首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Speciation of arsenic in a thermoacidophilic iron-oxidizing archaeon, Acidianus brierleyi, and its culture medium by inductively coupled plasma-optical emission spectroscopy combined with flow injection pretreatment using an anion-exchange mini-column
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Speciation of arsenic in a thermoacidophilic iron-oxidizing archaeon, Acidianus brierleyi, and its culture medium by inductively coupled plasma-optical emission spectroscopy combined with flow injection pretreatment using an anion-exchange mini-column

机译:电感耦合等离子体发射光谱结合阴离子交换小柱流动注射预处理技术在嗜热铁氧化古生细菌酸性嗜酸杆菌及其培养基中的砷形态

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摘要

The thermoacidophilic iron-oxidizing archaeon Acidianus brierleyi is a microorganism that could be useful in the removal of inorganic As from wastewater, because it simultaneously oxidizes As(III) and Fe(II) to As(V) and Fe(III) in an acidic culture medium, resulting in the immobilization of As(V) as FeAsO_4. To investigate the oxidation mechanism, speciation of the As species in both the cells and its culture media is an important issue. Here we describe the successive determination of As(III),As(V),and total As in A. brierleyi and its culture medium via a facile method based on inductively coupled plasma-optical emission spectroscopy (ICP-OES) with a flow injection pretreatment system using a mini-column packed with an anion-exchange resin. The flow-injection pretreatment system consisted of a syringe pump,a selection valve, and a switching valve, which were controlled by a personal computer. Sample solutions with the pH adjusted to 5 were flowed into the mini-column to retain the anionic As(V),whereas As(III) was introduced into ICP-OES with no adsorption on the mini-column due to its electrically neutral form. An acidic solution (1 M HNO_3) was then flowed into the mini-column to elute As(V) followed by ICP-OES measurement. The same sample was also subjected to ICP-OES without being passed through the mini-column in order to determine the total amounts of As(III) and As(V). The method was verified by comparing the results of the total As with the sum of As(III) and As(V). The calibration curves showed good linearity with limits of detection of 158,86,and 211 ppb for As(III),As(V),and total As, respectively. The method was successfully applicable to the determination of the As species contained in the pellets of A. brierleyi and their culture media. The results suggested that the oxidation of As(III) was influenced by the presence of Fe(II) in the culture medium, i.e., Fe(II) enhanced the oxidation of As(III) in A brierleyi. In addition, we found that no soluble As species was contained in the cell pellets and more than 60% of the As(III) in the culture medium was oxidized by A. brierleyi after a 6-day incubation.
机译:嗜热铁氧化古细菌Acidianus brierleyi是一种可用于去除废水中无机As的微生物,因为它同时在酸性环境中将As(III)和Fe(II)氧化为As(V)和Fe(III)。培养基,从而将As(V)固定为FeAsO_4。为了研究氧化机理,细胞及其培养基中砷物种的形态形成是一个重要的问题。在这里,我们描述了一种基于流动耦合电感耦合等离子体发射光谱法(ICP-OES)的简便方法连续测定A. brierleyi及其培养基中As(III),As(V)和总As预处理系统,该系统使用装有阴离子交换树脂的微型色谱柱。流动注射预处理系统由注射泵,选择阀和切换阀组成,由个人计算机控制。将pH值调节至5的样品溶液流入微型柱以保留阴离子As(V),而As(III)被引入ICP-OES中,由于其电中性形式而没有吸附在微型柱上。然后将酸性溶液(1 M HNO_3)流入小柱以洗脱As(V),然后进行ICP-OES测量。对同一样品也进行ICP-OES处理,而不经过微型色谱柱,以便确定As(III)和As(V)的总量。通过比较总As的结果与As(III)和As(V)的总和,验证了该方法。校准曲线显示出良好的线性,As(III),As(V)和总As的检出限分别为158,86和211 ppb。该方法已成功地应用于A. brierleyi颗粒及其培养基中As种类的测定。结果表明,培养基中Fe(II)的存在影响了As(III)的氧化,即Fe(II)增强了A brierleyi中As(III)的氧化。此外,我们发现细胞沉淀中不包含可溶性As物种,并且在培养6天后,培养基中超过60%的As(III)被Brierleyi氧化。

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