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海洋绿藻网胰藻在填充柱中对铜、钴和镍的生物吸附作用

Biosorption of copper, cobalt and nickel by marine green alga Ulva reticulata in a packed column.

作者信息

Vijayaraghavan K, Jegan J, Palanivelu K, Velan M

机构信息

Department of Chemical Engineering, Anna University, Alagappa College of Technology, Chennai 600 025, India.

出版信息

Chemosphere. 2005 Jul;60(3):419-26. doi: 10.1016/j.chemosphere.2004.12.016. Epub 2005 Jan 28.

Abstract

Biosorption of copper, cobalt and nickel by marine green alga Ulva reticulata were investigated in a packed bed up-flow column. The experiments were conducted to study the effect of important design parameters such as bed height and flow rate. At a bed height of 25 cm, the metal-uptake capacity of U. reticulata for copper, cobalt and nickel was found to be 56.3+/-0.24, 46.1+/-0.07 and 46.5+/-0.08 mgg(-1), respectively. The Bed Depth Service Time (BDST) model was used to analyze the experimental data. The computed sorption capacity per unit bed volume (N0) was 2580, 2245 and 1911 mgl(-1) for copper, cobalt and nickel, respectively. The rate constant (K(a)) was recorded as 0.063, 0.081 and 0.275 lmg(-1)h(-1) for copper, cobalt and nickel, respectively. In flow rate experiments, the results confirmed that the metal uptake capacity and the metal removal efficiency of U. reticulata decreased with increasing flow rate. The Thomas model was used to fit the column biosorption data at different flow rates and model constants were evaluated. The column regeneration studies were carried out for three sorption-desorption cycles. The elutant used for the regeneration of the biosorbent was 0.1 M CaCl2 at pH 3 adjusted using HCl. For all the metal ions, a decreased breakthrough time and an increased exhaustion time were observed as the regeneration cycles progressed, which also resulted in a broadened mass transfer zone. The pH variations during both sorption and desorption process have been reported.

摘要

在填充床上流式柱中研究了海洋绿藻网胰藻对铜、钴和镍的生物吸附。进行实验以研究床高和流速等重要设计参数的影响。在床高为25 cm时,发现网胰藻对铜、钴和镍的金属吸收容量分别为56.3±0.24、46.1±0.07和46.5±0.08 mg g⁻¹。使用床层深度服务时间(BDST)模型分析实验数据。计算得出,每单位床层体积对铜、钴和镍的吸附容量(N0)分别为2580、2245和1911 mg l⁻¹。铜、钴和镍的速率常数(K(a))分别记录为0.063、0.081和0.275 l mg⁻¹ h⁻¹。在流速实验中,结果证实网胰藻的金属吸收容量和金属去除效率随流速增加而降低。使用托马斯模型拟合不同流速下的柱生物吸附数据并评估模型常数。进行了三个吸附 - 解吸循环的柱再生研究。用于生物吸附剂再生的洗脱液是用HCl调节至pH 3的0.1 M CaCl2。对于所有金属离子,随着再生循环的进行,观察到穿透时间缩短,耗尽时间延长,这也导致传质区变宽。报告了吸附和解吸过程中的pH变化。

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