聚己内酯
水解
甲维盐
多杀菌素
化学
水溶液
毒性
色谱法
降级(电信)
生物降解
乳状液
控制释放
材料科学
生物化学
有机化学
杀虫剂
聚合物
生物
纳米技术
电信
计算机科学
农学
作者
Bin Bin Huang,Shao Fei Zhang,Peng Hao Chen,Gang Wu
标识
DOI:10.1038/s41598-017-11419-2
摘要
Abstract The dynamics of release and degradation of the microencapsulation formulation containing spinosad (SP) and emamectin benzoate (EM) were evaluated in the present study. SP and EM were microencapsulated using biodegradable poly-lactic acid (PLA) as the wall material. Their release from and degradation within the prepared SP and EM microspheres (SP-EM-microspheres) were studied. It was found that the encapsulation significantly prolonged the insecticide release. The release could be further extended if the external aqueous phase was pre-saturated with the insecticides and the microspheres were additionally coated with gelatin. On the other hand, increasing the water content of the emulsion or the hydrophilic polycaprolactone (PCL) content in the PLA/PCL mixture accelerated the release. Due to the photolysis and hydrolysis of SP and EM by sunlight, the toxicity of the non-encapsulated insecticides in water declined continuously from 0 through the 9thday (d), and dissipated in 13 d. In contrast, an aqueous suspension containing 5% SP-EM-microspheres maintained a mostly constant toxicity toPlutella xylostellafor 17 d. The biodegradable SP-EM-microspheres showed significantly higher long-term toxicity toP. xylostelladue to lower release, reduced photolysis and hydrolysis of the encapsulated insecticides, which were affected by the varied preparation conditions.
科研通智能强力驱动
Strongly Powered by AbleSci AI