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Publications (2 of 2) Show all publications
Jedvert, K., Viklund, L., Alkhagen, M., Köhnke, T. & Theliander, H. (2021). Tailoring the physical characteristics of solution blown cellulosic nonwovens by various post-treatments. Nordic Pulp & Paper Research Journal, 36(4), 682-695
Open this publication in new window or tab >>Tailoring the physical characteristics of solution blown cellulosic nonwovens by various post-treatments
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2021 (English)In: Nordic Pulp & Paper Research Journal, Vol. 36, no 4, p. 682-695Article in journal (Refereed) Published
Abstract [en]

Nonwovens are increasing in demand due to their versatility which enables use in a broad range of applications. Most nonwovens are still produced from fossil-based resources and there is thus a need to develop competitive materials from renewable feedstock. In this work, nonwovens are produced from cellulose via a direct solution blowing method. 

National Category
Energy Systems
Identifiers
urn:nbn:se:ri:diva-55838 (URN)10.1515/npprj-2021-0025 (DOI)2-s2.0-85112271055 (Scopus ID)
Available from: 2021-08-16 Created: 2021-08-16 Last updated: 2025-09-23Bibliographically approved
Jedvert, K., Idström, A., Köhnke, T. & Alkhagen, M. (2020). Cellulosic nonwovens produced via efficient solution blowing technique. Journal of Applied Polymer Science, 137(5), Article ID 48339.
Open this publication in new window or tab >>Cellulosic nonwovens produced via efficient solution blowing technique
2020 (English)In: Journal of Applied Polymer Science, ISSN 0021-8995, E-ISSN 1097-4628, Vol. 137, no 5, article id 48339Article in journal (Refereed) Published
Abstract [en]

The demand for nonwoven materials has increased during the last few years and is expected to increase further due to its use in a broad range of new application areas. Today, the majority of nonwovens are from petroleum-based resources but there is a desideratum to develop sustainable and competitive materials from renewable feedstock. In this work, renewable nonwovens are produced by solution blowing of dissolved cellulose using 1-ethyl-3-methylimidazolium acetate (EMIMAc) as solvent. Properties of cellulose solutions and process parameters, such as temperature, flow rate, air pressure, and distance to collector, are evaluated in respect to spinnability and material structural properties. Nonwovens with fiber diameters mainly in the micrometer range were successfully produced and it was shown that high temperature or low flow rate resulted in thinner fibers. The produced materials were stiffer (higher effective stress and lower strain) compared to commercial polypropylene nonwoven. © 2019 The Authors. Journal of Applied Polymer Science published by Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2019, 136, 48339. © 2019 The Authors.

Place, publisher, year, edition, pages
John Wiley and Sons Inc., 2020
Keywords
cellulose, nonwovens, solution blowing, Polypropylenes, 1-ethyl-3-methylimidazolium acetates, Cellulose solutions, Effective stress, Micrometer ranges, Non-wovens, Nonwoven materials, Process parameters, Renewable feedstocks, Nonwoven fabrics
National Category
Natural Sciences
Identifiers
urn:nbn:se:ri:diva-39851 (URN)10.1002/app.48339 (DOI)2-s2.0-85070821248 (Scopus ID)
Note

Funding details: Svenska Forskningsrådet Formas, 942‐2015‐388; Funding text 1: The Swedish Research Council Formas (Grant No. 942‐2015‐388) is gratefully acknowledged for the financial support.

Available from: 2019-08-30 Created: 2019-08-30 Last updated: 2025-09-23Bibliographically approved
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ORCID iD: ORCID iD iconorcid.org/0000-0001-7797-1102

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