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Thermodynamic modeling of phases equilibrium in aqueous systems to recover potassium chloride from natural brines

机译:从天然盐水中回收氯化钾的水系统中相平衡的热力学模型

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Chemical fertilizers, such as potassium chloride, ammonium nitrate and other chemical products like sodium hydroxide and soda ash are produced from electrolyte solutions or brines with a high content of soluble salts. Some of these products are manufactured by fractional crystallization, when several salts are separated as solid phases with high purity (>90%). Due to the large global demand for potassium fertilizers, a good knowledge about the compositions of salts and brines is helpful to design an effective process. A thermodynamic model based on Pitzer and Harvie's model was used to predict the composition of crystallized salts after water removal by forced evaporation and cooling from multicomponent solutions or brines. Initially, the salts’ solubilities in binary systems (NaCl–H2O, KCl–H2O and MgCl2–H2O) and ternary system (KCl–MgCl2–H2O) were calculated at 20°C and compared with literature data. Next, the model was compared to our experimental data on the quinary system NaCl–KCl–MgCl2–CaCl2–H2O system at 20°C. The Pitzer and Harvie's model represented well both the binary and ternary systems. Besides, for the quinary system the fit was good for brine densities up to 1350kg/m3. The models were used to estimate the chemical composition of the solutions and salts produced by fractional crystallization and in association with material balance to respond to issues related to the production rates in a solar pond containing several salts dissolved, for instance, NaCl, KCl, MgCl2 and CaCl2.
机译:化学肥料(例如氯化钾,硝酸铵)和其他化学产品(例如氢氧化钠和纯碱)是从电解质溶液或含高浓度可溶性盐的盐水中生产的。这些产品中的一些是通过分步结晶制造的,其中几种盐以高纯度(> 90%)固相分离。由于全球对钾肥的需求量很大,因此对盐和盐水成分的充分了解有助于设计有效的工艺。使用基于Pitzer和Harvie模型的热力学模型预测通过强制蒸发和从多组分溶液或盐水中冷却除去水后的结晶盐的组成。最初,在20°C下计算了盐在二元体系(NaCl-H2O,KCl-H2O和MgCl2-H2O)和三元体系(KCl-MgCl2-H2O)中的溶解度,并与文献数据进行了比较。接下来,将该模型与我们在20°C的五元体系NaCl–KCl–MgCl2–CaCl2–H2O系统上的实验数据进行比较。 Pitzer和Harvie的模型很好地表示了二元和三元系统。此外,对于五元体系,适合的密度最高为1350kg / m3的盐水。该模型用于估算由分步结晶产生的溶液和盐的化学成分,并与材料平衡相关联,以响应与包含几种溶解的盐(例如NaCl,KCl,MgCl2)的太阳能水池中的生产率相关的问题。和CaCl2。

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