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基于纤维素的衍生纳米复合水凝胶对农药的吸附-解吸研究

Studies of the Sorption-Desorption of Pesticides from Cellulose-Based Derivative Nanocomposite Hydrogels.

作者信息

Tanaka Fabrício C, Yonezawa Uilian G, de Moura Marcia R, Aouada Fauze A

机构信息

Hybrid Composites and Nanocomposites Group (GCNH), School of Engineering, São Paulo State University (Unesp), Ilha Solteira 15385-007, SP, Brazil.

出版信息

Molecules. 2024 Oct 18;29(20):4932. doi: 10.3390/molecules29204932.

Abstract

This study analyzed the effect of cellulose derivatives, namely methylcellulose (MC) and carboxymethylcellulose (CMC), on the stability of zeolite in a polymeric solution that would synthesize a three-dimensional network of poly(methacrylic acid)-co-polyacrylamide (PMAA-co-PAAm). Additionally, it investigated the effect of pH on the release of paraquat (PQ) and difenzoquat (DFZ) herbicides. Similar to previous studies with hydrogels containing CMC, the presence of bi and trivalent salts, such as Ca and Al, also drastically reduced their swelling degree from 6.7 g/g in NaCl (0.15 mol·L) to 2.1 g/g in an AlCl solution (0.15 mol·L) for the MC nanocomposite. The viscosity results may suggest that the formation of a polysaccharide-zeolite complex contributed to the zeolite stabilization. As for the adsorption results, all samples adsorbed practically the entire concentration of both herbicides in an aqueous solution. Finally, it was also observed that the valence of the salts and molecular weight of the herbicide affect the release process, where DFZ was the herbicide with the highest concentration released. Both nanostructured hydrogels with CMC and MC exhibited lower release at pH = 7.0. These results demonstrated that a more in-depth evaluation of the phenomena involved in the application of these materials in controlled-release systems could help mitigate the impact caused by pesticides.

摘要

本研究分析了纤维素衍生物,即甲基纤维素(MC)和羧甲基纤维素(CMC),对沸石在聚合物溶液中稳定性的影响,该聚合物溶液将合成聚(甲基丙烯酸)-共-聚丙烯酰胺(PMAA-co-PAAm)的三维网络。此外,研究了pH对百草枯(PQ)和敌草快(DFZ)除草剂释放的影响。与先前对含CMC水凝胶的研究类似,二价和三价盐(如Ca和Al)的存在也显著降低了它们的溶胀度,对于MC纳米复合材料,其溶胀度从在NaCl(0.15 mol·L)中的6.7 g/g降至在AlCl溶液(0.15 mol·L)中的2.1 g/g。粘度结果可能表明多糖-沸石复合物的形成有助于沸石的稳定。至于吸附结果,所有样品几乎吸附了水溶液中两种除草剂的全部浓度。最后,还观察到盐的化合价和除草剂的分子量会影响释放过程,其中DFZ是释放浓度最高的除草剂。含CMC和MC的两种纳米结构水凝胶在pH = 7.0时均表现出较低的释放。这些结果表明,对这些材料在控释系统中应用所涉及现象进行更深入的评估有助于减轻农药造成的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f95/11510718/7ee394f7a38c/molecules-29-04932-g001.jpg

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