Herrero R, Lodeiro P, Rojo R, Ciorba A, Rodríguez P, Sastre de Vicente Manuel E
Departamento de Química Física e Ingeniería Química I, Universidad de A Coruña, Alejandro de la Sota 1, 15008 A Coruña, Spain.
Bioresour Technol. 2008 Jul;99(10):4138-46. doi: 10.1016/j.biortech.2007.08.065. Epub 2007 Oct 24.
This work reports the results of the study for cadmium binding by the dead red macroalga Mastocarpus stellatus. Kinetics sorption experiments demonstrated the high rate of metal biosorption: the system attained over 50% of the total biomass cadmium uptake within 2 min of contact and over 90% in the first 9 min. The kinetic data were successfully described by a pseudo-second order model with rate constants ranging from 1.06 to 10 gmmol(-1)min(-1), as a function of initial metal concentration and temperature. The equilibrium binding was accurately represented in terms of Langmuir and Langmuir-Freundlich models. The sorption isotherms at constant pH showed uptake values as 0.49 mmol g(-1) (at pH 2.4), 0.56 mmol g(-1) (at pH 4) and 0.59 mmol g(-1) (at pH 6), while the affinity constant values were between 0.6 and 5 mmol(-1) L (Langmuir fit). The acid-base properties of the alga were also studied, obtaining the total number of acid groups, 2.5 mmol g(-1), and their apparent pK value, 1.56, using the Katchalsky model. Desorption studies were conducted employing different HNO(3) concentrations and desorption times.
这项工作报道了对死亡的红色大型海藻星状团扇藻结合镉的研究结果。动力学吸附实验表明金属生物吸附速率很高:在接触2分钟内,该系统达到了总生物量镉吸收量的50%以上,在前9分钟内达到了90%以上。动力学数据通过伪二级模型成功描述,速率常数范围为1.06至10 gmmol(-1)min(-1),是初始金属浓度和温度的函数。平衡结合通过朗缪尔模型和朗缪尔-弗伦德里希模型准确表示。在恒定pH值下的吸附等温线显示,吸附值分别为0.49 mmol g(-1)(在pH 2.4时)、0.56 mmol g(-1)(在pH 4时)和0.59 mmol g(-1)(在pH 6时),而亲和常数在0.6至5 mmol(-1)L之间(朗缪尔拟合)。还研究了海藻的酸碱性质,使用卡查尔斯基模型得出酸基团总数为2.5 mmol g(-1),其表观pK值为1.56。采用不同的硝酸浓度和解吸时间进行了解吸研究。