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首页> 外文期刊>Soil Science Society of America Journal >Solute Transport as Related to Soil Structure in Unsaturated Intact Soil Blocks
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Solute Transport as Related to Soil Structure in Unsaturated Intact Soil Blocks

机译:与非饱和完整土壤块中土壤结构相关的溶质运移

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摘要

Concern about soil and groundwater pollution has resulted in numerous studies focused on solute transport. The objectives of our study were to investigate the effect of soil type and land-use management on solute movement. Transport of water and Cl- were measured through intact blocks of Maury (fine, mixed, semiactive, mesic Typic Paleudalf) and Cecil (fine, kaolinitic, thermic Typic Kanhapludult) soils, under steady-state, unsaturated flow conditions. Three replicate blocks for the Maury soil and two replicate blocks for the Cecil soil were studied per land-use treatment. The land-use treatments were conventional-till corn (Zea mays L.) production and long-term grass pasture. Individual blocks were instrumented with time domain reflectometry (TDR) probes at the 5-, 15-, and 25-cm depths. The effluent Cl- and TDR breakthrough curves were fitted using the convection dispersion equation (CDE); the estimated parameters were pore water velocity (v), dispersion coefficient (D), and, for the TDR breakthrough curves, maximum bulk electrical conductivity (BECmax). The CDE fitted the data very well, with model R2 values ranging from 0.971 to 0.999. Volumetric water content (), total porosity, the soil water retention curve, and saturated hydraulic conductivity were determined on the same blocks. Volumetric water content increased as the slope of the water retention curve decreased. Increasing resulted in decreasing v and thus, because of the linear relationship between D and v , decreasing D. Structural controls on solute dispersion in this study were mainly indirect, and related to variations in water content produced by differences in pore-size distribution.
机译:对土壤和地下水污染的关注导致了 大量针对溶质运移的研究。本研究的目的是研究土壤类型和土地利用管理对溶质运移的影响。水和 Cl -的运输是通过完整的Maury块(精细,混合, 半活性,中性Typic Paleudalf)和Cecil(精细,高岭土, 热型Typical Kanhapludult)土壤,处于稳态,非饱和 流动条件下。每种土地利用 处理研究了Maury土壤的三个重复块和塞西尔土壤的两个 。土地使用的处理方式为常规耕作的玉米生产(Zea mays L.)和长期放牧的草场。在5、15和25厘米深度处,使用时域反射仪(TDR) 探针对各个 块进行检测。利用对流弥散 方程(CDE)拟合出水的Cl - TDR穿透曲线。估计参数为孔隙水速度 (v),弥散系数(D),并且对于TDR突破 曲线,最大体积电导率(BEC max < / sub>)。 CDE 非常适合数据,模型R 2 的值范围为 0.971至0.999。在同一块上确定了体积水含量(),总孔隙率, 土壤保水曲线和饱和导水率 。体积水含量 随着保水曲线斜率的减小而增加。增大导致v减小,因此,由于 D与v之间的线性关系,D减小。本研究中溶质分散的结构控制 主要是间接的,而 与孔径分布中的差异 产生的含水量变化有关。

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  • 来源
    《Soil Science Society of America Journal》 |2000年第3期|818-826|共9页
  • 作者单位

    Dep. of Crop and Soil Environmental Sciences, Clemson Univ., Clemson, SC 29634 USA,Dep. of Agronomy, University of Kentucky, Lexington, KY 40546 USA;

    Dep. of Crop and Soil Environmental Sciences, Clemson Univ., Clemson, SC 29634 USA,Dep. of Agronomy, University of Kentucky, Lexington, KY 40546 USA;

    Dep. of Crop and Soil Environmental Sciences, Clemson Univ., Clemson, SC 29634 USA,Dep. of Agronomy, University of Kentucky, Lexington, KY 40546 USA;

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