首页> 外文期刊>Bulletin of the Korean Chemical Society >He-Polymer Microchip Plasma (PMP) System Incorporating a Gas-Liquid Separator for the Determination of Chlorine Levels in a Sanitizer Liquid
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He-Polymer Microchip Plasma (PMP) System Incorporating a Gas-Liquid Separator for the Determination of Chlorine Levels in a Sanitizer Liquid

机译:带有气液分离器的He-Polymer Microchip Plasma(PMP)系统,用于测定消毒液中的氯含量

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The authors describe an analytical method to determine total chlorine in a sanitizer liquid, incorporating a lab-made He-rf-plasma within a PDMS polymer microchip. Helium was used instead of Ar to produce a plasma to achieve efficient Cl excitation. A quartz tube 1 mm i.d. was embedded in the central channel of the polymer microchip to protect it from damage. Rotational temperature of the He-microchip plasma was in the range 1350-3600 K, as estimated from the spectrum of the OH radical. Chlorine was generated in a volatilization reaction vessel containing potassium permanganate in combination of sulfuric acid and then introduced into the polymer microchip plasma (PMP). Atomic emission lines of Cl at 438.2 nm and 837.7 nm were used for analysis; no emission was observed for Ar plasma. The achieved limit of detection was 0.81 レg mL-1 (rf powers of 30-70 W), which was sensitive enough to analyze sanitizers that typically contained 100-200 レg mL-1 of free chlorine in chlorinated water. This study demonstrates the usefulness of the devised PMP system in the food sciences and related industries.
机译:这组作者描述了一种确定消毒液中总氯的分析方法,该方法将实验室制造的He-rf血浆纳入PDMS聚合物微芯片中。使用氦气代替Ar产生等离子体以实现有效的Cl激发。内径1毫米的石英管将其嵌入聚合物微芯片的中央通道中以保护其免受损坏。根据OH自由基的光谱估计,He-微芯片等离子体的旋转温度在1350-3600 K的范围内。在含有高锰酸钾和硫酸的挥发反应容器中生成氯,然后将其引入聚合物微芯片等离子体(PMP)中。使用Cl在438.2 nm和837.7 nm的原子发射线进行分析;没有观察到Ar等离子体的发射。达到的检出限为0.81微克mL -1 (射频功率为30-70 W),足够灵敏以分析通常包含100-200微克mL -1的消毒剂氯化水中的游离氯。这项研究证明了设计的PMP系统在食品科学和相关行业中的有用性。

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