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Impact of high pressure homogenization modification of a cellulose based fiber product on water binding properties

机译:纤维素基纤维产品的高压均质改性对水结合性能的影响

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摘要

A commercial dietary fiber was mechanically modified by treating a suspension in a high pressure ho-mogenizer. Different drying methods were applied prior to examining macroscopic and water binding properties. DSC experiments show that more water is bound non-freezable with increasing mechanical modification. Capillary suction method and centrifugation experiments confirm that the water binding capacity changes systematically on mechanical treatment Rheological studies confirm that the modification has a profound effect on the physico-chemical properties of the fibers. Samples with higher water binding capacity result in gel-like structures relating to higher specific volumes or swelling and possibly increased mutual entanglement The water binding is primarily linked to structural parameters, such as porosity and does not increase any further once additional mechanical treatment does not further lead to increased porosities. Electron microscope images support the experimental findings. Effects of mechanical treatment supersede the impacts of the different drying methods. However, more gentle drying methods such as freeze drying and water-ethanol-extraction-drying yield in general higher water binding capacities than spray drying and oven drying. The study documents that the profound effect of mechanical treatment on the water binding capacity of a cellulose based fibrous material is strongly related to the porosity of the dried samples.
机译:通过在高压均质机中处理悬浮液,对商业膳食纤维进行了机械改性。在检查宏观和水结合性能之前,采用了不同的干燥方法。 DSC实验表明,随着机械改性的增加,更多的水被束缚为不可冻结的。毛细管抽吸法和离心实验证实,在机械处理中水的结合能力发生了系统性的变化。流变学研究证实,改性对纤维的理化性质具有深远的影响。具有较高水结合能力的样品会产生与较高比容或溶胀有关的凝胶状结构,并可能增加相互缠结。水结合主要与诸如孔隙度的结构参数有关,并且一旦不进行其他机械处理就不会进一步增加。导致孔隙率增加。电子显微镜图像支持实验结果。机械处理的效果取代了不同干燥方法的影响。然而,更柔和的干燥方法,例如冷冻干燥和水-乙醇萃取-干燥,通常比喷雾干燥和烘箱干燥具有更高的水结合能力。研究表明,机械处理对纤维素基纤维材料的水结合能力的深远影响与干燥样品的孔隙率密切相关。

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