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Titlebook: Chemical Principles of Synthetic Fibre Dyeing; S. M. Burkinshaw Book 1995 Chapman & Hall 1995 adsorption.chemistry.crystal.distribution.ki

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Book 1995Synthetic fibres are widely used for many applications, withtheir colour being of major commercial importance. This extensivelyreferenced book provides a comprehensive account of the physicalchemistry of the dyeing of synthetic fibres and microfibres.
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https://doi.org/10.1007/978-94-011-0593-4adsorption; chemistry; crystal; distribution; kinetics; physical chemistry; thermodynamics
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Acrylic,ions (carried out at the polymerisation, dope preparation and spinning stages) employed in the preparation of polyacrylonitrile (PAN) fibres, the physical properties and dyeing characteristics of the fibres vary markedly between commercial varieties.
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Microfibres,fibres. Although polyester has received by far the greatest attention in this context, polyamide and acrylic microfibres also enjoy widespread usage. However, in view of the extremely small amount of information that has been published on acrylic microfibres, this type of fibre is not discussed.
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Polyester,are marketed under a variety of trade names. Although other polyester fibres, such as the ‘Kodel II’ (Eastman) range prepared from 1,4-dimethylolcyclohexane and terephthalic acid [2, 4] are also available, this account concerns only the dyeing of PET fibres.
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Nylon,s such, distinguishes such polymers from other polyamides, namely proteinaceous polyamino acids (such as silk and wool), lower melting point resins as well as wholly aromatic poly-amides (aramids), which also can be classified as [2–4] . (—CONH —) as recurring integral parts of the main polymer chain.
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Process Modelling and Landform Evolutions such, distinguishes such polymers from other polyamides, namely proteinaceous polyamino acids (such as silk and wool), lower melting point resins as well as wholly aromatic poly-amides (aramids), which also can be classified as [2–4] . (—CONH —) as recurring integral parts of the main polymer chain.
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