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Field method for the determination of hexavalent chromium by ultrasonication and strong anion exchange solid phase extraction

机译:超声和强阴离子交换固相萃取法测定六价铬的现场方法。

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A simple, fast, sensitive, and economical held method was developed and evaluated for the determination of hexavalent chromium (Cr-VI) in environmental and workplace air samples. By means of ultrasonic extraction in combination with a strong anion-exchange solid-phase extraction (SAE-SPE) technique, the filtration, isolation, and determination of Cr-VI in the presence of trivalent chromium (Cr-III) and potential interferents was achieved. The method entails (1) ultrasonication in basic ammonium buffer solution to extract Cr-VI from environmental matrixes; (2) SAE-SPE to separate Cr-VI from Cr-III and interferences; (3) elution/acidification of the eluate; (4) complexation of chromium with 1,5-diphenylcarbazide; and (5) spectrophotometric determination of the colored chromium-diphenylcarbazone complex. Several critical parameters were optimized in order to effect the extraction of both soluble (K2CrO4) and insoluble (PbCrO4) forms of Cr-VI without inducing Cr-III oxidation or Cr-VI reduction. The method allowed for the dissolution and purification of Cr-VI from environmental and workplace air sample matrixes for up to 24 samples simultaneously in less than 90 min (including ultrasonication). The results demonstrated that the method was simple, fast, quantitative, and sufficiently sensitive for the determination of occupational exposures of Cr-VI. The method is applicable for on-site monitoring of Cr-VI in environmental and industrial hygiene samples. [References: 40]
机译:开发了一种简单,快速,灵敏且经济的固定方法,并对测定环境和工作场所空气样品中的六价铬(Cr-VI)进行了评估。通过超声萃取结合强阴离子交换固相萃取(SAE-SPE)技术,可以在三价铬(Cr-III)和潜在干扰物存在下过滤,分离和测定Cr-VI。实现。该方法需要(1)在碱性铵缓冲溶液中超声处理以从环境基质中提取Cr-VI。 (2)SAE-SPE将六价铬与三价铬和干扰分开; (3)洗脱液的洗脱/酸化; (4)铬与1,5-二苯卡巴肼的络合; (5)分光光度法测定有色铬-二苯基卡巴zone络合物。优化了几个关键参数,以实现可溶(K2CrO4)和不溶(PbCrO4)形式的Cr-VI的提取,而不会引起Cr-III氧化或Cr-VI还原。该方法可在不到90分钟的时间内(包括超声处理)从环境和工作场所的空气样品基质中溶解和纯化Cr-VI多达24个样品。结果表明,该方法简单,快速,定量并且对测定Cr-VI的职业接触非常敏感。该方法适用于环境和工业卫生样品中六价铬的现场监测。 [参考:40]

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