Dipartimento di Scienze Ambientali Agrarie e Biotecnologie Agro-Alimentari, Sez. Chimica Agraria ed Ambientale, University of Sassari, Viale Italia 39, 07100 Sassari, Italy.
J Hazard Mater. 2010 Mar 15;175(1-3):172-8. doi: 10.1016/j.jhazmat.2009.09.145. Epub 2009 Oct 2.
In this study we evaluated the arsenate adsorption capacity of red muds (RM), wastes tailing from the alumina production, at different pH values (4, 7, and 10). RM samples were artificially enriched in batch tests with solutions containing increasing concentrations of As(V). The pH of the solution significantly affected the adsorption, which increased with the decrease of pH. Moreover a sequential extraction procedure [H(2)O; (NH(4))(2)SO(4); NH(4)H(2)PO(4); NH(4)(+)-oxalate; NH(4)(+)-oxalate+ascorbic acid] was applied to RM samples exchanged with arsenate. Using this approach it was shown that low concentrations of arsenate sorbed in RM were present as water soluble and exchangeable fractions, while NH(4)(+)-oxalate and NH(4)(+)-oxalate+ascorbic acid extracted most of the adsorbed arsenate from RM at different pH values. Besides, FT-IR spectroscopy was used to better understand the nature of RM surface configuration after As(V) sorption. In the FT-IR spectra the presence of As(V) species was highlighted by a well resolved band at 865 cm(-1). The intensity and broadness of this band increased at the decreasing of pH. This band could be related to nu(As-O) vibration of an inner-sphere Al-O-As complex and/or due to As-O bonds of the adsorbed As(V) species on Fe oxides of RM samples.
在这项研究中,我们评估了赤泥(RM),氧化铝生产的废物尾矿,在不同 pH 值(4、7 和 10)下对砷酸盐的吸附能力。RM 样品在批量试验中用含有不同浓度 As(V)的溶液人工富化。溶液的 pH 值显著影响吸附,随着 pH 值的降低而增加。此外,采用连续提取程序[H 2 O;(NH 4 )2 SO 4;NH 4 H 2 PO 4;NH 4 + -草酸盐;NH 4 + -草酸盐+抗坏血酸]对与砷酸盐交换的 RM 样品进行处理。使用这种方法表明,RM 中吸附的低浓度砷酸盐以水溶性和可交换的形式存在,而 NH 4 + -草酸盐和 NH 4 + -草酸盐+抗坏血酸在不同 pH 值下从 RM 中提取了大部分吸附的砷酸盐。此外,傅立叶变换红外光谱(FT-IR)被用于更好地理解 RM 表面构型在 As(V)吸附后的性质。在 FT-IR 光谱中,通过在 865 cm -1 处的一个很好分辨的带突出了 As(V)物种的存在。该带的强度和宽度随着 pH 值的降低而增加。该带可能与内球 Al-O-As 络合物的 nu(As-O)振动有关,或者与 RM 样品中铁氧化物上吸附的 As(V)物种的 As-O 键有关。