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基于天然生物聚合物的多组分可生物降解水凝胶作为环境友好型包膜控释肥料:交联剂类型的影响。

Multicomponent biodegradable hydrogels based on natural biopolymers as environmentally coating membrane for slow-release fertilizers: Effect of crosslinker type.

机构信息

Laboratory of Advanced Polymer and Rubber Materials (APRM), Department of Chemistry and Center of Excellence for Innovation in Chemistry, Faculty of Science, Ubon Ratchathani University, Warin Chamrap, Ubon Ratchathani 34190, Thailand.

Department of Bioscience, Faculty of Science, Ubon Ratchathani University, Warin Chamrap, Ubon Ratchathani 34190, Thailand.

出版信息

Sci Total Environ. 2022 Oct 15;843:157050. doi: 10.1016/j.scitotenv.2022.157050. Epub 2022 Jun 30.

Abstract

This work aims to explore the suitable crosslinker type for synthesizing multicomponent biodegradable hydrogels of cassava starch (CSt) grafted with acrylic acid (AA) semi-interpenetrated by natural rubber (NR)/polyvinyl alcohol (PVA) blend (CSt-g-PAA/NR/PVA, CSB semi-IPN hydrogel) as coating membranes for slow-release urea fertilizers. Three crosslinker types (ethylene glycol dimethacrylate (EGDMA), glutaraldehyde (GA) and N,N'- methylene-bis-acrylamide (MBA)) were employed to investigate their influences on the properties of CSB semi-IPN hydrogels. The results revealed that the different crosslinkers clearly exhibited different water-retention capacity, biodegradation, slow release and plant growth performance of the CSB semi-IPN hydrogels. The CSB-G2 hydrogel (crosslinked with GA at 2 wt%) remained higher water-retention at 30 days (20.2 %), greater rate of degradation (1.37 %/day) and better biosafety (OD600 = 2.26) compared to CSB-M2 and CSB-E2 hydrogels. After urea pellets were coated by CSB hydrogels and wax layers (UCSBw formulation), the urea release rates from the UCSBw-M2, UCSBw-E2 and UCSBw-G2 formulations in 30 days were 67.7 %, 68.7 % and 78.3 %, respectively, corresponding well with swelling ratio and pore size. Besides, the UCSBw-G2 formulation yielded the greater plant growth performance (height, leaf length and product weight) than other two formulations and commercial fertilizer. In conclusion, GA is the suitable crosslinker for synthesizing the CSB-g-PAA/NR/PVA hydrogels with high water-retention, excellent biodegradation, less negative impact on environments, acceptable slow-release rate, good biosafety and reasonable price for slow-release fertilizers.

摘要

这项工作旨在探索合适的交联剂类型,以合成木薯淀粉(CSt)接枝丙烯酸(AA)的多组分可生物降解水凝胶,该水凝胶由天然橡胶(NR)/聚乙烯醇(PVA)共混物(CSt-g-PAA/NR/PVA,CSB 半互穿网络水凝胶)半互穿,作为控释尿素肥料的涂层膜。使用了三种交联剂类型(乙二醇二甲基丙烯酸酯(EGDMA)、戊二醛(GA)和 N,N'-亚甲基双丙烯酰胺(MBA))来研究它们对 CSB 半互穿网络水凝胶性能的影响。结果表明,不同的交联剂明显表现出 CSB 半互穿网络水凝胶不同的保水能力、生物降解性、缓释性能和植物生长性能。CSB-G2 水凝胶(用 2wt%GA 交联)在 30 天内保持较高的保水率(20.2%)、较高的降解速率(1.37%/天)和较好的生物安全性(OD600=2.26),优于 CSB-M2 和 CSB-E2 水凝胶。尿素颗粒用 CSB 水凝胶和蜡层(UCSBw 配方)涂覆后,UCSBw-M2、UCSBw-E2 和 UCSBw-G2 配方在 30 天内的尿素释放率分别为 67.7%、68.7%和 78.3%,与溶胀比和孔径相对应。此外,UCSBw-G2 配方比其他两种配方和商业肥料产生更大的植物生长性能(高度、叶长和产品重量)。总之,GA 是合成具有高保水率、优异生物降解性、对环境负面影响较小、释放速度可控、生物安全性好、价格合理的 CSB-g-PAA/NR/PVA 水凝胶的合适交联剂。

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