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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >The impact of lipases on the rheological behavior of colloidal silica nanoparticle stabilized Pickering emulsions for biocatalytical applications
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The impact of lipases on the rheological behavior of colloidal silica nanoparticle stabilized Pickering emulsions for biocatalytical applications

机译:脂肪酶对胶体二氧化硅纳米粒子稳定的生物催化应用乳液的流变行为的影响

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摘要

The use of Pickering emulsions for biocatalytical applications has recently received increased attention in cases where hydrophobic reactants are involved. For process applications, knowledge of the emulsion's rheology is crucial for the fluid dynamical design of equipment and selection of operating conditions. Colloidal silica nanoparticle stabilized Pickering emulsions usually exhibit shear-thinning behavior caused by a complex particle-particle network. While this has been observed by many authors, no publication has yet dealt with the rheology of silica nanoparticle stabilized Pickering emulsions containing enzymes. Thus, the aim of this study was to investigate the impact of the commonly used biocatalyst lipase (type and concentration), the dispersed phase volume fraction and the silica particle concentration on the rheological behavior of water-in-oil Pickering emulsions. For this purpose, the impact of the named parameters on the viscosity curves were measured. Lipases reduced the viscosities and transferred the rheological behavior from shear-thinning to Newtonian, which might be due to interactions of the lipase molecules via the formation of intermolecular disulfide bonds, which disturb the hydrogen-bond based silica particle-particle network. However, by increasing the dispersed phase volume fraction or the silica particle concentration the rheological behavior of emulsions became again shear-thinning. This work will help to produce bioactive Pickering emulsions with tailor-made characteristics.
机译:在涉及疏水反应物的情况下,使用对生物催化应用的皮克林乳液的使用最近受到了更多的注意。对于过程应用,乳液流变学的知识对于设备的流体动态设计以及操作条件的选择是至关重要的。胶体二氧化硅纳米粒子稳定的皮克林乳液通常表现出由复杂的粒子粒子网络引起的剪切稀释行为。虽然许多作者已经观察到这一点,但尚未涉及硅纳米粒子稳定的含酶稳定的皮克林乳液的流变学。因此,本研究的目的是研究常用的生物催化剂脂肪酶(类型和浓度),分散相体积分数和二氧化硅颗粒浓度对油内油状乳液的流变行为的影响。为此目的,测量了命名参数对粘度曲线的影响。脂肪酶降低了粘度并将流变行为从剪切稀疏转移到牛顿,这可能是由于脂肪酶分子通过形成分子间二硫键的相互作用,这会干扰基于氢键基二氧化硅颗粒粒子网络。然而,通过增加分散相体积分数或二氧化硅颗粒浓度,乳液的流变行为再次变薄。这项工作将有助于生产具有量身定制特性的生物活性泡沫乳液。

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