首页> 外文期刊>Journal of Membrane Science >The influence or the pore size, the roaming temperature and the viscosity of the continuous phase on the properties of foams produced by membrane foaming
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The influence or the pore size, the roaming temperature and the viscosity of the continuous phase on the properties of foams produced by membrane foaming

机译:连续相的孔径或大小,漫游温度和粘度对通过膜发泡生产的泡沫的性能的影响

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Membrane foaming is a new method of foaming. To enlarge the knowledge about the influencing factors and to know how to vary the structure of the resulting foam, different factors were evaluated. A whey protein solution with 10% protein was foamed as a model solution by means of a tubular cross-flow filtration membrane. The pore size of the membrane was varied. The smaller the pore size, the smaller the bubbles produced. As a result, the foam firmness increases and less drainage was observed when smaller pore sizes were applied. An important factor is that the added amount of gas must be stabilised as completely as possible in the foam. In order to achieve this, both the process and the product parameters were varied. Raising the foaming temperature increased the quantity of stabilised gas. The whey proteins then diffuse faster to the bubble surfaces and stabilise these by unfolding and networking reactions to prevent the coalescence of the bubbles. The product parameter viscosity was found to influence the foaming result in such a way that up to a viscosity of 40 mPa s the incorporated gas bubbles are stabilised by the higher viscosity. At viscosities higher than 40 mPa s it is difficult to incorporate in the bubbles, and the foam structure becomes coarser due to increased coalescence at the pores of the membrane. The foam stability is enhanced with higher viscosities.
机译:膜发泡是一种新的发泡方法。为了扩大有关影响因素的知识并了解如何改变所得泡沫的结构,对了不同的因素进行了评估。通过管状错流过滤膜将具有10%蛋白质的乳清蛋白溶液发泡为模型溶液。膜的孔径是变化的。孔径越小,产生的气泡越小。结果,当施加较小的孔径时,泡沫的硬度增加并且观察到较少的排水。一个重要的因素是必须在泡沫中尽可能完全地稳定气体的添加量。为了实现这一点,改变了工艺和产品参数。升高发泡温度增加了稳定气体的量。然后,乳清蛋白更快地扩散到气泡表面,并通过展开和网络反应来稳定气泡表面,以防止气泡聚结。发现产物参数粘度以这样的方式影响发泡结果,使得高达40mPa·s的粘度通过较高的粘度使掺入的气泡稳定。在高于40 mPa s的粘度下,很难混入气泡中,并且由于在膜孔处的聚结增加,泡沫结构变得更粗糙。较高的粘度提高了泡沫的稳定性。

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