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Application of hydrocyanic acid vapor generation via focused microwave radiation to the preparation of industrial effluent samples prior to free and total cyanide determinations by spectrophotometric flow injection analysis

机译:通过分光光度流动注射分析法测定游离氰和总氰化物之前,通过聚焦微波辐射产生氢氰酸蒸气在工业废水样品制备中的应用

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A sample preparation procedure for the quantitative determination of free and total cyanides in industrial effluents has been developed that involves hydrocyanic acid vapor generation via focused microwave radiation. Hydrocyanic acid vapor was generated from free cyanides using only 5 min of irradiation time (90 W power) and a purge time of 5 min. The HCN generated was absorbed into an accepting NaOH solution using very simple glassware apparatus that was appropriate for the microwave oven cavity. After that, the cyanide concentration was determined within 90 s using a well-known spectrophotometric flow injection analysis system. Total cyanide analysis required 15 min irradiation time (90 W power), as well as chemical conditions such as the presence of EDTA-acetate buffer solution or ascorbic acid, depending on the effluent to be analyzed (petroleum refinery or electroplating effluents, respectively). The detection limit was 0.018 mg CN l(-1) (quantification limit of 0.05 mg CN l(-1)), and the measured RSD was better than 8% for ten independent analyses of effluent samples (1.4 mg l(-1) cyanide). The accuracy of the procedure was assessed via analyte spiking (with free and complex cyanides) and by performing an independent sample analysis based on the standard methodology recommended by the APHA for comparison. The sample preparation procedure takes only 10 min for free and 20 min for total cyanide, making this procedure much faster than traditional methodologies (conventional heating and distillation), which are time-consuming (they require at least 1 h). Samples from oil (sour and stripping tower bottom waters) and electroplating effluents were analyzed successfully.
机译:已经开发了用于定量测定工业废水中游离氰化物和总氰化物的样品制备程序,该程序涉及通过聚焦微波辐射产生氢氰酸蒸气。仅用5分钟的照射时间(90 W功率)和5分钟的吹扫时间就可以从游离氰化物生成氢氰酸蒸气。使用非常适合微波炉腔体的非常简单的玻璃器皿设备,将生成的HCN吸收到可接受的NaOH溶液中。之后,使用众所周知的分光光度流动注射分析系统在90 s内确定氰化物浓度。总氰化物分析需要15分钟的照射时间(90 W功率),以及化学条件(例如EDTA-乙酸盐缓冲溶液或抗坏血酸的存在),具体取决于要分析的废水(分别为石油精炼厂或电镀厂的废水)。检出限为0.018 mg CN l(-1)(定量限为0.05 mg CN l(-1)),并且十次独立分析废水样品(1.4 mg l(-1)时测得的RSD优于8%。氰化物)。通过分析物掺入(含游离和复杂氰化物)并根据APHA推荐的标准方法进行独立的样品分析以进行比较,来评估该方法的准确性。样品前处理步骤免费花费10分钟,而总氰化物仅花费20分钟,这使该步骤比耗时(至少需要1小时)的传统方法(常规加热和蒸馏)快得多。成功地分析了石油(酸和汽提塔底水)和电镀废水中的样品。

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