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首页> 外文期刊>Eurasian Soil Science >Dissolution of Gibbsite and Its Transformation to Taranakite Depending on the Concentration of Phosphate Anions in the Solution
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Dissolution of Gibbsite and Its Transformation to Taranakite Depending on the Concentration of Phosphate Anions in the Solution

机译:根据溶液中磷酸根离子的浓度,三水铝石的溶解及其向酒石的转化

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Structural changes of gibbsite at the binding of phosphate anions from NH4H2PO4 solutions of different concentrations (from 10(-6) to 2 mol P/L) have been studied using an X-ray diffractometer and an electron scanning microscope with a spectrometric microanalyzer. It has been shown that, beginning from a concentration of 10(-3) mol P/L, the binding of phosphate anions has been accompanied by the release of anionic aluminum-phosphate complexes into the liquid phase. The content of these complexes has increased with the phosphate solution concentration and the time of its contact with gibbsite. The treatment of gibbsite with a 1 M phosphate solution for two months has resulted in the pronounced dissolution of the gibbsite crystal surface, accompanied by the formation of ammonium taranakite (ammonium salt of complex aluminophosphoric acid). Successive changes in size and form of the initially formed ammonium taranakite crystal has occurred in a 2 M phosphate solution. The degradation of the layered structure of taranakite and the enrichment of degradation products with phosphorus and nitrogen have been revealed. The significant increase of the P/Al ratios in the degradation products compared to the corresponding ratio in the initially formed taranakite indicates the formation of new phosphate phases resulting from the transformation of taranakite under the impact of free phosphate anions in a high-concentration solution.
机译:使用X射线衍射仪和带光谱分析仪的电子扫描显微镜研究了不同浓度(从10(-6)到2 mol P / L)NH4H2PO4溶液中磷酸根阴离子结合时三水铝石的结构变化。已经显示,从浓度为10(-3)mol P / L开始,磷酸根阴离子的结合伴随着阴离子磷酸铝复合物释放到液相中。这些配合物的含量随着磷酸盐溶液浓度及其与三水铝石接触时间的增加而增加。用1 M磷酸盐溶液处理三水铝石两个月,使三水铝石晶体表面明显溶解,并形成酒石酸铵(复合铝磷酸铵盐)。在2 M磷酸盐溶液中,最初形成的钽钽铁矿晶体的尺寸和形式发生了连续变化。揭示了塔拉金石的层状结构的降解以及磷和氮对降解产物的富集。与最初形成的酒石中的相应比率相比,降解产物中P / Al比率的显着增加表明,在高浓度溶液中游离磷酸盐阴离子的作用下,酒石石的转化导致形成新的磷酸盐相。

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