首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Biosorption of platinum and palladium for their separation/preconcentration prior to graphite furnace atomic absorption spectrometric determination
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Biosorption of platinum and palladium for their separation/preconcentration prior to graphite furnace atomic absorption spectrometric determination

机译:在石墨炉原子吸收光谱法测定之前,铂和钯的生物吸附用于分离/预浓缩

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摘要

Inexpensive baker's year Saccharomyces cerevisiae and green algae Chlorella vulgaris, either free or immobilized on silica gel have been shown to selectively accumulate platinum and palladium from water samples in acidic medium (pH 1.6-1.8). Optimization of conditions of metals biosorption (sample pH, algae and yeast masses, adsorption time, temperature) was performed in batch mode. The propcedure of matrix separation based on biosorption of platinum and palladium on algae C.vulgaris covalently immobilized on silica gel in flow mode was developed. The procedure shows better reproducibility (<2%), improved efficiency of platinum retention on the column (93.3(+-)1.6%), is less laborious and less time consuming. The best recovery of biosorbed metals from column (87.7(+-)3.3% for platinum and 96.8 (+-) 1.1 for palladium) was obtained with solution of 0.3 mol l~(-1) thiourea in 1 mol l~(-1) hydrochloric acid. The influence of thiourea on analytical signals of examined metals during GFAAS determination is discussed. The procedure has been applied for spearation of noble metals from tap and waste water samples spiked with platinum and palladium.
机译:廉价的面包年酿酒酵母和绿藻小球藻(无论是游离的还是固定在硅胶上的)已显示出可以在酸性介质(pH 1.6-1.8)中选择性地积累水样中的铂和钯。以分批方式对金属生物吸附条件(样品的pH,藻类和酵母质量,吸附时间,温度)进行了优化。建立了基于铂和钯在水模式下共价固定在硅胶上的藻类C.vulgaris上生物吸附的基质分离程序。该方法显示出更好的重现性(<2%),提高了铂在色谱柱上的保留效率(93.3(±)1.6%),省力省时。用0.3 mol l〜(-1)硫脲在1 mol l〜(-1中的溶液)可以从色谱柱中获得最佳的生物吸附金属回收率(铂为87.7(+-)3.3%,钯为96.8(+-)1.1) )盐酸。讨论了在GFAAS测定过程中硫脲对被检金属分析信号的影响。该程序已应用于从掺有铂和钯的自来水和废水样品中喷出贵金属。

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