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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >On-line speciation analysis of inorganic arsenic in complex environmental aqueous samples by pervaporation sequential injection analysis
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On-line speciation analysis of inorganic arsenic in complex environmental aqueous samples by pervaporation sequential injection analysis

机译:全蒸发连续进样分析在线分析复杂环境水样中的无机砷

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摘要

A proof of concept of a novel pervaporation sequential injection (PSI) analysis method for automatic non-chromatographic speciation analysis of inorganic arsenic in complex aqueous samples is presented. The method is based on hydride generation of arsine followed by its on-line pervaporation-based membrane separation and CCD spectrophotometric detection. The concentrations of arsenite (As(III)) and arsenate (As(V)) are determined sequentially in a single sample zone. The leading section of the sample zone merges with a citric acid/citrate buffer solution (pH 4.5) for the selective reduction of As(III) to arsine while the trailing section of the sample zone merges with hydrochloric acid solution to allow the reduction of both As(III) and As(V) to arsine at pH lower than 1. Virtually identical analytical sensitivity is obtained for both As(III) and As(V) at this high acidity. The flow analyzer also accommodates in-line pH detector for monitoring of the acidity throughout the sample zone prior to hydride generation. Under optimal conditions the proposed PSI method is characterized by a limit of detection, linear calibration range and repeatability for As(III) of 22 μg L~(-1) (3s_(blank) level criterion), 50-1000 μg L~(-1) and 3.0% at the 500 μg L ~(-1) level and for As(V) of 51 μg L~(-1), 100-2000 μg L~(-1) and 2.6% at the 500 μg L~(-1) level, respectively. The method was validated with mixed As(III)/As(V) standard aqueous solutions and successfully applied to the determination of As(III) and As(V) in river water samples with elevated content of dissolved organic carbon and suspended particulate matter with no prior sample pretreatment. Excellent relative recoveries ranging from 98% to 104% were obtained for both As(III) and As(V).
机译:提出了一种新颖的全蒸发顺序进样(PSI)分析方法的概念证明,该方法可用于复杂水溶液样品中无机砷的自动非色谱形态分析。该方法基于的氢化物生成,然后基于在线全蒸发的膜分离和CCD分光光度法检测。在单个样品区中依次确定亚砷酸盐(As(III))和砷酸盐(As(V))的浓度。样品区的前段与柠檬酸/柠檬酸盐缓冲溶液(pH 4.5)合并,以选择性地将As(III)还原为砷化氢,而样品区的尾段与盐酸溶液合并,以使两者均降低在低于1的pH下,As(III)和As(V)对砷化氢的分析灵敏度几乎相同。流量分析仪还装有在线pH检测器,用于在生成氢化物之前监测整个样品区的酸度。在最佳条件下,所提出的PSI方法的特点是检测限,线性校准范围和As(III)的重复性为22μgL〜(-1)(3s_(空白)水平标准),50-1000μgL〜( -1)和在500μgL〜(-1)水平下为3.0%,对于As(V)为51μgL〜(-1),100-2000μgL〜(-1)和500%时为2.6% L〜(-1)电平。该方法已通过混合的As(III)/ As(V)标准水溶液进行了验证,并成功地用于测定水中溶解有机碳和悬浮颗粒物含量较高的河水中样品中的As(III)和As(V)。无需事先进行样品预处理。 As(III)和As(V)均具有98%至104%的出色相对回收率。

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