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Determination of Water-Soluble and Acid-Soluble Zinc in Soils by Flame Atomic Absorption Spectrometry after Cloud Point Extraction

机译:浊点萃取-火焰原子吸收光谱法测定土壤中的水溶性锌和酸性锌

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A cloud point extraction (CPE) procedure has been developed for the determination of water-soluble and acid-soluble zinc (Zn) in soils by flame atomic absorption spectrometry. Deionized water and 0.1 mol L-1 hydrochloric acid (HCl) were selected as extracting agents. In the proposed approach, 2-(5-bromo-2-pyridylazo)-5-diethylam-inophenol (5-Br-PADAP) was used as a chelating agent, and polyethylene glycol octyl phenyl ether (OP) was selected as the surfactant. Some factors including the pH of analytical solution, concentrations of the chelating agent and surfactant, equilibration temperature and time, and salt effect, which would affect the extraction efficiency and subsequent determination of Zn, were studied and optimized. Under the optimized conditions, the calibration graph was linear in the range of 5.0 × 10-3 to 0.5 μg mL-1, and preconcentration of 20 mL sample solution gave an enhancement factor of 25. The detection limit was 4.93 × 10-3 μg mL-1. Recoveries in the range of 95.0-110% were obtained. Some metal ions including iron (Fe2+), cobalt (Co2+), and manganese (Mn2+) would interfere with the determination of Zn. The interference from these ions can be eliminated using thiourea (0.5% w/v) and triethanolamine (0.5% w/v) as masking agents. The proposed method was applied to the determination of water-soluble and acid-soluble Zn in soils, which were collected from the suburbs of Zhengzhou, and satisfactory results were obtained. To have more understanding of the soils, we determined the total content of Zn in soils. The results showed that the water-soluble and acid-soluble Zn contents in different soils are not correlated with the total content. For example, the total content of Zn for the soil from a farm in north loop was very low, but the percentage of water-soluble Zn was very high.View full textDownload full textKeywords5-Br-PADAP, cloud point extraction, flame atomic absorption spectrometry, preconcentration, soilsRelated var addthis_config = { ui_cobrand: "Taylor & Francis Online", services_compact: "citeulike,netvibes,twitter,technorati,delicious,linkedin,facebook,stumbleupon,digg,google,more", pubid: "ra-4dff56cd6bb1830b" }; Add to shortlist Link Permalink http://dx.doi.org/10.1080/00103624.2012.708072
机译:已经开发了浊点萃取(CPE)程序,用于通过火焰原子吸收光谱法测定土壤中的水溶性锌和酸溶锌(Zn)。选择去离子水和0.1 mol L -1 盐酸(HCl)作为萃取剂。在该方法中,使用2-(5-溴-2-吡啶基偶氮)-5-二乙基氨基苯酚(5-Br-PADAP)作为螯合剂,并选择聚乙二醇辛基苯基醚(OP)作为表面活性剂。 。研究和优化了影响分析液pH,螯合剂和表面活性剂浓度,平衡温度和时间以及盐效应等因素,这些因素都会影响锌的提取效率和后续测定。在优化的条件下,校准图在5.0到10 -3 到0.5μgmL -1 的范围内是线性的,并且预浓缩20 mL样品溶液的增强因子为25。检出限为4.93×10 -3 μgmL -1 。回收率达到95.0-110%。某些金属离子,包括铁(Fe 2 + ),钴(Co 2 + )和锰(Mn 2 + )会干扰金属离子。锌的测定。使用硫脲(0.5%w / v)和三乙醇胺(0.5%w / v)作为掩蔽剂可以消除来自这些离子的干扰。该方法用于从郑州郊区采集的土壤中水溶性锌和酸性锌的测定,取得了满意的结果。为了更了解土壤,我们确定了土壤中锌的总含量。结果表明,不同土壤中水溶性和酸性Zn含量与总含量无关。例如,北环路一个农场的土壤中锌的总含量非常低,但水溶性锌的比例却很高。查看全文下载全文关键字5-Br-PADAP,浊点提取,火焰原子吸收光谱法,预浓缩,土壤“};添加到候选列表链接永久链接http://dx.doi.org/10.1080/00103624.2012.708072

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