Search for dissertations about: "Cellulose Dissolution"
Showing result 1 - 5 of 46 swedish dissertations containing the words Cellulose Dissolution.
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1. Dissolution of cellulose for textile fibre applications
Abstract : This thesis forms part of a project with the objective of developing and implementing a novel, wood-based, process for the industrial production of cellulose textile fibres. This new process should not only be cost effective but also have far less environmental impact then current processes. READ MORE
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2. Dissolution of cellulose in aqueous hydroxide base solvents
Abstract : As we move towards a circular bioeconomy, new and advanced materials based on cellulose are constantly developed. Unlike most plastics or metals, cellulose cannot be melted, and therefore dissolution is an important tool for processing of cellulose but also for analytical purposes. READ MORE
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3. Cellulose processing in ionic liquid based solvents
Abstract : As the most abundant polymer in nature, cellulose has an undisputed role among the raw materials to be used in a sustainable future. From its native form, in wood or straw, cellulose can be processed into products such as paper and board. READ MORE
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4. Mercerization and Enzymatic Pretreatment of Cellulose in Dissolving Pulps
Abstract : This thesis deals with the preparation of chemically and/or enzymatically modified cellulose. This modification can be either irreversible or reversible. Irreversible modification is used to prepare cellulose derivatives as end products, whereas reversible modification is used to enhance solubility in the preparation of regenerated cellulose. READ MORE
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5. Cellulose in Quaternary Ammonium-based Solvents: Dissolution, Modification and Coagulation
Abstract : Processing cellulose through dissolution and regeneration is essential for many applications, yet challenges are posed because it does not readily melt or dissolve in commonly used aqueous and organic solvents. Consequently, extensive efforts have been devoted to developing novel and efficient solvents for cellulose, as well as exploring new functionalization routes. READ MORE