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环保且生物相容的交联羧甲基纤维素水凝胶作为用于环境应用中去除有机染料污染物的吸附剂。

Eco-friendly and biocompatible cross-linked carboxymethylcellulose hydrogels as adsorbents for the removal of organic dye pollutants for environmental applications.

作者信息

Capanema Nádia S V, Mansur Alexandra A P, Mansur Herman S, de Jesus Anderson C, Carvalho Sandhra M, Chagas Poliane, de Oliveira Luiz C

机构信息

a Center of Nanoscience, Nanotechnology and Innovation - CeNano2I, Department of Metallurgical and Materials Engineering , Federal University of Minas Gerais , Belo Horizonte, Minas Gerais , Brazil.

b Department of Chemistry , Federal University of Minas Gerais , Belo Horizonte , Minas Gerais , Brazil.

出版信息

Environ Technol. 2018 Nov;39(22):2856-2872. doi: 10.1080/09593330.2017.1367845. Epub 2017 Aug 28.

Abstract

In this study, new eco-friendly hydrogel adsorbents were synthesized based on carboxymethylcellulose (CMC, degree of substitution [DS] = 0.7) chemically cross-linked with citric acid (CA) using a green process in aqueous solution and applied for the adsorption of methylene blue (MB). Spectroscopic analyses demonstrated the mechanism of cross-linking through the reaction of hydroxyl functional groups from CMC with CA. These CMC hydrogels showed very distinct morphological features dependent on the extension of cross-linking and their nanomechanical properties were drastically increased by approximately 300% after cross-linking with 20% CA (e.g. elastic moduli from 80 ± 15 to 270 ± 50 MPa). Moreover, they were biocompatible using an in vitro cell viability assay in contact with human osteosarcoma-derived cells (SAOS) for 24 h. These CMC-based hydrogels exhibited adsorption efficiency above 90% (24 h) and maximum removal capacity of MB from 5 to 25 mg g depending on the dye concentration (from 100 to 500 mg L), which was used as the model cationic organic pollutant. The adsorption of process of MB was well-fit to the pseudo-second-order kinetics model. The desorption of MB by immersion in KCl solution (3 mol L, 24 h) showed a typical recovery efficiency of over 60% with conceivable reuse of these CMC-based hydrogels. Conversely, CMC hydrogels repelled methyl orange dye used as model anionic pollutant, proving the mechanism of adsorption by the formation of charged polyelectrolyte/dye complexes.

摘要

在本研究中,基于羧甲基纤维素(CMC,取代度[DS]=0.7)与柠檬酸(CA)在水溶液中通过绿色工艺进行化学交联,合成了新型环保水凝胶吸附剂,并将其应用于亚甲基蓝(MB)的吸附。光谱分析表明,CMC中的羟基官能团与CA反应实现了交联机理。这些CMC水凝胶表现出非常独特的形态特征,这取决于交联程度,并且在与20%的CA交联后,其纳米力学性能大幅提高了约300%(例如,弹性模量从80±15MPa提高到270±50MPa)。此外,通过与人类骨肉瘤衍生细胞(SAOS)接触24小时的体外细胞活力测定,证明它们具有生物相容性。这些基于CMC的水凝胶对作为模型阳离子有机污染物的MB的吸附效率在90%以上(24小时),最大去除容量为5至25mg/g,具体取决于染料浓度(从100至500mg/L)。MB的吸附过程很好地符合准二级动力学模型。通过浸入KCl溶液(3mol/L,24小时)对MB进行解吸,显示出典型的回收效率超过60%,这些基于CMC的水凝胶可以想象能够重复使用。相反,CMC水凝胶排斥用作模型阴离子污染物的甲基橙染料,证明了通过形成带电聚电解质/染料复合物进行吸附的机理。

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