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A new method for the determination of the concentration of free and associated sodium caseinate in model emulsions

机译:一种新方法,用于测定模型乳液中的自由和相关钠酪酸钠的浓度

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This work shows a close correlation between density, sound velocity and X-ray scattering measurements at very small angles (SAXS) for solutions of industrial grade sodium caseinate (SC). As SAXS measurements at synchrotron radiation sources are not applicable on a laboratory scale every day we prove a close correlation between the structural data derived from scattering techniques with combined density and sound velocity measurements. As a new method for the determination of SC concentration we propose density measurements which require minimal sample preparation, have a short measuring cycle of just a few minutes, and yield very accurate, reproducible results, which allows sample reuse after the measurements. Linear density changes on the order of Δρ~1 bar 20 °C = 0.0027±0.0003 g cm~(-3) per weight percent of protein in the range of 0.991 ≤ ρ~1 bar 20 °C ≤ 1.04 g cm~(-3) are addressed. Such density dependence enables us to accurately determine the SC concentration in the continuous phase of model emulsions. The droplet mean size D[4,3] of emulsion droplets is measured by laser light diffraction using the Mie theory coupled with polarization intensity differential scattering. To determine the SC concentration in the serum in equilibrium with the surrounding emulsion particles dispersed and continuous phase are separated using centrifugation at 2400g. Coupling of density measurement that provides the SC concentration in the aqueous phase and the mean droplet size measurement allows us to evaluate the surface density on emulsion globules, which is essential for emulsion studies.
机译:这项工作显示了在非常小的角度(SAX)下的密度,声速和X射线散射测量之间的紧密相关性,用于工业级酪蛋白酸钠(SC)的解决方案。由于同步辐射源的SAXS测量不适用于每天在实验室比例上应用,因此我们证明了从具有组合密度和声速测量的散射技术导出的结构数据之间的紧密相关性。作为测定SC浓度的新方法,我们提出了需要最小样品制备的密度测量,只需几分钟的测量循环短,并产生非常精确,可重复的结果,这允许在测量后重复使用。线性密度随Δρ〜1巴的顺序变化20°C = 0.0027±0.0003g cm〜(-3)百分比0.991≤ρ~1bar20°C≤1.04gcm〜( - 3)得到解决。这种密度依赖性使我们能够准确地确定模型乳液的连续相中的SC浓度。通过使用MIE理论与偏振强度差分散射相结合的MIE理论,通过激光衍射测量乳液液滴的液滴平均尺寸D [4,3]。为了确定血清中血清中的SC浓度与周围的乳液颗粒分散的和连续相分离,在2400g处用离心分离。在水相中提供SC浓度和平均液滴尺寸测量的密度测量的偶联使我们能够评估乳液小球上的表面密度,这对于乳液研究至关重要。

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