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Sheared aqueous two-phase biopolymer-surfactant mixtures

机译:剪切的含水两相生物聚合物-表面活性剂混合物

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Aqueous two-phase biopolymer-surfactant mixtures have so far received only little attention. Here, the behaviour of such mixtures was investigated adopting methods well established for aqueous two-phase biopolymer-biopolymer mixtures. The pullulan-sodium dodecyl sulphate (SDS) mixture, in which phase separation can be induced, and then enhanced by the addition of sodium chloride (NaCl), was chosen as a model system and its morphology and rheology under shear was analysed. Rheological measurements on phase-separated mixtures revealed that the viscosity depends on the chemical composition of the single phases, their viscosity ratio and volume fraction. Optical observations showed droplet-like morphology over a wide range of shear rates at low volume fractions of one phase, and co-continuous structures including string phases at high volume fractions and shear rates. For more concentrated systems, co-continuous structures were observed at all shear rates investigated, whereby in some cases string phases developed at high shear rates.
机译:迄今为止,水性两相生物聚合物-表面活性剂混合物仅受到很少的关注。在这里,采用对于水相两相生物聚合物-生物聚合物混合物充分建立的方法,研究了这种混合物的行为。选择可以诱导相分离并随后通过添加氯化钠(NaCl)增强相的支链淀粉-十二烷基硫酸钠(SDS)混合物作为模型系统,并分析其在剪切下的形态和流变性。相分离混合物的流变学测量表明,粘度取决于单相的化学组成,粘度比和体积分数。光学观察表明,在一相的低体积分数下,剪切速率范围很宽时呈液滴状形态,在高体积分数和剪切率下,包括弦相在内的共连续结构也是如此。对于更集中的系统,在所有研究的剪切速率下均观察到共连续结构,因此在某些情况下,弦相在高剪切速率下发展。

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