首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Biosorption of antimony and chromium species by Spirulina platensis and Phaseolus. Applications to bioextract antimony and chromium from natural and industrial waters
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Biosorption of antimony and chromium species by Spirulina platensis and Phaseolus. Applications to bioextract antimony and chromium from natural and industrial waters

机译:螺旋藻和菜豆对锑和铬的生物吸附。从天然和工业水中生物提取锑和铬的应用

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The ability of the two biological substrates, Spirulina platensis (a cyanobacterium) and Phaseolus (a plant-derived material) to accumulate Sb and Cr species (Sb-III, Sb-V, Cr-III and Cr-VI) was evaluated, Different parameters affecting accumulation were tested: pH, temperature, incubation time, amount of biomass and analyte, presence of foreign ions and the influence of the oxidation state, The experimental data were modeled using sorption isotherms and the corresponding sorption coefficients of each species were calculated for both substrates, S. platensis and Phaseolus were suitable for the accumulation of Sb and Cc species over a wide variety of experimental conditions and the accumulation depended on the oxidation state of the analyte, S, platensis was applied to preconcentrate Sb and Cr in river and sea-water samples. The detection limits of the electrothermal atomic absorption spectrometric procedures obtained for Sb in river water (preconcentration factor 4) and sea-water samples (preconcentration factor 40) were 0.9 and 0.09 pg l(-1) respectively, and those for Cr mere 0.1 mu g l(-1) (preconcentration factor 10) and 0.05 mu g l(-1) (preconcentration factor 20), respectively. The removal of chromium ions from a leather industrial waste water was also examined using this substrate. S. platensis was able to remove 97% of Cr from the waste water and therefore proved to be an alternative for the reclamation and remediation of contaminated waters. The vegetable substrate Phaseolus, is highly promising for speciation purposes at low analyte concentrations. [References: 15]
机译:评价了两种生物底物螺旋藻(蓝藻)和菜豆(植物来源的材料)积累Sb和Cr物种(Sb-III,Sb-V,Cr-III和Cr-VI)的能力。测试了影响积累的参数:pH,温度,孵育时间,生物量和分析物的量,外来离子的存在以及氧化态的影响,使用吸附等温线对实验数据进行建模,并计算了每种物质的相应吸附系数。在各种实验条件下,S。platensis和Phaseolus底物都适合于Sb和Cc物种的积累,其积累取决于分析物的氧化态,S,platensis用于在河流和河水中预浓缩Sb和Cr。海水样本。江水中Sb(预富集因子4)和海水样品(预富集因子40)中Sb的电热原子吸收光谱法的检出限分别为0.9和0.09 pg l(-1),而Cr仅为0.1μg gl(-1)(浓缩系数10)和0.05 mu gl(-1)(浓缩系数20)。还使用该基材检查了皮革工业废水中铬离子的去除情况。 S. platensis能够从废水中去除97%的Cr,因此被证明是污染水的再生和修复的替代方法。蔬菜底物菜豆在低分析物浓度下非常有希望用于物种形成。 [参考:15]

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