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Removal of Cr (VI) from Aqueous Solution by Acid Treated Fungal Biomass

机译:通过酸处理的真菌生物量从水溶液中除去Cr(VI)

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Biosorption of chromium (VI) ions from aqueous solution with fungal biomass Penicillium sp. was investigated in the batch system. The influence of contact time, solution pH, biosorbent concentration, initial concentration of Cr (VI) ions and temperature on biosorption capacity of Cr (VI) ions was studied. The uptake of Cr (VI) was highly pH dependent and the optimum pH for biosorption of Cr (VI) ions was found to be 2.0. Biosorption capacity of Cr (VI) ions decreased with increased biosorbent concentration and increased with increase in initial concentration of Cr (VI) ions. The experiment results also showed that high temperatures increased the biosorption capacity of Cr (VI) by fungal biomass. It was found that the biosorption equilibrium data were fitted very well to the kangmuir as well as to the Freundlich adsorption model. The maximum sorptive capacities obtained from the Langmuir equation at temperature of 20, 30 and 40°C were 25.91, 32.68 and 35.97 mg/g for Cr (VI) ions, respectively. The results of this study indicated that the fungal biomass of Penicillium sp. is a promising biosorbent for removal of chromium (VI) ions from the water.
机译:用真菌生物量Penicillium sp与水溶液中铬(VI)离子的生物吸附。在批处理系统中进行了研究。研究了接触时间,溶液pH,生物吸附剂浓度,Cr(VI)离子初始浓度和Cr(VI)离子的生物吸收能力的影响。 Cr(VI)的摄取依赖性高pH值,并且发现Cr(VI)离子的生物吸附的最佳pH值为2.0。 Cr(VI)离子的生物吸收能力随着生物吸附剂浓度的增加而降低,随着Cr(VI)离子的初始浓度的增加而增加。实验结果还表明,高温通过真菌生物量增加了Cr(vi)的生物吸收能力。发现生物吸附平衡数据非常适合于康马尔以及Freundlich吸附模型。对于Cr(VI)离子的温度为20,30和40℃温度的Langmuir方程获得的最大吸附能量分别为25.91,32.68和35.97mg / g。该研究的结果表明,青霉素SP的真菌生物量。是一种有前途的生物吸附剂,用于从水中除去铬(VI)离子。

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