Review on the Production of Polysaccharide Aerogel Particles

Обзор производства полисахаридных аэрогелевых частиц
Kathirvel Ganesan, Tatiana Budtova, Lorenz Ratke, Pavel Gurikov, Victor Baudron, Imke Preibisch, Philipp Niemeyer, Ирина Смирнова, Barbara Milow
2018-10-31

bio-aerogelsdroplet techniquesnon-solvent-induced phase separationpolysaccharide aerogel particlessupercritical drying
A detailed study of the production of polysaccharide aerogel (bio-aerogel) particles from lab to pilot scale is surveyed in this article. An introduction to various droplets techniques available in the market is given and compared with the lab scale production of droplets using pipettes and syringes. An overview of the mechanisms of gelation of polysaccharide solutions together with non-solvent induced phase separation option is then discussed in the view of making wet particles. The main steps of particle recovery and solvent exchange are briefly described in order to pass through the final drying process. Various drying processes are overviewed and the importance of supercritical drying is highlighted. In addition, we present the characterization techniques to analyse the morphology and properties of the aerogels. The case studies of bio-aerogel (agar, alginate, cellulose, chitin, κ-carrageenan, pectin and starch) particles are reviewed. Potential applications of polysaccharide aerogel particles are briefly given. Finally, the conclusions summarize the prospects of the potential scale-up methods for producing bio-aerogel particles.
1
Case studies cover agar, alginate, cellulose, chitin, κ-carrageenan, pectin, and starch aerogel particles, including characterization methods and potential applications.
2
Droplet-generation techniques used commercially are compared with laboratory production using pipettes and syringes.
3
Gelation mechanisms and non-solvent-induced phase separation are examined as routes for forming wet polysaccharide particles.
4
Particle recovery, solvent exchange, and drying are identified as essential processing stages, with supercritical drying particularly emphasized.
5
The review surveys polysaccharide aerogel particle production from laboratory methods to potential pilot-scale processes.

polysaccharide aerogel (bio-aerogel) particles

production processes, gelation and phase-separation mechanisms, particle recovery, solvent exchange, drying, morphology and properties, and scale-up of polysaccharide aerogel particles

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2018-10-31
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Kathirvel Ganesan
Tatiana Budtova
Lorenz Ratke
Pavel Gurikov
Victor Baudron
Imke Preibisch
Philipp Niemeyer
Ирина Смирнова
Barbara Milow
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