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首页> 外文期刊>Engineering in Life Sciences >Biosorption of chromium(lll) by two brown algae Macrocystis pyrifera and Undaria pinnatifida: Equilibrium and kinetic study
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Biosorption of chromium(lll) by two brown algae Macrocystis pyrifera and Undaria pinnatifida: Equilibrium and kinetic study

机译:两个褐藻Macrocystis pyrifera和pindatifida的生物吸附铬(III)的平衡和动力学研究

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摘要

Two brown algae, Macrocystis pyrifera and Undaria pinnatifida, were employed to remove Cr(III) from aqueous solutions. Both seaweeds were characterized in terms of alginate yields. The alginate contents were 20 and 30% of the dry weight for M. pyrifera and U. pinnatifida, respectively. Kinetics experiments were carried out at different initial pH values. Cr(III) biosorption was affected by the solution pH. The highest metal uptake was found at pH 4 for both biosorbents. Different models were appliedto elucidate the rate-controlling mechanism: pseudo-first-order, pseudo-second-order, external mass transfer and intra-particle diffusion. The application of Langmuir, Freundlich and Dubinin-Radushkevich models to the equilibrium data showed a better fitting to the first model. The maximum Cr(III) sorption capacity (q_m) and the affinity coefficient (b) were very similar for both biosorbents: 0.77 mmol/g and 1.20L/mmol for M. pyrifera and 0.74mmol/g and 1.06L/mmol for U. pinnatifida. The free energy ofthe sorption process was estimated using the Dubinin-Radushkevich isotherm. The values indicate that the processes are chemical sorptions. To evaluate the significance of the ion-exchange mechanism, the light metals (Ca~(2+), Na~+, Mg~(2+) and K~+) and pH were measured during the experiments.
机译:两种褐藻,即Macrocystis pyrifera和pindatifida,用于从水溶液中去除Cr(III)。两种海藻均以藻酸盐产量为特征。萤火虫和pinnatifida的藻酸盐含量分别为干重的20%和30%。在不同的初始pH值下进行了动力学实验。 Cr(III)的生物吸附受溶液pH值的影响。在两种生物吸附剂的pH 4下,金属吸收量最高。应用了不同的模型来阐明速率控制机制:伪一级,伪二级,外部传质和粒子内扩散。 Langmuir,Freundlich和Dubinin-Radushkevich模型在平衡数据上的应用显示出对第一个模型的更好拟合。两种生物吸附剂的最大Cr(III)吸附容量(q_m)和亲和系数(b)极为相似:吡虫假单胞菌为0.77 mmol / g和1.20L / mmol,U为0.74mmol / g和1.06L / mmol pinnatifida。使用Dubinin-Radushkevich等温线估计吸附过程的自由能。该值表明该过程是化学吸附。为了评估离子交换机理的重要性,在实验过程中测量了轻金属(Ca〜(2 +),Na〜+,Mg〜(2+)和K〜+)和pH。

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