Kaewsarn Pairat
Chemosphere. 2002 Jun;47(10):1081-5. doi: 10.1016/s0045-6535(01)00324-1.
Biosorption of heavy metals can be an effective process for the removal and recovery of heavy metal ions from aqueous solutions. The biomass of marine algae has been reported to have high uptake capacities for a number of heavy metal ions. In this paper, the adsorption properties of a pre-treated biomass of marine algae Padina sp. for copper(II) were investigated. Equilibrium isotherms and kinetics were obtained from batch adsorption experiments. The biosorption capacities were solution pH dependent and the maximum capacity obtained was 0.80 mmol/g at a solution pH of about 5. The biosorption kinetics was found to be fast, with 90% of adsorption within 15 min and equilibrium reached at 30 min. The effects of light metal ions on copper(II) uptake were studied and the presence of light metal ions did not affect copper(II) uptake significantly. Fixed-bed breakthrough curves for copper(II) removal were also obtained. This study demonstrated that the pre-treated biomass of Padina sp. could be used as an effective biosorbent for the treatment of copper(II) containing wastewater streams.
生物吸附重金属是从水溶液中去除和回收重金属离子的有效方法。据报道,海藻生物质对多种重金属离子具有高吸附能力。本文研究了预处理后的海藻帕氏藻(Padina sp.)生物质对铜(II)的吸附特性。通过批量吸附实验获得了平衡等温线和动力学数据。生物吸附容量取决于溶液pH值,在溶液pH约为5时,最大吸附容量为0.80 mmol/g。发现生物吸附动力学很快,15分钟内吸附量达到90%,30分钟达到平衡。研究了轻金属离子对铜(II)吸附的影响,结果表明轻金属离子的存在对铜(II)吸附影响不显著。还获得了固定床去除铜(II)的穿透曲线。本研究表明,预处理后的帕氏藻生物质可作为处理含铜(II)废水的有效生物吸附剂。