Preparation of Cu-CS@IN@MIL-100 (Fe) for controlled indoxacarb release and reduced non-target organism risks

恶二唑虫 棉铃虫 生物测定 杀虫剂 毒理 螯合作用 化学 毒性 核化学 控制释放 有机体 幼虫 生物 植物 药理学 农学 有机化学 生态学 古生物学
作者
Yongpan Shan,Yu Ma,Changcai Wu,Xiangliang Ren,Song Xiao,Dan Wang,Howard Hu,Xiaoyan Ma,Yan Ma
出处
期刊:Journal of environmental chemical engineering [Elsevier]
卷期号:11 (3): 109967-109967
标识
DOI:10.1016/j.jece.2023.109967
摘要

Control release of pesticides based on target plant characteristics is highly desirable for improving the effective utilization rate and reducing non-target organism risks. Here, the controlled release formulations ([email protected]@MIL-100 (Fe)) were successfully prepared by employing MIL-100 (Fe) as the carrier material, indoxacarb (IN) as the model pesticide, and chitosan (CS) as a coating to chelate copper ions by chemical crosslinking. The prepared [email protected]@MIL-100 (Fe) had an acceptable loading content (36.25 %). The introduction of CS and copper ions endowed it with sustained release properties under weak acidity conditions like cotton leaves. The laboratory bioassay experiments showed that [email protected]@MIL-100 (Fe) had practical good insecticidal activity (LC50 = 4.936 mg/L) in controlling Helicoverpa armigera larvae. For long-term control efficacy experiments, after 14 days of application, the [email protected]@MIL-100 (Fe) treatment (73 %) mortality of Helicoverpa armigera larvae was significantly higher than the 15 % indoxacarb suspension concentrates (SC) treatment (27 %). Moreover, [email protected]@MIL-100 (Fe) had no adverse effect on cottonseed germination and the acute toxicity to Chrysopa pallens larvae was significantly lower than IN SC. Therefore, MIL-100 (Fe) could be used as an ecological safety carrier for pesticide delivery to improve IN effective utilization and reduce non-target organism risks.
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