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Removal of phosphate from solution by adsorption and precipitation of calcium phosphate onto monohydrocalcite

机译:通过吸附和沉淀磷酸钙到单氢方解石上去除溶液中的磷酸盐

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The sorption behavior and mechanism of phosphate on monohydrocalcite (CaCO _3{dot operator}H _2O: MHC) were examined using batch sorption experiments as a function of phosphate concentrations, ionic strengths, temperatures, and reaction times. The mode of PO _4 sorption is divisible into three processes depending on the phosphate loading. At low phosphate concentrations, phosphate is removed by coprecipitation of phosphate during the transformation of MHC to calcite. The sorption mode at the low-to-moderate phosphate concentrations is most likely an adsorption process because the sorption isotherm at the conditions can be fitted reasonably with the Langmuir equation. The rapid sorption kinetics at the conditions is also consistent with the adsorption reaction. The adsorption of phosphate on MHC depends strongly on ionic strength, but slightly on temperature. The maximum adsorption capacities of MHC obtained from the regression of the experimental data to the Langmuir equation are higher than those reported for stable calcium carbonate (calcite or aragonite) in any conditions. At high phosphate concentrations, the amount of sorption deviates from the Langmuir isotherm, which can fit the low-to-moderate phosphate concentrations. Speciation-saturation analyses of the reacted solutions at the conditions indicated that the solution compositions which deviate from the Langmuir equation are supersaturated with respect to a certain calcium phosphate. The obtained calcium phosphate is most likely amorphous calcium phosphate (Ca _3(PO _4) _2{dot operator}xH _2O). The formation of the calcium phosphate depends strongly on ionic strength, temperature, and reaction times. The solubility of MHC is higher than calcite and aragonite because of its metastability. Therefore, the higher solubility of MHC facilitates the formation of the calcium phosphates more than with calcite and aragonite.
机译:使用分批吸附实验,考察了磷酸盐在单氢方解石(CaCO _3 {H 2 O:MHC)上的吸附行为和机理,它是磷酸盐浓度,离子强度,温度和反应时间的函数。 PO _4吸附的方式可分为三个过程,具体取决于磷酸盐的负载量。在低磷酸盐浓度下,在MHC转化为方解石的过程中,通过磷酸盐的共沉淀去除磷酸盐。在低至中等磷酸盐浓度下的吸附模式最可能是吸附过程,因为在该条件下的吸附等温线可以合理地用Langmuir方程拟合。在该条件下的快速吸附动力学也与吸附反应一致。磷酸盐在MHC上的吸附在很大程度上取决于离子强度,但在一定程度上取决于温度。从实验数据回归Langmuir方程获得的MHC的最大吸附容量在任何条件下都高于稳定碳酸钙(方解石或文石)的报告容量。在高磷酸盐浓度下,吸附量会偏离Langmuir等温线,这可以适应低至中度的磷酸盐浓度。在一定条件下反应溶液的形态饱和分析表明,偏离朗缪尔方程的溶液组成相对于某种磷酸钙而言是过饱和的。所获得的磷酸钙最有可能是无定形磷酸钙(Ca _3(PO _4)_2 {点算子} xH _2O)。磷酸钙的形成主要取决于离子强度,温度和反应时间。由于MHC具有亚稳性,因此其溶解度高于方解石和文石。因此,与方解石和文石相比,MHC的较高溶解度更有助于磷酸钙的形成。

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