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预测森林土壤中的硫酸盐吸附/解吸:扩展 Freundlich 方程的评估。

Predicting sulphate adsorption/desorption in forest soils: evaluation of an extended Freundlich equation.

机构信息

Department of Soil and Environment, Swedish University of Agricultural Sciences, Box 7014, 750 07 Uppsala, Sweden; Division of Land and Water Resources Engineering, KTH Royal Institute of Technology, Brinellvägen 28, 100 44 Stockholm, Sweden.

Division of Land and Water Resources Engineering, KTH Royal Institute of Technology, Brinellvägen 28, 100 44 Stockholm, Sweden.

出版信息

Chemosphere. 2015 Jan;119:83-89. doi: 10.1016/j.chemosphere.2014.05.067. Epub 2014 Jun 24.

Abstract

Sulphate adsorption and desorption can delay the response in soil acidity against changes in acid input. Here we evaluate the use of an extended Freundlich equation for predictions of pH-dependent SO4 adsorption and desorption in low-ionic strength soil systems. Five B horizons from Spodosols were subjected to batch equilibrations at low ionic strength at different pHs and dissolved SO4 concentrations. The proton coadsorption stoichiometry (η), i.e. the number of H(+) ions co-adsorbed for every adsorbed SO4(2)(-) ion, was close to 2 in four of five soils. This enabled the use of a Freundlich equation that involved only two adjustable parameters (the Freundlich coefficient KF and the non-ideality parameter m). With this model a satisfactory fit was obtained when only two data points were used for calibration. The root-mean square errors of log adsorbed SO4 ranged from 0.006 to 0.052. The model improves the possibility to consider SO4 adsorption/desorption processes correctly in dynamic soil chemistry models.

摘要

硫酸盐的吸附和解吸会延迟土壤酸度对酸输入变化的响应。在这里,我们评估了扩展的 Freundlich 方程在预测低离子强度土壤系统中 pH 依赖性 SO4 吸附和解吸中的应用。对来自 Spodosols 的五个 B 层在不同 pH 值和溶解 SO4 浓度下在低离子强度下进行批量平衡。质子共吸附化学计量比(η),即每吸附一个 SO4(2)(-)离子共吸附的 H(+)离子数,在五个土壤中的四个中接近 2。这使得可以使用仅涉及两个可调参数(Freundlich 系数 KF 和非理想参数 m)的 Freundlich 方程。使用该模型,仅使用两个校准数据点即可获得令人满意的拟合。吸附 SO4 的对数的均方根误差范围为 0.006 到 0.052。该模型提高了在动态土壤化学模型中正确考虑 SO4 吸附/解吸过程的可能性。

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