Department of Chemical and Materials Engineering, National Yunlin University of Science and Technology, Douliu, Yunlin, 64022, Taiwan.
Department of Chemical Engineering, National Taiwan University of Science and Technology, Taipei, 10607, Taiwan.
Appl Biochem Biotechnol. 2020 May;191(1):331-345. doi: 10.1007/s12010-019-03210-y. Epub 2019 Dec 18.
Insect-based biorefinery is seen as a potential alternative approach to manufacturing foods, feeds, and fuel because of the increasing demand for renewable and sustainable products. Insect oil and protein are the two major components that can be quantitatively obtained from insect farming. However, very few attempts have been conducted to utilize insect oil for the production of value-added products. In this study, the oil extracted from the black soldier fly (Hermetia illucens) larvae (BSFL) was used as a novel feedstock for preparing nano-emulsions. The nano-emulsions were prepared with BSFL oil, hydrogenated lecithin (HL), and d-α-tocopheryl polyethylene glycol 1000 succinate (TPGS) in water using pre-homogenization followed by ultrasonication. The morphology and the particle size of nano-emulsions were affected by ratios of HL to TPGS. Moreover, the nano-emulsions showed a nearly Newtonian liquid behavior and the presence of TPGS was able to improve the storage stability of HL nano-emulsions. The addition of TPGS could eliminate the phase transition region of HL nano-emulsions but did not provide a significant change for the molecular mobility in the HL nano-emulsions. In summary, the BSFL oil could be used as a renewable feedstock for formulating nano-emulsions from the aspect of high value-added applications and physicochemical characteristics of the nano-emulsions could be adjusted by the mixed surfactant ratio, surfactant to oil ratio, and oil content. Graphical Abstract The physicochemical characteristics and optimization of nano-emulsions based on black soldier fly larvae oil were investigated.
昆虫生物精炼被视为制造食品、饲料和燃料的一种潜在替代方法,因为对可再生和可持续产品的需求不断增加。昆虫油和蛋白质是从昆虫养殖中可以定量获得的两个主要成分。然而,很少有人尝试利用昆虫油生产高附加值产品。在这项研究中,从黑水虻(Hermetia illucens)幼虫(BSFL)中提取的油被用作制备纳米乳液的新型原料。纳米乳液是用水通过预均质化然后超声处理,由 BSFL 油、氢化卵磷脂(HL)和生育酚聚乙二醇 1000 琥珀酸酯(TPGS)制备而成。HL 与 TPGS 的比例影响纳米乳液的形态和粒径。此外,纳米乳液表现出近乎牛顿型液体行为,并且 TPGS 的存在能够提高 HL 纳米乳液的储存稳定性。添加 TPGS 可以消除 HL 纳米乳液的相变区域,但对 HL 纳米乳液中的分子迁移率没有显著影响。总之,从高附加值应用和纳米乳液的物理化学特性方面来看,BSFL 油可用作可再生原料来配制纳米乳液,并且可以通过混合表面活性剂比例、表面活性剂与油的比例以及油含量来调整纳米乳液的物理化学特性。 图表摘要 研究了基于黑水虻幼虫油的纳米乳液的物理化学特性和优化。