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一种纳米结构材料,用于可靠地对饮用水、地表水和工业废水废水中的铬和锰进行形态分析。

A nano-structured material for reliable speciation of chromium and manganese in drinking waters, surface waters and industrial wastewater effluents.

机构信息

Department of Chemistry, Faculty of Sciences, Azarbaijan University of Tarbiat Moallem, 35 Km Tabriz-Marageh Road, P.O. Box 53714-161, Tabriz, Iran.

出版信息

Talanta. 2012 May 30;94:201-8. doi: 10.1016/j.talanta.2012.03.022. Epub 2012 Mar 18.

Abstract

A simple solid phase extraction system based on the applying the nickel-aluminum layered double hydroxide (Ni-Al LDH) as a nano-sorbent was developed for the speciation analysis of chromium and manganese by flame atomic absorption spectrometry (FAAS). The method is based on the fact that Cr(VI) and Mn(VII) oxyanions could be adsorbed on the Ni-Al(NO(3)(-)) LDH and/or exchanged with LDH interlayer NO(3)(-) ions at pH 6.0, whereas Cr(III) and Mn(II) cations pass through the LDH-packed column without retention. The determinations of total Cr and Mn, and hence indirectly Cr(III) and Mn(II), involve the pre-oxidations of Cr(III) and Mn(II) to Cr(VI) and Mn(VII) with H(2)O(2) and acidic solution of KIO(4), respectively. Several important factors affecting the retention efficiency were investigated and optimized. In the optimum experimental conditions, the limits of detection (3S(b)/m) for Cr(VI) and Mn(VII) were 0.51 and 0.47 ng mL(-1), and the relative standard deviations were 2.5 and 3.2% (C=30.0 ng mL(-1), n=6), respectively. The presented method was validated by the analysis of a certified reference material, and applied to the speciation of Cr and Mn in drinking waters, surface waters and industrial wastewater effluents.

摘要

建立了一种基于镍铝层状双氢氧化物(Ni-Al LDH)作为纳米吸附剂的固相萃取体系,用于火焰原子吸收光谱法(FAAS)对铬和锰的形态分析。该方法基于以下事实:Cr(VI) 和 Mn(VII) 含氧阴离子可以在 pH 6.0 下被吸附在 Ni-Al(NO(3)(-))LDH 上,或者与 LDH 层间的 NO(3)(-)离子交换,而 Cr(III) 和 Mn(II) 阳离子则不被保留而通过 LDH 填充柱。总 Cr 和 Mn 的测定,因此间接测定 Cr(III) 和 Mn(II),涉及 Cr(III)和 Mn(II)分别用 H(2)O(2)和 KIO(4)的酸性溶液预氧化为 Cr(VI)和 Mn(VII)。研究并优化了影响保留效率的几个重要因素。在最佳实验条件下,Cr(VI)和 Mn(VII)的检出限(3S(b)/m)分别为 0.51 和 0.47 ng mL(-1),相对标准偏差分别为 2.5%和 3.2%(C=30.0 ng mL(-1),n=6)。该方法通过对一种有证参考物质的分析进行了验证,并应用于饮用水、地表水和工业废水废水中的 Cr 和 Mn 的形态分析。

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