Eco-friendly controlled-release antifungal mulch films with carbendazim-loaded halloysite nanotubes

埃洛石 多菌灵 抗真菌 护根物 杀菌剂 环境友好型 化学 材料科学 植物 园艺 化学工程 生物 微生物学 复合材料 工程类 生态学
作者
Juan Li,Zitong Zhang,Yuan Zhang,Dongjie Zhang
出处
期刊:Industrial Crops and Products [Elsevier BV]
卷期号:226: 120745-120745 被引量:2
标识
DOI:10.1016/j.indcrop.2025.120745
摘要

Carbendazim (CBZ) is a highly effective benzimidazole fungicide; however, its excessive use poses significant risks to the environment and nontarget organisms. To mitigate this issue, in this study, we developed environmentally friendly antifungal mulch films that exhibited controlled CBZ release. The films were prepared using a tape-casting technique, incorporating 21.32 % CBZ-loaded halloysite nanotubes, ultramicrocrushed sorghum straw powder, corn starch, polyvinyl alcohol, and glycerol. This unique combination not only enhanced the environmental compatibility of the films but also leveraged the synergistic properties of the components. The resulting mulch films had excellent mechanical properties (maximum tensile load of 28.9 N) and barrier performance (water vapor transmission rate of 253.22 g/(m 2 ·d)), fully complying with the Chinese standard for biodegradable agricultural mulch films (GB/T 35795–2017). Additionally, the films demonstrated remarkable antifungal efficacy and controlled-release behavior, following a first-order release model with a cumulative release rate of 81.43 % CBZ over 18 d. The novelty of this study lies in the integration of CBZ-loaded halloysite nanotubes with a biodegradable matrix to develop multifunctional mulch films that combine antifungal performance, environmental protection, and agricultural sustainability. The controlled release of CBZ reduces its loss and excess release in soil, addressing pollution concerns and minimizing environmental risks. Thus, this study provides insight into the design of advanced agricultural materials that align with global sustainable development goals. • Antifungal mulch films for the controlled release of carbendazim were prepared. • The mechanical and barrier properties met the Chinese standard. • Excellent antifungal and controlled-release properties were achieved. • Carbendazim loss was reduced, thereby decreasing pollution. • The films will contribute to environmental protection and sustainable agriculture.
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