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A general model for prediction of BaSO4 and SrSO4 solubility in aqueous electrolyte solutions over a wide range of temperatures and pressures

机译:在各种温度和压力下预测BasO4和SRSO4溶解度的一般模型和水性电解质溶液

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The aqueous solubility of BaSO4 and SrSO4 in salt-containing solutions plays a crucial role in process industries and oilfield operations. Small variations in thermodynamic conditions result in precipitation and co-precipitation of these salts, mainly owing to their limited solubility in aqueous solutions. Understanding the environmental chemistry of BaSO4 and SrSO4 requires accurate knowledge of their solubility and thermodynamic behaviors. In this study, a general solubility prediction model based on a least square support vector machine and differential evolution algorithm was developed that is able to handle solubility predictions for BaSO4 in single Ksalt solutions containing NaCl, CaCl2, MgCl2, KCl, KBr, Na2SO4, and Na2B4O7, and for SrSO4 solubility, it can handle predictions for single, binary, and ternary salt solutions containing NaCl, CaCl2, and MgCl2 over a wide range of temperatures and pressures. Model predictions agree excellently with experimental measurements, yielding an overall correlation coefficient (R-2) of 0.9911 and an Average Absolute Error of 624%. A comparison of the general solubility prediction model with the Pitzer ion-interaction model revealed that both the models perform well in single salt solutions, while the Pitzer model fails to produce accurate solubility predictions when the aqueous system is extended to binary and ternary electrolyte mixtures. (C) 2019 Elsevier B.V. All rights reserved.
机译:含盐溶液中BasO4和SrSO4的水溶性在工艺行业和油田操作中起着至关重要的作用。热力学条件的小变化导致这些盐的沉淀和共沉淀,主要是由于它们在水溶液中的有限溶解度。了解Baso4和SRSO4的环境化学需要准确地了解它们的溶解度和热力学行为。在该研究中,开发了一种基于最小二乘支持向量机和差分演化算法的一般溶解度预测模型,其能够处理含有NaCl,CaCl 2,MgCl2,KCl,KBr,Na 2 SO 4的单ksalt溶液中BasO4的溶解性预测Na2B4O7和SRSO4溶解度,它可以处理含有NaCl,CaCl 2和MgCl2的单一,二元和三元盐溶液在各种温度和压力范围内的预测。模型预测达到实验测量的同意,总相关系数(R-2)为0.9911,平均绝对误差为624%。与Pitzer离子相互作用模型的一般溶解度预测模型的比较显示,两种模型在单一盐溶液中表现出良好,而Pitzer模型在含水系统延伸到二元和三元电解质混合物时不能产生精确的溶解度预测。 (c)2019 Elsevier B.v.保留所有权利。

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