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球形芽孢杆菌负载的Diaion SP - 850树脂对铜(II)、铅(II)、铁(III)和钴(II)的生物吸附作用

Biosorption of copper(II), lead(II), iron(III) and cobalt(II) on Bacillus sphaericus-loaded Diaion SP-850 resin.

作者信息

Tuzen Mustafa, Uluozlu Ozgur Dogan, Usta Canan, Soylak Mustafa

机构信息

Gaziosmanpasa University, Faculty of Science and Arts, Chemistry Department, 60250 Tokat, Turkey.

出版信息

Anal Chim Acta. 2007 Jan 9;581(2):241-6. doi: 10.1016/j.aca.2006.08.040. Epub 2006 Aug 26.

Abstract

The biosorption of copper(II), lead(II), iron(III) and cobalt(II) on Bacillus sphaericus-loaded Diaion SP-850 resin for preconcentration-separation of them have been investigated. The sorbed analytes on biosorbent were eluted by using 1 mol L(-1) HCl and analytes were determined by flame atomic absorption spectrometry. The influences of analytical parameters including amounts of pH, B. sphaericus, sample volume etc. on the quantitative recoveries of analytes were investigated. The effects of alkaline, earth alkaline ions and some metal ions on the retentions of the analytes on the biosorbent were also examined. Separation and preconcentration of Cu, Pb, Fe and Co ions from real samples was achieved quantitatively. The detection limits by 3 sigma for analyte ions were in the range of 0.20-0.75 microg L(-1) for aqueous samples and in the range of 2.5-9.4 ng g(-1) for solid samples. The validation of the procedure was performed by the analysis of the certified standard reference materials (NRCC-SLRS 4 Riverine Water, SRM 2711 Montana soil and GBW 07605 Tea). The presented method was applied to the determination of analyte ions in green tea, black tea, cultivated mushroom, boiled wheat, rice and soil samples with successfully results.

摘要

研究了负载球形芽孢杆菌的Diaion SP - 850树脂对铜(II)、铅(II)、铁(III)和钴(II)的生物吸附作用,用于对它们进行预富集分离。使用1 mol L⁻¹盐酸洗脱生物吸附剂上吸附的分析物,并用火焰原子吸收光谱法测定分析物。研究了分析参数如pH值、球形芽孢杆菌用量、样品体积等对分析物定量回收率的影响。还考察了碱金属、碱土金属离子和一些金属离子对分析物在生物吸附剂上保留的影响。实现了从实际样品中定量分离和预富集铜、铅、铁和钴离子。对于水样,分析物离子的3σ检测限在0.20 - 0.75 μg L⁻¹范围内;对于固体样品,检测限在2.5 - 9.4 ng g⁻¹范围内。通过分析有证标准参考物质(NRCC - SLRS 4河流水、SRM 2711蒙大拿土壤和GBW 07605茶叶)对该方法进行了验证。所提出的方法成功应用于绿茶、红茶、栽培蘑菇、煮小麦、大米和土壤样品中分析物离子的测定。

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