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Adsorption of heavy metal with modified eggshell membrane and the in situ synthesis of Cu–Ag/modified eggshell membrane composites

机译:修饰的蛋壳膜对重金属的吸附及Cu-Ag /修饰的蛋壳膜复合材料的原位合成

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摘要

The objectives of this study were to remove heavy metals from wastewater through the biosorption method with modified biomass as an effective sorbent and to prepare metal/biomass composites with the same modified biomass as a direct template. Eggshell membrane (ESM) was selected and modified to adsorb heavy metals. Adsorption of metal ions on the modified ESM (MESM) might be attributed to electrostatic interaction, ion exchange and coordination effect with chelating ligands containing N and S on the surface of the MESM. The pH of the solution was a key factor affecting the adsorption. The Cu–Ag/MESM composites with uniform Cu–Ag NPs were prepared with MESM as matrices, and with Cu2+ and Ag+ adsorbed as metal sources. The Cu–Ag/MESM showed excellent catalytic performance in the reduction of 4-nitrophenol to 4-aminophenol in the aqueous phase. Because of the high stability of the Cu–Ag NPs supported on the macro-dimension supporter, Cu–Ag/MESM can be easily separated after the catalytic reaction and recycled.
机译:这项研究的目的是通过以改性生物质为有效吸附剂的生物吸附方法从废水中去除重金属,并制备具有与改性生物质相同的金属/生物质复合物作为直接模板的金属/生物质复合材料。选择蛋壳膜(ESM)并对其进行改性以吸附重金属。金属离子在修饰的ESM(MESM)上的吸附可能归因于静电相互作用,离子交换以及与MESM表面含有N和S的螯合配体的配位作用。溶液的pH是影响吸附的关键因素。以MESM为基质,以Cu 2 + 和Ag + 为金属源,制备了具有均匀Cu-Ag NPs的Cu-Ag / MESM复合材料。 Cu-Ag / MESM在水相中将4-硝基苯酚还原为4-氨基苯酚方面表现出出色的催化性能。由于支持在大尺寸载体上的Cu-Ag NPs的高稳定性,因此在催化反应后,Cu-Ag / MESM可以很容易地分离出来并回收利用。

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