Mohan Dinesh, Pittman Charles U, Steele Philip H
Department of Chemistry, Mississippi State University, Mississippi State, MS 39762, USA.
J Colloid Interface Sci. 2006 May 15;297(2):489-504. doi: 10.1016/j.jcis.2005.11.023. Epub 2005 Dec 20.
A new biosorbent for removing toxic metal ions from water/industrial wastewater has been investigated using by-product lignin from paper production. Lignin was extracted from black liquor waste, characterized and utilized for the removal of copper and cadmium from aqueous solutions in single, binary and multi-component systems. Adsorption studies were conducted at different temperatures, lignin particle sizes, pHs and solid to liquid ratios. All the studies were conducted by a batch method to determine equilibrium and kinetic parameters. The Langmuir and Freundlich isotherm models were applied. The Langmuir model fits best the equilibrium isotherm data. The maximum lignin adsorption capacities at 25 degrees C were 87.05 mg/g (1.37 mmol/g) and 137.14 mg/g (1.22 mmol/g) for Cu(II) and Cd(II), respectively. Adsorption of Cu2+ (68.63 mg/g at 10 degrees C and 94.68 mg/g at 40 degrees C) and Cd2+ (59.58 mg/g at 10 degrees C and 175.36 mg/g at 40 degrees C) increased with an increase in temperature. Copper and cadmium adsorption followed pseudo-second order rate kinetics. From kinetic studies, various rate and thermodynamic parameters such as effective diffusion coefficients, activation energy, and activation entropy were evaluated. Adsorption occurs through a particle diffusion mechanism at temperatures 10 and 25 degrees C while at 40 degrees C it occurs through a film diffusion mechanism. The sorption capacity of black liquor lignin is higher than many other adsorbents/carbons/biosorbents utilized for the removal of Cu(II) and Cd(II) from water/wastewater in single and multi-component systems.
人们利用造纸生产的副产物木质素,研究了一种用于从水/工业废水中去除有毒金属离子的新型生物吸附剂。木质素从黑液废料中提取,经表征后用于在单组分、双组分和多组分体系中从水溶液中去除铜和镉。在不同温度、木质素粒径、pH值和固液比条件下进行了吸附研究。所有研究均采用分批法进行,以确定平衡和动力学参数。应用了朗缪尔和弗伦德利希等温线模型。朗缪尔模型最符合平衡等温线数据。在25℃时,木质素对Cu(II)和Cd(II)的最大吸附容量分别为87.05 mg/g(1.37 mmol/g)和137.14 mg/g(1.22 mmol/g)。Cu2+(10℃时为68.63 mg/g,40℃时为94.68 mg/g)和Cd2+(10℃时为59.58 mg/g,40℃时为175.36 mg/g)的吸附量随温度升高而增加。铜和镉的吸附遵循准二级速率动力学。通过动力学研究,评估了各种速率和热力学参数,如有效扩散系数、活化能和活化熵。在10℃和25℃时,吸附通过颗粒扩散机制发生,而在40℃时,吸附通过膜扩散机制发生。在单组分和多组分体系中,黑液木质素对水/废水中Cu(II)和Cd(II)的吸附能力高于许多其他吸附剂/碳/生物吸附剂。