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Preparation of biodiesel oil-in-water nanoemulsions by mixed surfactants for bifenthrin formulation

机译:联苯菊酯制剂用混合表面活性剂制备生物柴油水包油纳米乳液

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Although several approaches have been reported on the development of nanoemulsions over the last few years, studies on the formation of biodiesel nanoemulsions for bifenthrin formulation by the low-energy phase inversion composition (PIC) method are still scarce. Herein, the preparation of oil-in-water (O/W) nanoemulsions suitable for pesticide application has been achieved in biodiesel by dissolving a bifenthrin/mixture of a non-ionic surfactant (NP-6) and an anionic surfactant (ABSCa)/water system by the PIC method. The mechanism of the formation of bifenthrin nanoemulsions by dripping the water phase into the oil–surfactant phase was exemplified via the pseudo-ternary phase diagram. The effects of the mass ratio of NP-6 and ABSCa, mR _(OS) , stirring rate, the addition rate of water and the emulsification temperature on the mean droplet size of the nanoemulsion were investigated by dynamic light scattering (DLS). In addition, the interfacial tension and the contact angle of bifenthrin nanoemulsions for the spraying application were investigated. The insecticidal activity of bifenthrin nanoemulsions against cabbage maggots was further studied. Moreover, the emulsion stability of the bifenthrin nanoemulsions against Ostwald ripening behavior was evaluated, and the long-term stability of the bifenthrin formulation was studied by the HPLC method to assess the shelf life of the pesticide formulation. Experimental results showed that the optimum emulsification conditions for the mass ratio of NP-6 and ABSCa, mR _(OS) , stirring rate, the addition rate of water and the emulsification temperature were respectively 5/5, 1.4, 8000 rpm, 0.7 mL min ~(?1) and 25 °C. The bifenthrin nanoemulsion with low interfacial tension and contact angle, easy adsorption on plant leaf surfaces and good shelf life has great potential for use as a pesticide formulation.
机译:尽管在过去的几年中已经报道了几种开发纳米乳剂的方法,但是对于通过低能相转化组合物(PIC)方法形成联苯菊酯制剂的生物柴油纳米乳剂的研究仍然很少。在此,通过将联苯菊酯/非离子表面活性剂(NP-6)和阴离子表面活性剂(ABSCa)的混合物溶解在生物柴油中,已经实现了适用于农药应用的水包油(O / W)纳米乳剂的制备/水系统采用PIC方法。通过伪三元相图举例说明了通过将水相滴入油表面活性剂相而形成联苯菊酯纳米乳剂的机理。通过动态光散射(DLS)研究了NP-6和ABSCa的质量比,mR_(OS),搅拌速率,水的添加速率和乳化温度对纳米乳液平均液滴尺寸的影响。此外,还研究了联苯菊酯纳米乳液在喷涂中的界面张力和接触角。联苯菊酯纳米乳剂对白菜的杀虫活性进行了进一步研究。此外,评价联苯菊酯纳米乳剂对奥斯特瓦尔德熟化行为的乳液稳定性,并通过HPLC方法研究联苯菊酯制剂的长期稳定性以评估农药制剂的保存期限。实验结果表明,NP-6与ABSCa质量比,mR_(OS),搅拌速率,水添加速率和乳化温度的最佳乳化条件分别为5 / 5、1.4、8000 rpm,0.7 mL。 min〜(?1)和25°C。具有低界面张力和接触角,易于在植物叶片表面上吸附以及良好的保存期限的联苯菊酯纳米乳液具有用作农药制剂的巨大潜力。

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