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首页> 外文期刊>Journal of food engineering >Membrane fouling during filtration of milk―a microstructural study
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Membrane fouling during filtration of milk―a microstructural study

机译:牛奶过滤过程中的膜污染—微观结构研究

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摘要

The surface morphology and internal microstructure of a membrane are the result of membrane manufacturing processes and subsequent use during fluid processing in industry. Both these structural factors have a great effect on fouling and filtration performance. In this study, scanning electron microscopy (SEM), atomic force microscopy (AFM) and X-ray photoelectron spectroscopy were used to comprehensively characterise the surface of unused microfiltration and ultrafiltration membranes, the fouled layer on the surface of membranes used for milk filtration and the internal fouling within the used membranes. A simple and effective sample preparation method was developed to study the internal membrane structure using high-resolution field emission SEM with low-accelerating voltage. Various methods of structural characterisation were compared and the results showed that for flat sheet membranes AFM is an appropriate and convenient technique for examining the surface topography of membranes. In contrast SEM is a very appropriate technique for examining the cross-sectional and internal structure of a membrane, either unused or fouled. Using these complimentary techniques it has been shown that internal fouling, during filtration of skim milk, proceeds by protein-polymer and protein -protein interactions. A gel layer forms on the surface of the membrane and has been imaged using SEM. This layer is slightly compressible and densifies as it grows. Fouling initiation commences after a very short filtration time.
机译:膜的表面形态和内部微观结构是膜制造工艺以及随后在工业中进行流体加工过程中使用的结果。这两个结构因素对结垢和过滤性能都有很大影响。在这项研究中,使用扫描电子显微镜(SEM),原子力显微镜(AFM)和X射线光电子能谱来全面表征未使用的微滤和超滤膜的表面,用于牛奶过滤和过滤的膜表面的结垢层。用过的膜内部的结垢。开发了一种简单有效的样品制备方法,以低加速电压的高分辨率场发射SEM研究内部膜的结构。比较了各种结构表征方法,结果表明,对于平板膜而言,原子力显微镜是一种检查膜表面形貌的合适且方便的技术。相比之下,SEM是检查膜的横截面和内部结构(未使用或结垢)的非常合适的技术。使用这些互补技术,已显示出在脱脂乳过滤期间的内部结垢是通过蛋白质-聚合物和蛋白质-蛋白质的相互作用而进行的。凝胶层在膜表面形成,并已使用SEM成像。该层略微可压缩,并随着其增长而致密。在很短的过滤时间后开始结垢。

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