Evaluation of thin-layer models for kinetic analysis in unbleached kraft pulpboard drying
The drying characteristics of unbleached Kraft pulpboard have been studied in convective drying equipment under different hot air temperatures and velocities. In this work, the drying experiments were conducted in the range of 80-100 degrees C and 1.87-2.48m/s, respectively. The results indicated th...
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JIHAD DANESHGAHI
2022
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my.um.eprints.462842024-07-22T08:33:36Z http://eprints.um.edu.my/46284/ Evaluation of thin-layer models for kinetic analysis in unbleached kraft pulpboard drying Lingbo, Kong Xing, Yang Zhihao, Hou Jixian, Dong QD Chemistry The drying characteristics of unbleached Kraft pulpboard have been studied in convective drying equipment under different hot air temperatures and velocities. In this work, the drying experiments were conducted in the range of 80-100 degrees C and 1.87-2.48m/s, respectively. The results indicated that high air temperature and velocity are beneficial to increasing drying rate and decreasing drying time. Ten thin-layer drying models were evaluated to describe the drying kinetic of unbleached Kraft pulpboard for its suitability. Based on the statistical analysis, the Yun model could predict the pulpboard drying kinetic better than others in terms of fitting performance. Through calculation and fitting, the effective moisture diffusivity varied from 2.077. 10-10 to 3.631. 10-10m(2)/s over the investigated temperature range and the average activation energy for moisture diffusion was 22.818kJ/mol. JIHAD DANESHGAHI 2022-03 Article PeerReviewed Lingbo, Kong and Xing, Yang and Zhihao, Hou and Jixian, Dong (2022) Evaluation of thin-layer models for kinetic analysis in unbleached kraft pulpboard drying. IRANIAN JOURNAL OF CHEMISTRY & CHEMICAL ENGINEERING-INTERNATIONAL ENGLISH EDITION, 41 (3). pp. 1022-1033. ISSN 1021-9986, DOI https://doi.org/10.30492/ijcce.2021.131863.4259 <https://doi.org/10.30492/ijcce.2021.131863.4259>. https://doi.org/10.30492/ijcce.2021.131863.4259 10.30492/ijcce.2021.131863.4259 |
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QD Chemistry Lingbo, Kong Xing, Yang Zhihao, Hou Jixian, Dong Evaluation of thin-layer models for kinetic analysis in unbleached kraft pulpboard drying |
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The drying characteristics of unbleached Kraft pulpboard have been studied in convective drying equipment under different hot air temperatures and velocities. In this work, the drying experiments were conducted in the range of 80-100 degrees C and 1.87-2.48m/s, respectively. The results indicated that high air temperature and velocity are beneficial to increasing drying rate and decreasing drying time. Ten thin-layer drying models were evaluated to describe the drying kinetic of unbleached Kraft pulpboard for its suitability. Based on the statistical analysis, the Yun model could predict the pulpboard drying kinetic better than others in terms of fitting performance. Through calculation and fitting, the effective moisture diffusivity varied from 2.077. 10-10 to 3.631. 10-10m(2)/s over the investigated temperature range and the average activation energy for moisture diffusion was 22.818kJ/mol. |
format |
Article |
author |
Lingbo, Kong Xing, Yang Zhihao, Hou Jixian, Dong |
author_facet |
Lingbo, Kong Xing, Yang Zhihao, Hou Jixian, Dong |
author_sort |
Lingbo, Kong |
title |
Evaluation of thin-layer models for kinetic analysis in unbleached kraft pulpboard drying |
title_short |
Evaluation of thin-layer models for kinetic analysis in unbleached kraft pulpboard drying |
title_full |
Evaluation of thin-layer models for kinetic analysis in unbleached kraft pulpboard drying |
title_fullStr |
Evaluation of thin-layer models for kinetic analysis in unbleached kraft pulpboard drying |
title_full_unstemmed |
Evaluation of thin-layer models for kinetic analysis in unbleached kraft pulpboard drying |
title_sort |
evaluation of thin-layer models for kinetic analysis in unbleached kraft pulpboard drying |
publisher |
JIHAD DANESHGAHI |
publishDate |
2022 |
url |
http://eprints.um.edu.my/46284/ https://doi.org/10.30492/ijcce.2021.131863.4259 |
_version_ |
1806442664276525056 |