Miao Chuanwei, Tayebi Mani, Hamad Wadood Y
FPInnovations, 2665 East Mall, Vancouver, British Columbia, Canada V6T 1Z4.
FPInnovations, 2665 East Mall, Vancouver, British Columbia, Canada V6T 1Z4
Philos Trans A Math Phys Eng Sci. 2018 Feb 13;376(2112). doi: 10.1098/rsta.2017.0039.
Medium and high internal phase Pickering emulsions stabilized by cellulose nanocrystals (CNCs) have been prepared and the effects of CNC concentration and type of oil phase on the properties of emulsions were studied. The maximum oil phase volume that can be stabilized by CNCs is 87% when the CNC concentration is 0.6 wt.%; this slightly decreases to 83% when the CNC concentration is increased to 1.2 wt.% or higher. In addition, the oil droplets stabilized with 0.6 wt.% CNC suspensions have a larger size than those stabilized with higher concentration CNC suspensions. As evidenced by the change in oil droplet morphology and size, two different emulsion formation mechanisms are proposed. For a CNC concentration of 0.6 wt.%, the extra oil added into the emulsion is accommodated by the expansion of oil droplet size, whereas for CNC concentrations of 1.2 wt.% and higher, the oil is stabilized mainly by the formation of new oil droplets.
制备了由纤维素纳米晶体(CNC)稳定的中高内相Pickering乳液,并研究了CNC浓度和油相类型对乳液性质的影响。当CNC浓度为0.6 wt.%时,CNC能够稳定的最大油相体积为87%;当CNC浓度增加到1.2 wt.%或更高时,该值略有下降至83%。此外,用0.6 wt.% CNC悬浮液稳定的油滴尺寸比用更高浓度CNC悬浮液稳定的油滴尺寸更大。根据油滴形态和尺寸的变化,提出了两种不同的乳液形成机制。对于0.6 wt.%的CNC浓度,添加到乳液中的额外油通过油滴尺寸的扩大来容纳,而对于1.2 wt.%及更高的CNC浓度,油主要通过形成新的油滴来稳定。