江定心, 徐汉虹, 杨晓云. 植物源农药印楝素微胶囊化工艺及防虫效果[J]. 农业工程学报, 2008, 24(2).
    引用本文: 江定心, 徐汉虹, 杨晓云. 植物源农药印楝素微胶囊化工艺及防虫效果[J]. 农业工程学报, 2008, 24(2).
    Jiang Dingxin, Xu Hanhong, Yang Xiaoyun. Technology for microencapsulations of botanical pesticide azadirachtin and its insecticidal effect[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2008, 24(2).
    Citation: Jiang Dingxin, Xu Hanhong, Yang Xiaoyun. Technology for microencapsulations of botanical pesticide azadirachtin and its insecticidal effect[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2008, 24(2).

    植物源农药印楝素微胶囊化工艺及防虫效果

    Technology for microencapsulations of botanical pesticide azadirachtin and its insecticidal effect

    • 摘要: 该试验采用界面聚合法,对植物源农药印楝素进行微胶囊化,并通过正交试验优化微胶囊制备的工艺条件,旨在提高印楝素的稳定性,延长其田间防虫持效期。结果表明:壁材采用3∶4(m∶m)的甲苯-2,4-二异氰酸酯(TDI)与六亚甲基四胺,芯材与壁材的配比为30∶7(m∶m),溶剂采用3∶2(m∶m)的乙酸乙酯和二甲苯混合溶剂比效适宜,微胶囊中印楝素的包埋率为(83.16±1.22)%。所制得的印楝素微胶囊剂通过盆栽试验表明,对昆虫具有较好的防治效果和较长的持效期。

       

      Abstract: The botanical pesticide azadirachtin was microencapsulated using interfacial polymerization. The technical conditions for azadirachtin microencapsulation were optimized by orthogonal experiment. Results show that the encapsulating yield of azadirachtin reaches(83.16±1.22)% under the following conditions: the ratio of toluene-2,4-diisocyanate(TDI) to hexamethylenetetramine was 3︰4(m∶m) as the wall materials, the proportion of azadirachtin dry powder to wall materials was 30︰7(m∶m), the ratio of ethyl acetate??to xylene was 3︰2(m∶m) as solvent, respectively. Pot culture experiment shows that the microencapsulated azadirachtin has good insecticidal effects with bioactivity and a long effective duration.

       

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