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首页> 外文期刊>Analytica chimica acta >An improved colorimetric method for chlorine dioxide and chlorite ion in drinking water using lissamine green B and horseradish peroxidase
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An improved colorimetric method for chlorine dioxide and chlorite ion in drinking water using lissamine green B and horseradish peroxidase

机译:一种改进的比色法,可利用lissamine green B和辣根过氧化物酶测定饮用水中的二氧化氯和亚氯酸根离子

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摘要

Lissamine Green B (LGB) was carefully selected as a potential candidate for the development of a new U.S. Environmental Protection Agency (EPA) method that is intended for use at water utilities to determine chlorine dioxide (ClO_2) in drinking water. Chlorine dioxide reacts with LGB in aqueous solution to decrease the absorbance of LGB in direct proportion to the ClO_2 concentration. LGB was confirmed to have adequate sensitivity, and to suffer less interference than other dyes reported in the literature. The stoichiometry for the reaction between LGB and ClO_2 was found not to be 1:1 and is dependent on the LGB concentration. This required calibration of each LGB stock solution and prompted the investigation of alternate means of calibration, which utilized a horseradish peroxidase (HRP)-catalyzed conversion of chlorite ion (ClO_2~-) to ClO_2. This approach allowed the simultaneous determination of ClO_2~- concentration, which is also required each day at water plants that use ClO_2. Studies were conducted to characterize and carefully optimize the HRP-conversion of ClO_2~- to ClO_2 in order to yield reaction conditions that could be accomplished in less than 30 min at modest cost, yet meet EPA's sensitivity and robustness requirements for routine monitoring. An assessment of method detection limit, linearity and slope (or sensitivity), precision, and accuracy in finished drinking water matrices indicated that this approach was suitable for publication as EPA Method 327.0.
机译:精心选择了Lissamine Green B(LGB)作为开发新的美国环境保护署(EPA)方法的潜在候选者,该方法旨在用于水务事业中以确定饮用水中的二氧化氯(ClO_2)。二氧化氯与水溶液中的LGB反应,与LCl_2浓度成正比,从而降低LGB的吸光度。与文献中报道的其他染料相比,LGB被证实具有足够的敏感性,并且受到的干扰更少。发现LGB和ClO_2之间反应的化学计量比不是1∶1,并且取决于LGB浓度。这需要对每种LGB储备溶液进行校准,并促使人们研究替代校准方法,该方法利用辣根过氧化物酶(HRP)催化的亚氯酸根离子(ClO_2〜-)转化为ClO_2。这种方法可以同时测定ClO_2〜-的浓度,这在每天使用ClO_2的水厂中也需要。进行了研究以表征并仔细优化ClO_2〜-到ClO_2的HRP转化,以产生可在不到30分钟的时间内以适度的成本完成的反应条件,但仍满足EPA常规监测的灵敏度和耐用性要求。对方法检测限,线性度和斜率(或灵敏度),精密度和最终饮用水基质中的准确性的评估表明,该方法适合作为EPA方法327.0发布。

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