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首页> 外文期刊>Materials transactions >Enhanced Cd(II) Uptake by the Bassanite Phase Contained in Waste Calcite Produced via the Carbonation of Flue Gas Desulfurization (FGD) Gypsum
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Enhanced Cd(II) Uptake by the Bassanite Phase Contained in Waste Calcite Produced via the Carbonation of Flue Gas Desulfurization (FGD) Gypsum

机译:烟道气脱硫石膏(FGD)碳化产生的方解石废料中的玄武岩相提高了对Cd(II)的吸收

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The uptake of Cd(II) by waste calcite, a by-product of the carbonation of flue gas desulfurization (FGD) gypsum, was investigated in a batch experiment. The uptake of Cd(II) by and the dissolution of Ca(II) from the waste calcite particles were monitored simultaneously as a function of exposure time to 0.89 mM Cd(JI) solution. The reagent-grade calcite particles were also examined for a comparative study. The waste calcite contamed bassanite, dolomite, and muscovite as the major impurity phases. X-ray diffraction study revealed that the bassanite phase dissolved almost completely during the 1st hour of the exposure to the solution while other phases were intact for two days. The amount of removed Cd(II) was found to be proportionally related to dissolved Ca(II) reflecting the exchange nature of the adsorption. The use of waste calcite instead of reagent-grade calcite enhanced Ca(II) dissolution and thereby Cd(II) uptake significantly. The waste calcite removed about 90% of initial Cd(II) while reagent calcite removed only 6% during the exposure for 2 days to 0.89 mM Cd(II) solution. The enhanced Ca(II) dissolution and Cd(II) uptake by the waste calcite were attributed to the fast-dissolving bassanite phase which provides the substantial quantity of Ca(II) and sulfate ions to the calcite/solution interface.
机译:在批处理实验中,研究了方解石废料对Cd(II)的吸收,废方解石是烟气脱硫(FGD)石膏碳酸化的副产物。同时监测了从方解石废料中Cd(II)的吸收和Ca(II)的溶解情况,作为对0.89 mM Cd(JI)溶液暴露时间的函数。还对试剂级方解石颗粒进行了比较研究。方解石废料污染了重晶石,白云石和白云母为主要杂质相。 X射线衍射研究表明,重晶石相在暴露于溶液的第一小时内几乎完全溶解,而其他相保持两天不变。发现去除的Cd(II)的量与溶解的Ca(II)成比例关系,反映了吸附的交换性质。使用废方解石代替试剂级方解石可提高Ca(II)的溶解度,从而显着吸收Cd(II)。方解石废料在暴露于0.89 mM Cd(II)2天的过程中,去除了约90%的初始Cd(II),而试剂方解石仅去除了6%。方解石废料对Ca(II)的溶解度和吸收Cd(II)的增加归因于快速溶解的重晶石相,该相向方解石/溶液界面提供了大量的Ca(II)和硫酸根离子。

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