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Use of a coupled equilibrium model to describe the buffering of protons and hydroxyl ions in some acid soils

机译:使用耦合平衡模型来描述某些酸性土壤中质子和羟基离子的缓冲作用

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AbstractThe buffering of protons and hydroxyl ions in acid soils was studied by the addition of small amounts of HCl, H2SO4, and NaOH in consecutive batch experiments using surface soils and subsoils from two Cambisols and one Podzol. A chemical equilibrium model was used to study the main buffer processes. The model included inorganic complexation and multiple cation exchange, and also the solubility of jurbanite and Al(OH)3for the subsoils.Buffering of protons was predicted quite well by the model for the surface soil of the Spodi‐Dystric and Spodic Cambisols, suggesting that multiple cation exchange was the main buffer process. For the Podzol surface soil, however, the model overestimated proton buffering by cation exchange considerably. Hydroxyl buffering in acid surface soils could be described well by the model for the Podzol soil only. For the Cambisols, hydroxyl buffer reactions included not only cation exchange, but also solubilization of large amounts of organic matter and presumably deprotonation of dissolved organic carbon (DOC).Modelling proton and hydroxyl buffering in subsoils suggested that equilibrium with AJ(OH)3was not maintained for the Podzol and spodic Cambisol. Sulphate sorption had to be considered to describe titration experiments in all three soils. The assumption of jurbanite being in equilibrium with soil extracts was useful only for the Spodi‐Dystric Cambi
机译:摘要 以2个Cambisols和1个Podzol的表层土和底土为研究对象,在连续批次试验中加入少量HCl、H2SO4和NaOH对酸性土壤中质子和羟基离子的缓冲作用。采用化学平衡模型研究了主要缓冲过程。该模型包括无机络合和多重阳离子交换,以及jurbanite和Al(OH)3对底土的溶解度。Spodi-Dystric 和 Spodic Cambisols 表层土壤的模型很好地预测了质子的缓冲,表明多重阳离子交换是主要的缓冲过程。然而,对于Podzol表层土壤,该模型大大高估了阳离子交换对质子的缓冲作用。酸性表层土壤中的羟基缓冲只能用Podzol土壤的模型来描述。对于Cambisols,羟基缓冲反应不仅包括阳离子交换,还包括大量有机物的溶解和溶解有机碳(DOC)的去质子化。对底土中的质子和羟基缓冲进行建模表明,Podzol和spodic Cambisol没有保持与AJ(OH)3的平衡。必须考虑硫酸盐吸附来描述所有三种土壤中的滴定实验。jurbanite 与土壤提取物处于平衡状态的假设仅对 Spodi-Dystric Cambi 有用

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