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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Biomaterials cross-linked graphene oxide composite aerogel with a macro-nanoporous network structure for efficient Cr (VI) removal
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Biomaterials cross-linked graphene oxide composite aerogel with a macro-nanoporous network structure for efficient Cr (VI) removal

机译:生物材料交联石墨烯氧化物复合气凝胶,具有宏观纳米多孔网络结构,用于拆除高效CR(VI)

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摘要

Chitosan (CS) is an attractive bio-adsorbent in pollutant removal due to its environment-friendly properties and abundant adsorption sites. However, the weak mechanical properties and strong dissolubility in acidic conditions of CS hinder its wide application. Herein, a facile method was proposed to fabricate polydopamine (PDA) and CS cross-linked graphene oxide (GO) (GO/CS/PDA) composite aerogel for Cr (VI) removal. GO was cross-linked with CS, forming a reinforced and three-dimensional macroporous structure; the introduced PDA was simultaneously cross-linked with CS and GO, providing more abundant nanopores and active sites for Cr(VI) removal. Based on the batch experiment results, GO/CS/PDA exhibited an optimized mass ratio (1:20:2) of GO, CS, and PDA for the most effective Cr(VI) adsorption; the adsorption removal rate of Cr(VI) was pH dependent, with the highest removal rate at pH = 3.0. The pseudo-second-order kinetic and Freundlich models were more suitable for fitting the adsorption kinetics and adsorption isotherms, respectively, and the maximum adsorption capacity for GO/CS/PDA was 312.05 mgig at 298 K. Thermodynamics parameters indicated that the adsorption was a spontaneous and exothermic process. The excellent mechanical integrity and reusable adsorption performance of GO/CS/PDA promise the adsorbent with satisfactory reusability. (C) 2019 Elsevier B.V. All rights reserved.
机译:壳聚糖(CS)是一个有吸引力的生物吸附剂去除污染物,由于其环保性能和丰富的吸附位。然而,弱的机械性能和强溶解性在CS的酸性条件阻碍其广泛应用。在本文中,一个浅显的方法,提出了以制造聚多巴胺(PDA)和CS交联氧化石墨烯(GO)(GO / CS / PDA),用于Cr的复合气凝胶(VI)的去除。 GO用CS交联,形成了加强和三维孔结构;引入的PDA被同时CS和GO交联的,为铬(VI)的去除提供更丰富的纳米孔和活性位点。基于所述间歇实验结果,GO / CS / PDA表现出优化的质量比(1:20:2)GO,CS,和PDA的为最有效的Cr(VI)的吸附;铬(VI)的吸附去除率为pH依赖性的,在pH = 3.0的最高去除速率。伪二级动力学和Freundlich模型是更适合于分别装配吸附动力学和吸附等温线,和用于GO / CS / PDA的最大吸附容量为312.05 mgig在298K热力学参数表明,该吸附是一个自发放热过程。优良的机械完整性和GO / CS / PDA的可重复使用的吸附性能保证具有满意的可重用性的吸附剂。 (c)2019 Elsevier B.v.保留所有权利。

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