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An environmentally friendly flow system for high-sensitivity spectrophotometric determination of free chlorine in natural waters

机译:高灵敏度分光光度法测定天然水中游离氯的环保流动系统

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摘要

A green and highly sensitive analytical procedure was developed for the determination of free chlorine in natural waters, based on the reaction with N,N-diethyl-p-phenylenediamine (DPD). The flow system was designed with solenoid micro-pumps in order to improve mixing conditions by pulsed flows and to minimize reagent consumption as well as waste generation. A 100-cm optical path flow cell based on a liquid core waveguide was employed to increase sensitivity. A linear response was observed within the range 10.0 to 100.0μgL~(-1), with the detection limit, coefficient of variation and sampling rate estimated as 6.8μgL~(-1) (99.7% confidence level), 0.9% (n=20) and 60 determinations per hour, respectively. The consumption of the most toxic reagent (DPD) was reduced 20,000-fold and 30-fold in comparison to the batch method and flow injection with continuous reagent addition, respectively. The results for natural and tap water samples agreed with those obtained by the reference batch spectrophotometric procedure at the 95% confidence level.
机译:基于与N,N-二乙基-对苯二胺(DPD)的反应,开发了一种绿色且高度灵敏的分析程序,用于测定天然水中的游离氯。流量系统设计有电磁微泵,目的是通过脉冲流改善混合条件,并最大程度地减少试剂消耗和废物产生。采用基于液芯波导的100 cm光程流通池来提高灵敏度。在10.0至100.0μgL〜(-1)范围内观察到线性响应,检出限,变异系数和采样率估计为6.8μgL〜(-1)(置信水平为99.7%),0.9%(n =每小时20个)和每小时60个确定。与分批方法和连续添加试剂的流动注射相比,毒性最高的试剂(DPD)的消耗分别减少了20,000倍和30倍。天然水和自来水样品的结果与参考批次分光光度法在95%置信水平下获得的结果一致。

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