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A model to explain high values of pH in an alkali sodic soil

机译:用于解释碱土中高pH值的模型

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For alkali sodic soils (pH>8.5), the "hydrolysis of exchangeable sodium" has been used as a possible explanation for the alkalinity production and rise in pH of these soils. As an alternative to this hypothesis, a model was developed to simulate and to explain that the alkalinity production and rise in pH is possible in a soil that accumulates alkaline sodium salts and CaCO3. Several simulations were performed by using different combinations of CO2 partial pressures (P), presence or absence of MgCO3, along with experimental values of exchangeable sodium percentage (ESP) and ion concentrations in saturation extracts from an alkali sodic soil (named Pantanal). A hypothetical system with similar conditions to the Pantanal soil but with a Gapon selectivity coefficient (KG) of 0.01475 (mmol L-1)-1/2 was also considered. Good agreement was obtained between experimental and predicted values for pH and ion concentrations in the soil solution when the model (without MgCO3) was applied to the Pantanal soil. However, KG values calculated for the Pantanal soil were generally higher than 0.01475 (mmol L-1)-1/2. Moreover, high pH values and elevated ionic strength were obtained when a KG of 0.01475 (mmol L-1)-1/2 was used at high ESP (similar to those found in the Pantanal soil). KG values obtained for the Pantanal soil and the results obtained in the simulation of the hypothetical system are suggesting that a value higher than 0.01475 (mmol L-1)-1/2 should be used to adequately simulate the behavior of the Pantanal soil at low ionic strength and high ESP values.
机译:对于碱性钠盐土壤(pH> 8.5),“可交换钠的水解”已用作碱度产生和这些土壤pH升高的可能解释。作为该假设的替代方法,开发了一个模型来模拟和解释在积聚碱性钠盐和CaCO3的土壤中碱度产生和pH升高的可能性。通过使用不同的CO2分压(P),是否存在MgCO3以及可交换钠百分比(ESP)和来自碱性钠土(称为Pantanal)的饱和提取物中的离子浓度的实验值的组合,进行了一些模拟。假设系统的条件类似于潘塔纳尔土壤,但Gapon选择性系数(KG)为0.01475(mmol L-1)-1/2。当模型(不含MgCO3)应用于潘塔纳尔土壤时,在土壤溶液中的pH和离子浓度的实验值和预测值之间取得了良好的一致性。但是,潘塔纳尔土壤的KG值通常高于0.01475(mmol L-1)-1/2。此外,当在高ESP下使用0.01475(mmol L-1)-1/2的KG(类似于在潘塔纳尔土壤中发现的KG)时,可以获得较高的pH值和较高的离子强度。潘塔纳尔土壤的KG值和在假设系统的模拟中获得的结果表明,应使用大于0.01475(mmol L-1)-1/2的值来充分模拟潘塔纳尔土壤在低温下的行为。离子强度和高ESP值。

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