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Kinetic modelling of cadmium and lead removal by aquatic mosses

机译:水生苔藓去除镉和铅的动力学模型

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Because biosorption is a low cost and effective method for treating metal-bearing wastewaters, understanding the process kinetics is relevant for design purposes. In the present study, the performance of the aquatic moss Fontinalis antipyretica for removing cadmium and lead from simulated wastewaters has been evaluated. Five kinetic models (first-order, pseudo-first-order, Elovich, modified Ritchie second-order and pseudo-second-order) were fitted to the experimental data and compared. Previously, the effect of parameters such as the initial solution pH, contact time, and initial metal ion concentration on biosorption was investigated. The initial pH of the solution was found to have an optimum value in the range of 4.0-6.0. The equilibrium sorption capacity of cadmium and lead by Fontinalis antipyretica increased with the initial metal concentration. For an initial metal concentration of 10 mg L-1, the uptake capacity of the moss, at equilibrium, is the same for both metals (4.8 mg g-1). Nevertheless, when the initial concentration increases up to 100 mg L-1, the uptake of Pb(II) was higher than 78%. The pseudo-second order biosorption kinetics provided the better correlation with the experimental data (R2 ≥ 0.999).
机译:由于生物吸附是一种低成本且有效的处理含金属废水的方法,因此了解过程动力学与设计目的相关。在本研究中,已评估了水生苔藓丰产水的抗氧化性能,可从模拟废水中去除镉和铅。将五个动力学模型(一阶,伪一阶,Elovich,修改后的Ritchie二阶和伪二阶)拟合到实验数据并进行了比较。以前,研究了诸如初始溶液pH,接触时间和初始金属离子浓度等​​参数对生物吸附的影响。发现溶液的初始pH具有在4.0-6.0范围内的最佳值。 Fontinalis antipyretica对镉和铅的平衡吸附能力随初始金属浓度的增加而增加。当初始金属浓度为10 mg L-1时,两种金属在平衡状态下的苔藓吸收能力相同(4.8 mg g-1)。但是,当初始浓度增加到100 mg L-1时,对Pb(II)的吸收高于78%。拟二级生物吸附动力学与实验数据具有更好的相关性(R2≥0.999)。

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