘艳, 汪思龙, 王晓伟, 等. 不同温度条件下杉木、桤木和
火力楠细根分解对土壤活性有机碳的影响[J]. 应用生态学报, 2007, 18(3): 481 486
[28] Couteaux M. M., Bottner P., Berg B. Litter decomposition,
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