Department of Polymers, Faculty of Chemistry, University of Concepción, Casilla 160-C, Concepción, Chile.
Water Res. 2010 Nov;44(19):5730-9. doi: 10.1016/j.watres.2010.06.031. Epub 2010 Jun 25.
The retention capacity for arsenic species of new nanomaterials based on tin(II) inorganic oxides or hybrid (inorganic and organic) materials was studied. The synthesis of a polymer-metal complex was performed with poly(acrylic acid) and tin(II) chloride. Poly(AA)-Sn(II) with 10 and 20 wt% of tin and a structure with a mol ratio tin:carboxylate group of 1:1, were characterized. These compounds with 10 and 20 wt% of tin content were used to compare the arsenic removal capability through the liquid-phase polymer-based retention, (LPR), technique. Also, tin oxide was prepared by adding alkaline solution to tin(II) chloride salt. The intermediate tin compound was studied by UV-Vis spectroscopy at different pH values and quantified by potentiometric titration. The solid structure is characterized by Fourier transformed infrared spectroscopy, X-ray diffraction, and specific area BET (N(2)). Removal of arsenite and arsenate species from solution by hydrolysated tin was carried out by LPR technique with ultrafiltration membranes and a fixed-bed column unsupported or supported on SiO(2). In all these cases, a washing method at constant pH was applied. The arsenic retention ability depended on the class of tin compounds prepared, with a higher efficiency for arsenic being observed at basic pH for soluble complex poly(AA)-Sn(II) than that for tin hydroxide or hydrolysate of Sn(+2).
研究了基于二价锡无机氧化物或混合(无机和有机)材料的新型纳米材料对砷形态的保留能力。采用聚(丙烯酸)和二氯化锡合成了聚合物-金属配合物。聚(AA)-Sn(II)的锡含量为 10wt%和 20wt%,锡与羧酸盐基团的摩尔比为 1:1,对其进行了结构表征。使用含有 10wt%和 20wt%锡含量的这些化合物,通过液相聚合物保留(LPR)技术比较了去除砷的能力。此外,通过向二氯化锡盐中添加碱性溶液制备了氧化锡。通过在不同 pH 值下的紫外可见光谱研究了中间锡化合物,并通过电位滴定进行了定量。通过傅里叶变换红外光谱、X 射线衍射和比表面积 BET(N(2))对固体结构进行了表征。通过超滤膜和在 SiO(2)上无支撑或支撑的固定床柱,采用 LPR 技术,用水解锡从溶液中去除亚砷酸盐和砷酸盐。在所有这些情况下,都应用了在恒定 pH 值下进行的洗涤方法。砷的保留能力取决于所制备的锡化合物的类别,对于可溶性配合物聚(AA)-Sn(II),在碱性 pH 下对砷的去除效率高于氢氧化锡或 Sn(+2)的水解产物。