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恶霉灵在硅藻土上的吸附与释放动力学、平衡及热力学研究

Adsorption and Release Kinetics, Equilibrium, and Thermodynamic Studies of Hymexazol onto Diatomite.

作者信息

Liu Ying, Zhang Jian, Sheng Xueru, Li Na, Ping Qingwei

机构信息

Liaoning Key Laboratory of Pulp and Papermaking Engineering, Dalian Polytechnic University, Dalian 116034, Liaoning, China.

出版信息

ACS Omega. 2020 Nov 6;5(45):29504-29512. doi: 10.1021/acsomega.0c04449. eCollection 2020 Nov 17.

Abstract

Pesticide sustained-release agents have advantages of low toxicity, high efficiency, and long duration. However, the sustained-release effects were not ideal, such as short release time and low release rate. The physical and chemical properties of diatomite are high stability, high porosity, and good sustained-release and controlled-release abilities. A series of diatomite-based pesticide sustained-release agents were prepared by adsorbing hymexazol onto diatomite. Kinetics, equilibrium, and thermodynamic studies for adsorption were carried out as well. It was found that the modified diatomite has a better adsorption effect for hymexazol, and the adsorption rate reached 16.64%. The equilibrium data followed with the Langmuir isotherm model, and the adsorption process was an endothermic process. Release results showed that the diatomite-based pesticide has a significant sustained-release effect. The sustained-release time reached more than 25 days, and the maximum release rate was above 70%. The experimental data was fitted into the Ritger-Peppas equation, and it was found that the release was controlled by the Fick diffusion mechanism. This confirmed the applicability of the modified diatomite as an efficient adsorption carrier for pesticide release.

摘要

农药缓释剂具有低毒、高效、持效期长等优点。然而,其缓释效果并不理想,如释放时间短、释放速率低等。硅藻土的物理化学性质具有高稳定性、高孔隙率以及良好的缓释和控释能力。通过将恶霉灵吸附到硅藻土上制备了一系列基于硅藻土的农药缓释剂。同时还进行了吸附的动力学、平衡和热力学研究。结果发现,改性硅藻土对恶霉灵具有较好的吸附效果,吸附率达到16.64%。平衡数据符合朗缪尔等温线模型,且吸附过程为吸热过程。释放结果表明,基于硅藻土的农药具有显著的缓释效果。缓释时间达到25天以上,最大释放率高于70%。将实验数据拟合到Ritger-Peppas方程,发现释放受菲克扩散机制控制。这证实了改性硅藻土作为农药释放高效吸附载体的适用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7013/7675930/8229558b5621/ao0c04449_0002.jpg

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