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Emulsifying conditions and processing parameters optimisation of kenaf seed oil-in-water nanoemulsions stabilised by ternary emulsifier mixtures

机译:通过三元乳化剂混合物稳定Kenaf籽油水纳米乳液的乳化条件和加工参数优化

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摘要

Kenaf (Hibiscus cannabinus L.) seed oil has been proven for its multi-pharmacological benefits; however, its poor water solubility and stability have limited its industrial applications. This study was aimed to further improve the stability of pre-developed kenaf seed oil-in-water nanoemulsions by using food-grade ternary emulsifiers. The effects of emulsifier concentration (1, 5, 10, 15% w/w), homogenisation pressure (16,000, 22,000, 28,000psi), and homogenisation cycles (three, four, five cycles) were studied to produce high stability of kenaf seed oil-in-water nanoemulsions using high pressure homogeniser. Generally, results showed that the emulsifier concentration and homogenisation conditions had great effect (p&0.05) on the particle sizes, polydispersity index and hence the physical stability of nanoemulsions. Homogenisation parameters at 28,000psi for three cycles produced the most stable homogeneous nanoemulsions that were below 130nm, below 0.16, and above -40mV of particle size, polydispersity index, and zeta potential, respectively. Field emission scanning electron microscopy micrograph showed that the optimised nanoemulsions had a good distribution within nano-range. The optimised nanoemulsions were proved to be physically stable for up to six weeks of storage at room temperature. The results from this study also provided valuable information in producing stable kenaf seed oil nanoemulsions for the future application in food and nutraceutical industries.
机译:Kenaf(芙蓉大麻L.)种子油已被证明是其多药理学效益;然而,其水溶解度和稳定性差具有限制其产业应用。本研究旨在通过使用食品级三元乳化剂进一步提高预发育的Kenaf籽油纳米乳液的稳定性。乳化剂浓度(1,5,11,15%w / w),均化压力(16,000,22,000,28,000psi)和均质循环(三,四,五个循环)的影响,以产生高稳定性的keanaf籽使用高压均化器的水包油纳米乳液。通常,结果表明,乳化剂浓度和均化条件具有很大的效果(P& 0.05),颗粒尺寸,多分散性指数并因此具有纳米乳液的物理稳定性。对于三个循环的28,000psi的均化参数产生最稳定的均匀纳米乳液,低于130nm,低于0.16,粒径高于-40mV,多分散指数和Zeta电位。场发射扫描电子显微镜显微镜显微镜显示优化的纳米乳液在纳米范围内具有良好的分布。证明优化的纳米乳液在室温下储存最多六周的储存。本研究的结果还提供了有价值的信息,用于生产稳定的Kenaf籽油纳米乳液,以便在食品和营养营养行业中的应用。

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