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用于从水溶液中去除有机染料的磁性壳聚糖核壳网络的可持续发展

Sustainable Development of Magnetic Chitosan Core-Shell Network for the Removal of Organic Dyes from Aqueous Solutions.

作者信息

Rathinam Karthik, Kou Xinwei, Hobby Ralph, Panglisch Stefan

机构信息

Chair for Mechanical Process Engineering and Water Technology, University of Duisburg-Essen, Lotharstr. 1, 47057 Duisburg, Germany.

IWW Water Centre, Moritzstraße 26, 45476 Mülheim an der Ruhr, Germany.

出版信息

Materials (Basel). 2021 Dec 13;14(24):7701. doi: 10.3390/ma14247701.

Abstract

The wide use of alizarin red S (ARS), a typical anthraquinone dye, has led to its continued accumulation in the aquatic environment, which causes mutagenic and carcinogenic effects on organisms. Therefore, this study focused on the removal of ARS dye by adsorption onto a magnetic chitosan core-shell network (MCN). The successful synthesis of the MCN was confirmed by ATR-FTIR, SEM, and EDX analysis. The influence of several parameters on the removal of ARS dye by the MCN revealed that the adsorption process reached equilibrium after 60 min, pH played a major role, and electrostatic interactions dominated for the ARS dye removal under acidic conditions. The adsorption data were described well by the Langmuir isotherm and a pseudo-second order kinetic model. In addition to the preferable adsorption of hydrophobic dissolved organic matter (DOM) fractions onto the MCN, the electrostatic repulsive forces between the previously adsorbed DOM onto MCN and ARS dye resulted in lower ARS dye removal. Furthermore, the MCN could easily be regenerated and reused for up to at least five cycles with more than 70% of its original efficiency. Most importantly, the spent MCN was pyrolytically converted into N-doped magnetic carbon and used as an adsorbent for various dyes, thus establishing a waste-free adsorption process.

摘要

典型的蒽醌染料茜素红S(ARS)的广泛使用导致其在水生环境中持续积累,这会对生物体产生致突变和致癌作用。因此,本研究聚焦于通过吸附到磁性壳聚糖核壳网络(MCN)上来去除ARS染料。通过衰减全反射傅里叶变换红外光谱(ATR-FTIR)、扫描电子显微镜(SEM)和能谱分析(EDX)证实了MCN的成功合成。几个参数对MCN去除ARS染料的影响表明,吸附过程在60分钟后达到平衡,pH起主要作用,并且在酸性条件下,静电相互作用主导了ARS染料的去除。吸附数据用朗缪尔等温线和伪二级动力学模型能很好地描述。除了疏水性溶解有机物(DOM)组分在MCN上有较好的吸附外,先前吸附在MCN上的DOM与ARS染料之间的静电排斥力导致ARS染料去除率较低。此外,MCN可以很容易地再生并重复使用至少五个循环,其原始效率超过70%。最重要的是,用过的MCN通过热解转化为氮掺杂磁性碳,并用作各种染料的吸附剂,从而建立了一个无废物吸附过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/737e/8706649/f7909d0e354a/materials-14-07701-sch001.jpg

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