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Adsorption and Desorption Potential of Cadmium using Green Algae: Equilibrium and Kinetic Studies

机译:绿藻镉的吸附和解吸潜力:均衡和动力学研究

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Microalgae has a diversity of species found in freshwater bodies but only a few have been explored for their biosorption potential as compared to macro algae (sea weed). Equilibrium and kinetic experiments were used to estimate sorption capacity and rate of reaction respectively. Chloroidium saccharophilum had the highest sorption capacity (q_(max)) of 200 mg/g and lower affinity (b) of 0.0095 L/g for removal of Cd. However, Stichococcus bacillaris was the best adsorbent for Cd as it had both a higher max q and higher b of 125 and 0.049 L/g. The Langmuir and Pseudo-second order models performed better than the Freundlich and First-order models with a regression coefficient (R~2) > 0.9. Adsorption and desorption efficiency was achieved highest for Stichococcus bacillaris at 95.8% and 73.49% respectively.
机译:微藻具有在淡水体中发现的多样性,但与宏观藻类(海杂草)相比,只有少数人探索了它们的生物吸附潜力。平衡和动力学实验用于分别估计吸附能力和反应速率。下林糖醇具有200mg / g的最高吸附能力(Q_(最大)),较低的亲和(b)为0.0095L / g,用于去除CD。然而,嗜酸杆菌是Cd的最佳吸附剂,因为它具有125和0.049L / g的更高的最大Q和较高的B. Langmuir和伪二次订单模型比Freundlich和一阶模型更好,具有回归系数(R〜2)> 0.9。对于95.8%和73.49%的嗜孢素杆菌获得吸附和解吸效率。

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