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Phosphate sorption on monohydrocalcite

机译:一水方解石上磷酸盐的吸附

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The sorption behavior and the mechanism of phosphate sorption on monohydrocalcite (CaCO_3 • H_2O; MHC) were analyzed on the basis of sorption isotherms corresponding to three Mg concentrations. MHC is known to be metastable, and it quickly transforms to calcite or aragonite. However, a small amount of phosphate (30 uM) can significantly inhibit the transformation of MHC. At low phosphate loading, the sorption isotherms obtained are Langmuir adsorption isotherms. The mode of phosphate sorption is most likely to be adsorption on MHC surface at the low phosphate loadings. The Langmuir parameters indicate that the mass basis sorption capacity of MHC is significantly higher than those of aragonite and calcite. At higher phosphate loadings, the slopes of the obtained isotherms rapidly increase and deviate from that of a Langmuir isotherm. The slopes of the isotherms for low Mg concentrations are higher than those for high Mg concentrations. It is well documented that Mg inhibits the formation of calcium phosphate minerals. The saturation calculations performed in this study showed that the reacted solutions become supersaturated with respect to amorphous calcium phosphate at corresponding high phosphate loadings. The mode of phosphate sorption at higher phosphate loadings is considered to correspond to the formation of secondary calcium phosphate minerals.
机译:在对应于三个Mg浓度的吸附等温线的基础上,分析了磷酸盐在单水方解石(CaCO_3•H_2O; MHC)上的吸附行为和吸附机理。众所周知,MHC是亚稳态的,并且会迅速转变为方解石或文石。但是,少量磷酸盐(30 uM)可以显着抑制MHC的转化。在低磷酸盐负载下,获得的吸附等温线是朗缪尔吸附等温线。磷酸盐的吸附方式最有可能是在低磷酸盐含量下吸附在MHC表面。 Langmuir参数表明,MHC的质量基准吸附能力明显高于文石和方解石。在较高的磷酸盐负荷下,所获得的等温线的斜率会迅速增加并偏离Langmuir等温线的斜率。低镁浓度的等温线的斜率高于高镁浓度的等温线的斜率。众所周知,镁可抑制磷酸钙矿物质的形成。在这项研究中进行的饱和度计算表明,在相应的高磷酸盐负载下,反应溶液相对于无定形磷酸钙而言变得过饱和。较高的磷酸盐负荷下磷酸盐的吸附方式被认为对应于次级磷酸钙矿物质的形成。

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