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BIOSORPTION OF COPPER, ZINC AND NICKEL BY GRAPE- STALKS AND CORK BIOMASSES

机译:铜,锌和镀镍的生物吸附葡萄茎和软木生物量

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The removal of copper, zinc and nickel from aqueous solutions by biosorption using grape-stalks and cork biomasses is reported. The adsorption isotherms were determined and the uptake capacity for copper with grape stalks and cork was, respectively, 19.9 mg/g and 16.5 mg/g, while for zinc was 18.3mg/g with grape stalks and 13.4 mg/g with cork and for nickel was 11.1 mg/g with cork. The kinetics of copper biosorption in both biomasses was studied and a second order model was fitted to the experimental data. Copper biosorption is a fast process and within the first 5 minutes 80% of the maximum capacity was attained. The calculated activation energy for the biosorption reaction of copper was 28+-3 KJ/mol for grape stalks and 6+-2 KJ/mol for cork biomass. These low values indicate that the metal diffusion inside the particles is the rate controlling step of the reaction.
机译:报道了使用葡萄秸秆和软木生物量的生物吸附从水溶液中除去铜,锌和镍。测定吸附等温线,分别为葡萄秸秆和软木的铜的摄取能力为19.9mg / g和16.5mg / g,而锌为18.3mg / g,用葡萄秸秆和13.4 mg / g配有软木塞和镍用软木塞11.1毫克/克。研究了两种生物质中铜生物吸附的动力学,并安装了第二阶模型。铜生物吸附是快速过程,在最大容量的前5分钟内达到最大容量。用于铜的生物吸收反应的计算的活化能量为葡萄秸秆和6 + -2 kJ / mol用于软木生物质的28±3 kJ / mol。这些低值表明颗粒内的金属扩散是反应的速率控制步骤。

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