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Biosorption of Heavy Metals by Dead Streptomyces fradiae

机译:死链霉菌对重金属的生物吸附

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Streptomyces fradiae dead biomass was found to adsorb different heavy metal ions. The biomass was crosslinked with glutaraldehyde for better mechanical stability. Batch sorption studies were carried out with Cu(II), Zn(II), Ni(II), and Pb(II) solutions (0.7 g/dm~3) at 20℃, pH 5.5. Best biosorption was reached for copper ions (16 mg/g). Fixed-bed biosorption of Cu(II) ions was investigated varying bed height of the biosorbent, flow rate, and initial copper concentration of the solution. Breakthrough and saturation times increase with the increase of the bed height. The same parameters decrease with the increase in flow rate and initial copper concentration. Metal uptake (q0) and the Thomas rate constant (K) were calculated. Column sorption was a more effective process for copper removal (q_0 =17.32 mg/g), compared with the batch sorption values. Regeneration of the exhausted biosorbent was carried out using 0.1 N HCl eluant. Six cycles of adsorption and desorption were performed to study the reusability of the biosorbent.
机译:发现弗拉迪链霉菌的死生物质能吸附不同的重金属离子。生物质与戊二醛交联以获得更好的机械稳定性。在20℃,pH 5.5下,用Cu(II),Zn(II),Ni(II)和Pb(II)溶液(0.7 g / dm〜3)进行批量吸附研究。铜离子(16 mg / g)达到最佳生物吸附。研究了固定床对Cu(II)离子的生物吸附,研究了生物吸附剂床层高度,流速和溶液初始铜浓度的变化。突破和饱和时间随床高的增加而增加。相同的参数随着流速和初始铜浓度的增加而降低。计算出金属吸收量(q0)和托马斯速率常数(K)。与分批吸附值相比,柱吸附是一种更有效的铜去除方法(q_0 = 17.32 mg / g)。使用0.1 N HCl洗脱液进行废生物吸附剂的再生。进行六个吸附和解吸循环以研究生物吸附剂的可重复使用性。

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