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Biosorption of cadmium by a lipid extraction residue of lipid-rich microalgae

机译:富含脂质萃取残留物的镉的生物吸附

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摘要

The present study investigates the performances and mechanisms of biosorption of cadmium (Cd) ions using a lipid extraction residue from three strains of lipid production microalgae. The adsorption performance was determined by batch biosorption experiments and kinetic modeling. The algae cell in the whole growth period and lipid extraction residue both exhibited desirable adsorption performance. The lipid extraction residue from the strain of Coelastrum sp. PTE-15 had the highest capacity of Cd sorption, which was 32.8 mg g ~(?1) . FTIR data suggested that the functional groups acting as binding sites on the microalgae surface which participate in biosorption were carboxylic, hydroxyl, and amino. The biosorption properties and maximum adsorption capacity of the lipid extraction residue from three microalgal strains were determined by equilibrium modeling. The adsorption process followed the Langmuir isotherm model with a high value of correlation coefficients (≥0.99) and biosorption capacity being estimated to be 36.1 mg g ~(?1) .
机译:本研究研究了使用来自三种脂质生产微藻的脂质萃取残留物的镉(Cd)离子的生物吸附的性能和机制。通过批量生物吸附实验和动力学建模确定吸附性能。整个生长期和脂质萃取残留物中的藻类细胞均表现出理想的吸附性能。 Coelastrum SP菌株的脂质提取残基。 PTE-15具有最高的CD吸附能力,为32.8mg g〜(?1)。 FTIR数据表明,作为参与生物吸附的微藻表面上的官能团作为结合位点是羧酸,羟基和氨基。通过平衡建模测定来自三种微藻菌株的脂质萃取残留物的生物吸附性和最大吸附能力。吸附过程遵循Langmuir等温模型,具有高值相关系数(≥0.99)和生物吸收估计为36.1mg g〜(α1)。

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