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低水势下土壤水分磁滞现象研究
作者姓名:L. PRUNTY  J. BELL
作者单位:Department of Soil Science, North Dakota State University, Fargo, ND 58105 (USA).
摘    要:Knowledge of the soil water characteristic curve is fundamental for understanding unsaturated soils. The objective of this work was to find scanning hysteresis loops of two fine textured soils at water potentials below wilting point. This was done by equilibration over NaCl solutions with water potentials of -6.6 to -18.8 MPa at 25 ℃. When cycled repeatedly through a series of potentials in the range noted previously both soils exhibited a hysteresis effect. The experimental differences in water content between the drying and wetting soils at the same water potential were much too large to be accounted for by failure to allow sufficient time to attain equilibrium as predicted by the exponential decay model. The wetting versus drying differences were relatively small, however, at only 4 mg g^-1 or less in absolute terms and about 3% of the mean of wetting and drying, in relative terms. Hysteresis should be a consideration when modeling biological and physical soil processes at water contents below the wilting point, where small differences in water content result in large potential energy changes.

关 键 词:吸附作用  旱田  生态平衡  土壤水
收稿时间:19 December 2006
修稿时间:2006-12-192007-05-17

Soil water hysteresis at low potential
L. PRUNTY,J. BELL.Soil water hysteresis at low potential[J].Pedosphere,2007,17(4):436-444.
Authors:L PRUNTY and J BELL
Institution:Department of Soil Science, North Dakota State University, Fargo, ND 80105 (USA). E-mail: lprunty@ndsuext.nodak.edu;Department of Soil Science, North Dakota State University, Fargo, ND 80105 (USA). E-mail: lprunty@ndsuext.nodak.edu
Abstract:Knowledge of the soil water characteristic curve is fundamental for understanding unsaturated soils. The objective of this work was to find scanning hysteresis loops of two fine textured soils at water potentials below wilting point. This was done by equilibration over NaCl solutions with water potentials of −6.6 to −18.8 MPa at 25 ?C. When cycled repeatedly through a series of potentials in the range noted previously both soils exhibited a hysteresis effect. The experimental differences in water content between the drying and wetting soils at the same water potential were much too large to be accounted for by failure to allow sufficient time to attain equilibrium as predicted by the exponential decay model. The wetting versus drying differences were relatively small, however, at only 4 mg g−1 or less in absolute terms and about 3% of the mean of wetting and drying, in relative terms. Hysteresis should be a consideration when modeling biological and physical soil processes at water contents below the wilting point, where small differences in water content result in large potential energy changes.
Keywords:adsorption  dry soil  equilibration  matric potential  soil water characteristic
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