Gupta V K, Rastogi A
Department of Chemistry, Indian Institute of Technology Roorkee, Roorkee, India.
J Hazard Mater. 2008 May 1;153(1-2):759-66. doi: 10.1016/j.jhazmat.2007.09.021. Epub 2007 Sep 8.
The biosorption of cadmium(II) ions on Oedogonium sp. is studied in a batch system with respect to initial pH, algal dose, contact time and the temperature. The algal biomass exhibited the highest cadmium(II) uptake capacity at 25 degrees C, at the initial pH value of 5.0 in 55 min and at the initial cadmium(II) ion concentration of 200 mg L(-1). Biosorption capacity decreased from 88.9 to 80.4 mg g(-1) with an increase in temperature from 25 to 45 degrees C at this initial cadmium(II) concentration. Uptake kinetics follows the pseudo-second-order model and equilibrium is well described by Langmuir isotherm. Isotherms have been used to determine thermodynamic parameters of the process, viz., free energy change, enthalpy change and entropy change. FTIR analysis of algal biomass revealed the presence of amino, carboxyl, hydroxyl and carbonyl groups, which are responsible for biosorption of metal ions. Acid pretreatments did not substantially increase metal sorption capacity but alkali like NaOH pretreatment slightly enhanced the metal removal ability of the biomass. During repeated sorption/desorption cycles at the end of fifth cycle, Cd(II) sorption decreased by 18%, with 15-20% loss of biomass. Nevertheless, Oedogonium sp. appears to be a good sorbent for removing metal Cd(II) from aqueous phase.
在间歇系统中研究了鞘藻属对镉(II)离子的生物吸附,考察了初始pH值、藻类剂量、接触时间和温度等因素。在25℃、初始pH值为5.0、接触时间55分钟以及初始镉(II)离子浓度为200 mg L⁻¹的条件下,藻生物质表现出最高的镉(II)吸附能力。在此初始镉(II)浓度下,温度从25℃升高到45℃时,生物吸附容量从88.9 mg g⁻¹降至80.4 mg g⁻¹。吸附动力学符合准二级模型,Langmuir等温线能很好地描述吸附平衡。等温线已用于确定该过程的热力学参数,即自由能变化、焓变和熵变。对藻生物质的傅里叶变换红外光谱(FTIR)分析表明存在氨基、羧基、羟基和羰基,这些基团负责金属离子的生物吸附。酸预处理并未显著提高金属吸附容量,但NaOH等碱预处理略微增强了生物质的金属去除能力。在第五次循环结束时的重复吸附/解吸循环中,Cd(II)吸附量下降了18%,生物质损失了15 - 20%。尽管如此,鞘藻属似乎是从水相中去除金属Cd(II)的良好吸附剂。