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Combination of interfacial reduction of hexavalent chromium and trivalent chromium immobilization on tin-functionalized hydroxyapatite materials

机译:六价铬和三价铬固定型对锡官能化羟基磷灰石材料的组合

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We present an ecofriendly hydroxyapatite (HAP) material functionalized with tin (Sn/HAP) for an efficient interfacial reduction of Cr(VI) to Cr(III).Tin was deposited on HAP at different concentrations (from 0.2 to 1.2 mmol/g) using colloidal or clear acid solutions of SnCl2. The morphological and structural properties of fresh and used Sn/HAP samples were determined (N-2 adsorption-desorption, transmission electron microscopy techniques, XRPD, XPS). Tests were per formed under various conditions: at different pH 3-7, inert or oxidant atmosphere, sample aging (up to 15 days).Sn/HAP samples prepared using colloidal acid solutions revealed the best performances in the reduction of Cr (VI) to Cr(III), carried out under mild conditions (40 degrees C in acidified solution) with initial concentration of Cr(VI) in the range from 25 to 50 ppm. Best removal of Cr(VI) (10 mg/g) was obtained by using a Sn-concentration of 0.65 mmol/g with complete adsorption of the formed Cr(III) at HAP surface. This finding was associated with higher Sn-dispersion (surface Sn, 9.4 at.%) compared to samples prepared from clear solutions (surface, Sn 7.7 at. %), as evidenced by HAADF-STEM/EDX and XPS analyses. Remarkably, tin was tightly retained on the HAP surface under reaction conditions (0.7% leaching), confirming the occurrence of Cr(VI) reduction at solid-liquid interphase.
机译:我们介绍了用锡(Sn / Hap)官能化的Ecofriendly羟基磷灰石(HAP)材料,用于将Cr(vi)的有效界面减少至Cr(III)。在不同浓度(0.2至1.2mmol / g)上沉积在Hap上的霉菌使用SnCl2的胶体或透明酸性溶液。测定新鲜和使用的Sn / Hap样品的形态和结构性质(N-2吸附 - 解吸,透射电子显微镜技术,XRPD,XPS)。在各种条件下形成测试:在不同的pH 3-7,惰性或氧化剂气氛中,使用胶体酸溶液制备的样品老化(最多15天).sn / hap样品在Cr(Vi)的还原中显示出最佳性能在Cr(III)中,在温和条件下进行(酸化溶液中40℃),初始浓度的Cr(VI)的浓度为25至50ppm。通过使用0.65mmol / g的Sn浓度,通过在Hap表面上完全吸附于所形成的Cr(III),得到最佳去除Cr(VI)(10mg / g)。与由透明溶液(表面,Sn 7.7在0.%)制备的样品相比,该发现与较高的Sn-分散体(表面Sn,9.4 at。%)相关。通过Haadf-step / EDX和XPS分析证明。值得注意的是,在反应条件下(0.7%浸出)在HAP表面上紧密地保留锡,确认在固液间的Cr(VI)降低的发生。

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