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A novel algal-based sorbent for heavy metal removal

机译:一种基于藻类的重金属去除藻类吸附剂

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Two sorbents have been synthesized for the efficient removal of heavy metals (e.g., Pb(II), Cu(II), Cd(II), Zn(II) and Ni(II)) from aqueous solutions. Originally, the Alginate/PEI (A-PEI) sorbent containing calcium alginate (as an encapsulating matrix) and polyethylenimine derivatives was manufactured by using internal ionotropic gelation and tested in batch and continuous system. The introduction of Fucus vesiculosus alga improved this material by partially replacing the industrial alginate contained in the biosorbent; it provided a practical one-pot process for faster fabrication, and allowed the manufacturing of a novel environmentally-friendly material (Alginate/Fucus vesiculosus/PEI; AF-PEI). The sorbents have been compared in batch system and characterized using ESEM-EDX and FTIR analyses. The uptake kinetics data were modeled using pseudo-second order rate equation and the sorption isotherms were fitted using the Langmuir, Freundlich and Sips equations. Experimental data were better described with the Sips model and the sorption capacities followed the order: Pb (II) approximate to Cu(II) > Cd(II) approximate to Ni(II) > Zn(II) for A-PEI and Cu(II) > Pb(II) > Zn(II) approximate to Ni(II) > Cd(II) for AF-PEI. Among the synthesized beads, AF-PEI material had the highest sorption capacities for heavy metal removal (1.44 mmol g(-1) for Cu(II); 1.09 mmol g(-1) for Pb(II); 1.03 mmol g(-1) for Ni(II); 1.07 mmol g(-1) for Zn(II); 0.87 mmol g(-1) for Cd(II) at pH 4). The recycling of the sorbents was tested with 0.1 M HCl/0.05 M CaCl2 solution; the materials had a higher selectivity for Pb(II) and Cu(II), maintaining the removal efficiency over 70% and 40% for these species in five successive sorption-desorption cycles.
机译:已经合成了两种吸附剂,以有效地除去水溶液中的重金属(例如,Pb(II),Cu),Cd(II),Zn(II)和Ni(II))。最初,通过使用内部离子胶质凝胶化制造含有藻酸钙(作为包封基质)和聚对亚胺衍生物的藻酸盐/ PEI(A-PEI)吸附剂,并用批次和连续的系统测试。通过部分替代生物吸附剂中包含的工业藻酸盐,引入黄藻氏藻藻藻(Fucus Vesiculosus)藻类改善了这种材料;它提供了一种实用的单罐工艺,用于更快的制造,并允许制造一种新型环保材料(海藻酸盐/发病叶片/ PEI; AF-PEI)。在批量系统中比较了吸附剂,并使用ESEM-EDX和FTIR分析表征。使用伪二阶速率方程建模的摄取动力学数据,使用Langmuir,Freundlich和SIPS方程配合吸附等温。使用啜饮模型更好地描述了实验数据,并将其吸附能力遵循顺序:Pb(II)近似于Cu(II)> CD(II)近似于A-PEI和Cu的Ni(II)> Zn(II))( II)> Pb(II)> Zn(II)近似于AF-PEI的Ni(II)> CD(II)。在合成的珠子中,AF-PEI材料具有最高的金属去除吸附能力(1.44mmol g(-1)用于Cu(ii); 1.09mmol g(-1)Pb(ii); 1.03mmol g( - 1)对于Ni(II); 1.07mmol g(-1)用于Zn(ii); pH 4的CD(II)的0.87mmol g(-1))。用0.1M HCl / 0.05M CaCl 2溶液测试吸附剂的再循环;该材料对Pb(II)和Cu(II)具有更高的选择性,在五个连续吸附 - 解吸循环中,将去除效率超过70%和40%以上。

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