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Titlebook: Rheology of Industrial Polysaccharides: Theory and Applications; Romano Lapasin,Sabrina Pricl Book 1995 Springer Science+Business Media Do

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書目名稱Rheology of Industrial Polysaccharides: Theory and Applications
編輯Romano Lapasin,Sabrina Pricl
視頻videohttp://file.papertrans.cn/831/830031/830031.mp4
圖書封面Titlebook: Rheology of Industrial Polysaccharides: Theory and Applications;  Romano Lapasin,Sabrina Pricl Book 1995 Springer Science+Business Media Do
描述fudustrial uses of polysaccharides centre on their ability to thicken or structure many times their own weight of water, or in other words to control the rheology of hydrated systems. Until comparatively recently, however, objective characterisation of polysaccharide rheology, except in a few specialist research laboratories, was largely confined to compression of gels, simple measurements of solution viscosity, often in ill-defined geometries, and imitative tests intended to reflectproductperformance in specific areas ofend-use. Several factors have combined to bring a wider range of rheological techniques into common use. One is the increasing practical importance of systems that cannot adequately be described as solids or liquids, such as ‘weak gels‘ and spreadable pastes. fu parallel, routine characterisation of such systems has become economically feasible with the development of a new generation of comparatively inexpensive computer-controlled instruments. There has also been a change ofemphasis from phenomenologicaldescription ofproduct texture towards the use of rheological measurements to probe the underlying molecular and supramolecular structures and the processes by whi
出版日期Book 1995
關(guān)鍵詞computer; control; development; instruments; liquid; measurement; research; rheology; solid; stress; structure
版次1
doihttps://doi.org/10.1007/978-1-4615-2185-3
isbn_softcover978-1-4613-5915-9
isbn_ebook978-1-4615-2185-3
copyrightSpringer Science+Business Media Dordrecht 1995
The information of publication is updating

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The polysaccharides: sources and structures,and well known examples are starch, glycogen and some plant seed polysaccharides such as locust bean gum and guar gum. Sometimes they contribute to the structural integrity and mechanical strength of plant tissues by forming a hydrated crosslinked three-dimensional network (pectins play this role in
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Industrial applications of polysaccharides,edly relies on the wide range of their functional properties. Chief among polysaccharide characteristics is their ability to modify the properties of. aqueous environments, that is their capacity to thicken, chelate, emulsify, stabilize, encapsulate, flocculate, swell and suspend, or to form gels, f
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Rheology,s some idea of the number of problems and materials which are likely to be involved, the term rheology does not specify unequivocally the fundamental contribution afforded by this discipline to the scientific world and the original developments it has experienced from 1929 to the present days.
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Rheometry,rough the experimental measurement of macroscopic quantities using suitable instruments. The rheometer data may be essential in the formulation of constitutive equations, in other words, to assist in the determination of the relationships between the tensorial components of the shear stress τ.; and
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