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Electrochemical vapor generation of selenium species after online photolysis and reduction by UV-irradiation under nano TiO2 photocatalysis and its application to selenium speciation by HPLC coupled with atomic fluorescence spectrometry

机译:纳米TiO2光催化在线光解和紫外辐照还原后硒物种的电化学蒸气生成及其在HPLC结合原子荧光光谱法测定硒形态中的应用

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摘要

An online UV photolysis and UV/TiO2 photocatalysis reduction device (UV-UV/TiO2 PCRD) and an electrochemical vapor generation (ECVG) cell have been used for the first time as an interface between high-performance liquid chromatography (HPLC) and atomic fluorescence spectrometry (AFS) for selenium speciation. The newly designed ECVG cell of approximately 115muL dead volume consists of a carbon fiber cathode and a platinum loop anode; the atomic hydrogen generated on the cathode was used to reduce selenium to vapor species for AFS determination. The noise was greatly reduced compared with that obtained by use of the UV-UV/TiO2 PCRD-KBH4-acid interface. The detection limits obtained for seleno-DL-cystine (SeCys), selenite (Se-IV), seleno- DL-methionine (SeMet), and selenate (Se-VI) were 2.1, 2.9, 4.3, and 3.5ng mL(-1), respectively. The proposed method was successfully applied to the speciation of selenium in water-soluble extracts of garlic shoots cultured with different selenium species. The results obtained suggested that UV-UV/TiO2 PCRD-ECVG should be an effective interface between HPLC and AFS for the speciation of elements amenable to vapor generation, and is superior to methods involving KBH4.
机译:在线紫外光解和UV / TiO2光催化还原设备(UV-UV / TiO2 PCRD)和电化学蒸汽发生(ECVG)单元首次用作高性能液相色谱(HPLC)和原子荧光之间的接口光谱法(AFS)进行硒形态分析。新设计的ECVG电池的死体积约为115μL,由碳纤维阴极和铂环阳极组成。阴极上产生的氢原子用于将硒还原成蒸气,用于AFS测定。与使用UV-UV / TiO2 PCRD-KBH4-酸界面获得的噪音相比,该噪音大大降低了。硒代DL-胱氨酸(SeCys),亚硒酸盐(Se-IV),硒代DL-蛋氨酸(SeMet)和硒酸盐(Se-VI)的检出限分别为2.1、2.9、4.3和3.5ng mL(- 1)。所提出的方法已成功地应用于不同硒物种培养的大蒜芽的水溶性提取物中硒的形态分析。获得的结果表明,UV-UV / TiO2 PCRD-ECVG应该是HPLC和AFS之间有效的界面,用于形成易于产生蒸气的元素,并且优于涉及KBH4的方法。

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