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一种酯化鸡蛋壳膜的绿色吸附剂,用于高选择性摄取砷酸盐和无机砷的形态分析。

A green sorbent of esterified egg-shell membrane for highly selective uptake of arsenate and speciation of inorganic arsenic.

机构信息

Research Center for Analytical Sciences, College of Sciences, Northeastern University, Box 332, Shenyang 110819, China.

出版信息

Talanta. 2013 Nov 15;116:688-94. doi: 10.1016/j.talanta.2013.07.061. Epub 2013 Jul 31.

Abstract

Egg-shell membrane (ESM) is a promising adsorbent for heavy metal uptake. However, carboxylic groups on ESM surface barrier arsenic adsorption. Herein, ESM is modified by esterification and the methyl esterified egg-shell membrane (MESM) possesses positive charge within pH 1-9. As a novel green sorbent material, MESM exhibits 200-fold improvement on sorption capacity of arsenate with respect to bare ESM. It presents an ultra-high selectivity of 256:1 toward arsenate against arsenite. At pH 6, 100% sorption efficiency is achieved for 2 μg L(-1) As(V) by 10 mg MESM, while virtually no adsorption of As(III) is observed. This provides great potential for selective sorption of arsenate in the presence of arsenite. By loading 4.0 mL sample within 0.05-5.00 μg L(-1) As(V) followed by elution with 300 μL HCl (1.5 mol L(-1)), a detection limit of 15 ng L(-1) is obtained along with a RSD of 3.5% at 0.5 μg L(-1). Total inorganic arsenic is achieved by converting As(III) to As(V) and following the same sorption process. This procedure is applied for arsenate determination and inorganic arsenic speciation in Hijiki and water samples. The results are confirmed by graphite furnace atomic absorption spectrometry and spiking recovery.

摘要

蛋壳膜(ESM)是一种很有前途的重金属吸附剂。然而,ESM 表面的羧酸基团会阻碍砷的吸附。在此,通过酯化反应对 ESM 进行改性,得到的甲基酯化蛋壳膜(MESM)在 pH 值 1-9 范围内带正电荷。作为一种新型的绿色吸附材料,MESM 对砷酸盐的吸附容量相对于原始 ESM 提高了 200 倍。它对砷酸盐表现出超高的选择性,对砷酸盐的选择性为 256:1。在 pH 值 6 时,仅需 10mg 的 MESM 就可实现 2μg/L 的 As(V)的 100%吸附效率,而几乎没有观察到 As(III)的吸附。这为在存在亚砷酸盐的情况下选择性吸附砷酸盐提供了巨大的潜力。通过在 0.05-5.00μg/L 的范围内加载 4.0mL 样品,然后用 300μL 1.5mol/L 的 HCl 洗脱,可以得到 15ng/L 的检测限,在 0.5μg/L 时的相对标准偏差为 3.5%。通过将 As(III)转化为 As(V)并采用相同的吸附过程,可以实现总无机砷的测定。该方法应用于昆布和水样中砷酸盐的测定和无机砷形态分析。结果通过石墨炉原子吸收光谱法和加标回收进行验证。

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