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Process optimization and stability of d-limonene-in-water nanoemulsions prepared by ultrasonic emulsification using response surface methodology

机译:响应面法超声乳化制备d-柠檬烯-水纳米乳液的工艺优化和稳定性

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摘要

d-limonene in water nanoemulsion was prepared by ultrasonic emulsification using mixed surfactants of sorbitane trioleate and polyoxyethylene (20) oleyl ether. Investigation using response surface methodology revealed that 10% d-limonene nanoemulsions formed at S_0 ratio (d-limonene concentration to mixed surfactant concentration) 0.6-0.7 and applied power 18 W for 120 s had droplet size below 100 nm. The zeta potential of the nanoemulsion was approximately -20 mV at original pH 6.4, closed to zero around pH 4.0, and around -30 mV at pH 12.0. The main destabilization mechanism of the systems is Ostwald ripening. The ripening rate at 25 °C (0.39 m~3 s ~(-1) × 10~(29)) was lower than that at 4 °C (1.44 m~3 s~(-1) × 10~(29)), which was in agreement with the Lifshitz-Slezov-Wagner (LSW) theory. Despite of Ostwald ripening, the droplet size of d-limonene nanoemulsion remained stable after 8 weeks of storage.
机译:使用脱水山梨糖醇三油酸酯和聚氧乙烯(20)油基醚的混合表面活性剂,通过超声乳化法制备d-柠檬烯在水中的纳米乳液。使用响应表面方法进行的研究表明,在S_0比(d-柠檬烯浓度与混合表面活性剂浓度)为0.6-0.7且施加的功率为18 W的情况下,形成的10%d-柠檬烯纳米乳液的液滴尺寸低于100 nm。在原始pH 6.4时,纳米乳液的ζ电位约为-20 mV,在pH 4.0时接近零,在pH 12.0时接近-30 mV。系统的主要去稳定机制是奥斯特瓦尔德熟化。 25°C(0.39 m〜3 s〜(-1)×10〜(29))的成熟速率低于4°C(1.44 m〜3 s〜(-1)×10〜(29)的成熟速率。 ),这与Lifshitz-Slezov-Wagner(LSW)理论一致。尽管奥斯特瓦尔德熟化,但在储存8周后,d-柠檬烯纳米乳液的液滴尺寸仍保持稳定。

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