首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >Precipitate flotation-separation, speciation and hydride generation atomic absorption spectrometric determination of selenium(IV) in food stuffs
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Precipitate flotation-separation, speciation and hydride generation atomic absorption spectrometric determination of selenium(IV) in food stuffs

机译:沉淀浮选-形态和氢化物发生原子吸收光谱法测定食品中的硒(IV)

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摘要

A method for flotation and determination of selenium(IV) in foodstuffs using p-chlorophenylthiosemicarbazide (HCPT) was investigated. At pH similar to 2, selenium(IV) forms a 1: 1 reddish-brown precipitate with HCPT easily floated using oleic acid (HOL) surfactant. The separated complex was dissolved in 4 M HCl and diluted in 10-ml double-distilled water (DDW). Selenium(IV) content in the eluate was determined by hydride generation atomic absorption spectrometry (HG-AAS) at 196.4 nm using sodium borohydride. The HCPT-Se(IV) complexes formed in absence and presence of oleic acid were characterized by elemental analysis, mass and infrared spectral studies. The mode of chelation between Se(IV) and HCPT is proposed to be through S and N coordination. Interferences, on the flotation process, from various foreign ions were avoided by adding excess HCPT. The proposed flotation methodology was successfully applied to the analysis of selenium in real foodstuffs and natural water spiked with known amounts of Se(IV) with a preconcentration factor of 100 and a detection limit of 20 pg. Application was also extended to separate Se (IV) successfully from Se(VI) in their synthetic mixtures. The separation mechanism is proposed to be due to hydrogen bond formation between the COOH group of HOL and -NH of the HCPT-Se(IV) complex. (c) 2006 Elsevier B.V. All rights reserved.
机译:研究了一种使用对氯苯基硫代氨基脲(HCPT)浮选和测定食品中硒(IV)的方法。在类似于2的pH值下,硒(IV)形成1:1的红棕色沉淀,并带有HCPT,很容易使用油酸(HOL)表面活性剂漂浮。将分离的复合物溶于4 M HCl中,并在10 ml双蒸馏水(DDW)中稀释。使用硼氢化钠在196.4 nm处通过氢化物发生原子吸收光谱法(HG-AAS)测定洗脱液中的硒(IV)含量。在不存在和存在油酸的情况下形成的HCPT-Se(IV)络合物通过元素分析,质谱和红外光谱研究进行表征。提出Se(IV)与HCPT之间的螯合方式是通过S和N配位。通过添加过量的HCPT,避免了浮选过程中来自各种外来离子的干扰。所提出的浮选方法已成功应用于实际食品和天然水中硒的分析,其中硒中掺有已知量的Se(IV),预浓系数为100,检测极限为20 pg。应用范围也扩大了,从其合成混合物中成功地将Se(IV)与Se(VI)分离出来。提出该分离机理是由于HOL的COOH基团与HCPT-Se(IV)配合物的-NH之间形成氢键。 (c)2006 Elsevier B.V.保留所有权利。

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