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Adapting the profile model to calculate the critical loads for east Asian soils by including volcanic glass weathering and alternative aluminum solubility system

机译:调整型材模型以计算通过包括火山玻璃风化和替代铝溶解性系统的东亚土壤的关键负荷

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Adaptation of the steady-state soil chemistry model PROFILE was studied, on the following two parts, to calculate the critical loads for East Asian soils: (1) Dissolution rate coefficients of volcanic glass were derived from published experimental data, and calculated field weathering rate was compared with the rate estimated based on Sr isotope analysis. When BET surface area of sand fraction was regarded as mnieral surface area, the calculated rates fairly agreed with the estimate, suggesting that sand fraction surface area is a reasonable estimate of weatherable mineral surface area of volcanic soils. (2) In repeated leaching experiments, Al solubility of a number of Japanese soils was explained by a model which assumed complexation of Al to soil organic matters. Such an Al solubility model is more appropriate for predicting soil chemistry than apparent gibbsite dissolution equilibrium.
机译:研究了稳态土壤化学模型轮廓的适应,在以下两部分上计算了东亚土壤的临界载荷:(1)来自已公布的实验数据的火山玻璃溶出速率系数,并计算出现场风化率与基于SR同位素分析估计的速率进行了比较。当沙子级分的BET表面积被视为Mnieral表面积时,计算的速率与估计相当同意,表明砂级分表面是火山土壤的耐候矿物表面积的合理估计。 (2)在重复浸出实验中,通过假定Al络合到土壤有机物的模型来解释许多日本土壤的Al溶解度。这种Al溶解度模型更适合于预测土壤化学而不是明显的Gibbsite溶解平衡。

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