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Removal of nickel(II)ions from aqueous solution by biosorption in a fixed bed column:Experimental and theoretical breakthrough curves

机译:在固定床色谱柱中通过生物吸附去除水溶液中的镍(II)离子:实验和理论突破曲线

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The nickel(II)ions biosorption process by marine algae Sargassum filipendula in a fixed bed column was investigated for the following experimental conditions:temperature=30 deg C and pH 3.0.The experimental breakthrough curves were obtained for the following chosen flow rates 0.002,0.004,0.006,and 0.008 L/min.A mathematical model was developed to describe the nickel ion sorption in a fixed bed column.The model of three partial differential equations(PDE)has considered the hydrodynamics throughout the fixed bed column as well as the sorption process in the liquid and solid phases.The internal and external mass transfer limitations were considered,as well.The nickel ion sorption kinetics has been studied utilizing the Langmuir isotherm.The PDE of the system were discretized in the form of ordinary differential equations(ODE)and were solved for the given initial and boundary conditions using the finite volume method.A new correlation for external mass transfer coefficient was developed.Some of the model parameters were experimentally determined(epsilon,d_p)where the others such as(K_F,K_S)were evaluated on the base of experimental data parameters.The identification procedure was based on the least square statistical method.The robustness and flexibility of the developed model was checked out using four sets of experimental data and the predictive power of the model was evaluated to be good enough for the all studied cases.The developed model can be useful tool for nickel ion removal process optimization and design of fixed bed columns using biomass of S.filipendula as a sorbent.
机译:在以下实验条件下,研究了藻类海藻在固定床柱中对镍(II)离子的生物吸附过程:温度= 30摄氏度,pH值为3.0。在以下选定流量0.002,0.004下获得了实验突破曲线,0.006和0.008 L / min。建立了描述固定床塔中镍离子吸附的数学模型。三个偏微分方程(PDE)的模型考虑了整个固定床塔中的流体动力学以及吸附还考虑了内部和外部传质的局限性。利用Langmuir等温线研究了镍离子的吸附动力学。系统的PDE以常微分方程(ODE)形式离散化),并使用有限体积法求解给定的初始条件和边界条件。实验确定了模型参数中的ε(ε,d_p),其中其他参数(K_F,K_S)是根据实验数据参数进行评估的。辨识过程基于最小二乘统计方法。使用四组实验数据对开发的模型进行了检验,并对该模型的预测能力进行了评估,对于所有研究案例而言,该模型的预测能力都足够好。开发的模型可以作为镍离子去除工艺优化和固定床色谱柱设计的有用工具。使用沙门氏菌的生物质作为吸附剂。

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