Chaisuksant Y
Faculty of Science and Technology, Prince of Songkla University, Pattani Campus, Pattani 94000, Thailand.
Environ Technol. 2003 Dec;24(12):1501-8. doi: 10.1080/09593330309385695.
The cadmium (II) and copper (II) adsorption properties of chemically pretreated biomass of red marine alga Gracilaria fisheri were investigated. Batch equilibrium experiments showed that the maximum adsorption capacity values of the pretreated biomass for cadmium and copper were 0.63 and 0.72 mmol g(-1), respectively. The equilibrium data fitted well to the Langmuir isotherm model. The adsorption capacity increased as pH increased and reached a plateau at pH 4.0. The cadmium and copper uptake rates were rapid with 90% of the biosorption completed within 30 minutes. The presence of light metal ions (Na+, K+, Mg2+ and Ca2+) in solution had an insignificant effect on cadmium and copper sorption capacity. These findings indicate a positive potential for the biosorbent development with effective heavy metal removal capacity in the presence of light metal ions in waste streams by using the biomass of plentifully available red marine algae.
研究了化学预处理的红色海洋藻类费氏江蓠生物量对镉(II)和铜(II)的吸附特性。批次平衡实验表明,预处理生物量对镉和铜的最大吸附容量值分别为0.63和0.72 mmol g(-1)。平衡数据与朗缪尔等温线模型拟合良好。吸附容量随pH值升高而增加,并在pH 4.0时达到平稳状态。镉和铜的摄取速率很快,30分钟内90%的生物吸附即可完成。溶液中轻金属离子(Na+、K+、Mg2+和Ca2+)的存在对镉和铜的吸附容量影响不大。这些研究结果表明,利用大量可得的红色海洋藻类生物量开发在废物流中存在轻金属离子时具有有效重金属去除能力的生物吸附剂具有积极潜力。