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Polyacrylamide and methylcellulose hydrogel as delivery vehicle for the controlled release of paraquat pesticide

机译:聚丙烯酰胺和甲基纤维素水凝胶作为百草枯农药控制释放的载体

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摘要

PAAm–MC hydrogels as a potential delivery vehicle for the controlled release of paraquat pesticide was investigated, as they play an essential role to use hydrogels in controlled release technology. The release kinetics of paraquat was determined using UV–Vis measurements. The release mechanism of paraquat from PAAm–MC hydrogels was investigated through a semi-empirical model proposed by Ritger and Peppas. In general, the initial rate of paraquat release was fast, decreasing after several days, hence indicating that paraquat on the surface (or close to) of hydrogels diffused rapidly after the initial swelling of the gel. Later, the cumulative release occurred in a very controlled and sustained manner, with the paraquat concentration maintaining constant from 15 to 46 days. The paraquat release capacity was dependent on the swelling of the matrix and the density of the network chains. The curves obtained from Peppas’s model presented good linearity (R 2 ≥ 0.999), indicating that such model can be applicable to analyze the systems. The n values for the pesticide release from hydrogels indicate that paraquat release has Fickian and non-Fickian diffusion, depending of hydrogel formulation. The values of k showed that the release of paraquat becomes slower when the MC and AAm concentration increases. Finally, to the best of our knowledge, we report a hydrogel-based vehicle (first carrier) that is able to prolong the sustained release of paraquat pesticide up to 45 days, which is essential for its application in controlled release systems.
机译:研究了PAAm-MC水凝胶作为百草枯农药控释的潜在载体,因为它们在控释技术中使用水凝胶起着至关重要的作用。百草枯的释放动力学是通过UV-Vis测量确定的。通过Ritger和Peppas提出的半经验模型研究了百草枯从PAAm-MC水凝胶中的释放机理。通常,百草枯的初始释放速度很快,几天后下降,因此表明水凝胶表面(或接近)的百草枯在凝胶初始溶胀后迅速扩散。之后,累积释放以非常可控和持续的方式发生,百草枯浓度在15到46天之间保持恒定。百草枯的释放能力取决于基质的溶胀和网络链的密度。从Peppas模型获得的曲线具有良好的线性(R 2 ≥0.999),表明该模型可用于分析系统。水凝胶中农药释放的n值表明百草枯的释放具有菲克和非菲克扩散,具体取决于水凝胶的配方。 k值表明,当MC和AAm浓度增加时,百草枯的释放变慢。最后,据我们所知,我们报告了一种基于水凝胶的载体(第一载体),该载体能够将百草枯农药的持续释放延长至45天,这对于将其应用于控释系统至关重要。

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