Martins Ramiro J E, Pardo Rosana, Boaventura Rui A R
Department of Chemical Technology, Superior School of Technology, Polytechnic Institute of Bragança, Campus de Santa Apolónia, 5301-857 Bragança, Portugal.
Water Res. 2004 Feb;38(3):693-9. doi: 10.1016/j.watres.2003.10.013.
The biosorption of cadmium(II) and zinc(II) ions onto dried Fontinalis antipyretica, a widely spread aquatic moss, was studied under different values of temperature, initial pH and water hardness. The equilibrium was well described by Langmuir adsorption isotherms. Maximum biosorption capacity of cadmium was independent on temperature and averaged 28.0 mg g(-1) moss, whereas for zinc, capacity increased with temperature, from 11.5 mg g(-1) moss at 5 degrees C to 14.7 mg g(-1) moss at 30 degrees C. Optimum adsorption pH value was determined as 5.0 for both metal ions. Cadmium uptake was unaffected by the presence of calcium ions, but zinc sorption was improved when water hardness increased from 101.1 to 116.3 mg CaCO(3)l(-1). Inversely, as hardness increases, the competition with calcium ions strongly reduces the affinity of the biosorbent for zinc.
研究了在不同温度、初始pH值和水硬度条件下,镉(II)和锌(II)离子在广泛分布的水生苔藓——大羽藓干燥体上的生物吸附情况。Langmuir吸附等温线能很好地描述该平衡。镉的最大生物吸附容量与温度无关,平均为28.0 mg g⁻¹苔藓,而锌的容量随温度升高而增加,从5℃时的11.5 mg g⁻¹苔藓增加到30℃时的14.7 mg g⁻¹苔藓。两种金属离子的最佳吸附pH值均确定为5.0。镉的吸收不受钙离子存在的影响,但当水硬度从101.1 mg CaCO₃l⁻¹增加到116.3 mg CaCO₃l⁻¹时,锌的吸附得到改善。相反,随着硬度增加,与钙离子的竞争会强烈降低生物吸附剂对锌的亲和力。