吴秀杰, 童菊秀, 谭超群. 土壤Cr(VI)在非线性Langmuir吸附条件下的径流流失试验与模拟[J]. 农业工程学报, 2015, 31(1): 146-152. DOI: doi:10.3969/j.issn.1002-6819.2015.01.021
    引用本文: 吴秀杰, 童菊秀, 谭超群. 土壤Cr(VI)在非线性Langmuir吸附条件下的径流流失试验与模拟[J]. 农业工程学报, 2015, 31(1): 146-152. DOI: doi:10.3969/j.issn.1002-6819.2015.01.021
    Wu Xiujie, Tong Juxiu, Tan Chaoqun. Experiment and simulation on soil Cr(VI) loss to surface runoff under condition of nonlinear Langmuir adsorption[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2015, 31(1): 146-152. DOI: doi:10.3969/j.issn.1002-6819.2015.01.021
    Citation: Wu Xiujie, Tong Juxiu, Tan Chaoqun. Experiment and simulation on soil Cr(VI) loss to surface runoff under condition of nonlinear Langmuir adsorption[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2015, 31(1): 146-152. DOI: doi:10.3969/j.issn.1002-6819.2015.01.021

    土壤Cr(VI)在非线性Langmuir吸附条件下的径流流失试验与模拟

    Experiment and simulation on soil Cr(VI) loss to surface runoff under condition of nonlinear Langmuir adsorption

    • 摘要: 针对重金属铬(Cr)污染严重的现象,基于简单的二层非完全混合模型,将降雨时农田土壤与积水整个系统分为混合区及混合区以下两个部分,根据水量平衡原理和溶质质量守恒定律,研究土壤在非线性Langmuir吸附条件下,吸附性溶质Cr(VI)的径流流失规律。试验模拟的田间地表径流是由降雨引起的,根据降雨期间土壤与雨水相互作用情况,将降雨过程分为4个阶段分别求解进行研究。利用室内模拟降雨-径流试验所得数据进行模拟计算,并通过敏感性分析和模型参数对径流流失量的影响分析,阐明模型参数对土壤中吸附性溶质径流流失规律的影响。研究结果表明:此二层非完全混合模型能预测土壤在非线性Langmuir吸附条件下,吸附性溶质Cr(VI)的径流流失规律。该模型对入渗水溶质与土壤混合层溶质之间的非完全混合系数γ较为敏感,对土壤混合层溶质与地表积水-径流水溶质之间的非完全混合系数α次之,对Langmuir吸附方程中的参数B、C不敏感。其中γ和α对径流流失过程的影响主要作用于降雨前期,而Langmuir吸附方程中的参数B对整个过程的影响作用于整个降雨过程,C主要作用于降雨后期。试验数据显示地表径流中溶质含量很低,说明该次试验中混合层溶质进入地表积水-径流层量很少,而模拟α值很小,与实际情况吻合,同时也说明,土壤中流失的污染物重金属Cr(VI)大多存在于地下排水中。

       

      Abstract: Abstract: Farmland has become less and less in China, but the heavy metal pollution is very serious recently. So, the study on the loss of adsorptive solute of six-valence chromium, i.e. Cr(VI) from soil to surface runoff becomes very important, which is of great significance to understand the expansion of heavy metal pollution in the field. The problem of chromium pollution has been a very serious and worldwide concern recently. In this paper, based on the water balance and solute mass conservation, a simple two-layer incomplete mixing model is used to study adsorptive solute of Cr(VI) loss from soil into surface runoff with nonlinear Langmuir adsorption. Based on the water infiltration, the rainfall process is divided into four stages. Experimental data under the condition of laboratory simulated rainfall-runoff is used to verify the model with nonlinear Langmuir isotherm adsorption equation. Influences of model parameters on the soil solute loss to surface runoff and model sensitivity are analyzed. The results suggest that model simulations with Langmuir isotherm equation agree well with the observed data, which means that the simple two-layer incomplete mixing model is reliable to predict the adsorptive solute of Cr(VI) loss from soil into surface runoff with nonlinear Langmuir adsorption. Parameters γ, which is the incomplete mixing parameter of the solute between the infiltration water and the soil water in the mixing layer, is more sensitive than α which is the incomplete mixing parameter of the solute between the soil water in the mixing layer and the ponding-runoff water. The parameters γ and α have a greater impact on the simulated results of the model in the early stages and smaller impact in the late stages of rainfall, and the parameter B, which is related to the adsorption-desorption equilibrium constant for a reversible reaction and the saturated adsorption capacity absorbed by the single molecular layer in nonlinear isotherm equation, has different impact at different rainfall stages. And the parameter C, which is related to the saturated adsorption capacity in nonlinear isotherm equation, has a greater impact on the simulated results of the model in the later stages than the impact in the early stages of rainfall. Experimental data indicates that the solute concentration and amount is very small, which means the solute in the mixing layer does not transfer much into ponding-surface runoff layer. This is also proved by the small value of the simulated α, which also suggests that the most of lost solute of soil Cr(VI) is in the drainage water. The study results will provide references to prevent and reduce the agricultural non-point heavy metal pollution in the field.

       

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