Meta-Analysis on the Dissolution of Bamboo (Bambusa) Cellulose using NaOH/urea Aqueous Solution
Bamboo cellulose is a non-dangerous, biodegradable polymer with high elastic, compressive quality thereby beneficial in commercial and pharmaceutical industries. However, preparing it involves a complex procedure of solvent dissolution. NaOH/urea solution is a common solvent for cellulose dissolutio...
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oai:animorepository.dlsu.edu.ph:conf_shsrescon-16322023-08-22T08:09:46Z Meta-Analysis on the Dissolution of Bamboo (Bambusa) Cellulose using NaOH/urea Aqueous Solution Cristobal, Jasmin Nicole B. Po, Joachim Xavier B. Sison, Raissa Adellaide M. Velina, Moira Justine R. Bamboo cellulose is a non-dangerous, biodegradable polymer with high elastic, compressive quality thereby beneficial in commercial and pharmaceutical industries. However, preparing it involves a complex procedure of solvent dissolution. NaOH/urea solution is a common solvent for cellulose dissolution, but its efficiency varies with temperature and concentration. Thus, this study aims to synthesize evidence on the efficiency of NaOH/urea solution in bamboo cellulose dissolution; identify the most suitable concentration and temperature of NaOH/urea; and determine the relationships between its concentration, temperature and bamboo cellulose’ dissolution rate. Extracted data indicated the bamboo source sample, NaOH/urea concentration, temperature, and dissolution results from five databases and utilized Quality of Reporting of Meta-analyses (QUOROM) and Assessment of Multiple Systematic Reviews (AMSTAR) instruments for the studies’ quality assessment. Among the studies, 93% utilized the concentration ratio of 7:12:81; therefore, concentration’s minimal changes did not profoundly affect the dissolution, given the same temperatures. Out of fifteen studies, eight used -12°C affirming that minimal changes in temperature affect the dissolution results. The Chi-square test revealed that only temperature and concentration indicate a significant relationship (x2=5.793, P<0.10). The heterogeneity test displayed a small amount of heterogeneity (I2= 33.42%, P<0.10; I2= 1.8%, P<0.10) on the gathered data that may be clinically unimportant, making the data considerably homogeneous. Hence, this provides significant evidence validating the efficiency of 7:12:81 NaOH/urea aqueous solution at -12°C in the dissolution of bamboo cellulose. 2021-04-29T22:00:00Z text application/pdf https://animorepository.dlsu.edu.ph/conf_shsrescon/2021/paper_men/5 https://animorepository.dlsu.edu.ph/context/conf_shsrescon/article/1632/viewcontent/ME_Meta_Analysis_on_the_Dissolution_of_Bamboo_Cellulose_using.pdf DLSU Senior High School Research Congress Animo Repository bamboo cellulose bamboo cellulose dissolution NaOH/urea metaanalysis heterogeneity test |
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bamboo cellulose bamboo cellulose dissolution NaOH/urea metaanalysis heterogeneity test Cristobal, Jasmin Nicole B. Po, Joachim Xavier B. Sison, Raissa Adellaide M. Velina, Moira Justine R. Meta-Analysis on the Dissolution of Bamboo (Bambusa) Cellulose using NaOH/urea Aqueous Solution |
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Bamboo cellulose is a non-dangerous, biodegradable polymer with high elastic, compressive quality thereby beneficial in commercial and pharmaceutical industries. However, preparing it involves a complex procedure of solvent dissolution. NaOH/urea solution is a common solvent for cellulose dissolution, but its efficiency varies with temperature and concentration. Thus, this study aims to synthesize evidence on the efficiency of NaOH/urea solution in bamboo cellulose dissolution; identify the most suitable concentration and temperature of NaOH/urea; and determine the relationships between its concentration, temperature and bamboo cellulose’ dissolution rate. Extracted data indicated the bamboo source sample, NaOH/urea concentration, temperature, and dissolution results from five databases and utilized Quality of Reporting of Meta-analyses (QUOROM) and Assessment of Multiple Systematic Reviews (AMSTAR) instruments for the studies’ quality assessment. Among the studies, 93% utilized the concentration ratio of 7:12:81; therefore, concentration’s minimal changes did not profoundly affect the dissolution, given the same temperatures. Out of fifteen studies, eight used -12°C affirming that minimal changes in temperature affect the dissolution results. The Chi-square test revealed that only temperature and concentration indicate a significant relationship (x2=5.793, P<0.10). The heterogeneity test displayed a small amount of heterogeneity (I2= 33.42%, P<0.10; I2= 1.8%, P<0.10) on the gathered data that may be clinically unimportant, making the data considerably homogeneous. Hence, this provides significant evidence validating the efficiency of 7:12:81 NaOH/urea aqueous solution at -12°C in the dissolution of bamboo cellulose. |
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Cristobal, Jasmin Nicole B. Po, Joachim Xavier B. Sison, Raissa Adellaide M. Velina, Moira Justine R. |
author_facet |
Cristobal, Jasmin Nicole B. Po, Joachim Xavier B. Sison, Raissa Adellaide M. Velina, Moira Justine R. |
author_sort |
Cristobal, Jasmin Nicole B. |
title |
Meta-Analysis on the Dissolution of Bamboo (Bambusa) Cellulose using NaOH/urea Aqueous Solution |
title_short |
Meta-Analysis on the Dissolution of Bamboo (Bambusa) Cellulose using NaOH/urea Aqueous Solution |
title_full |
Meta-Analysis on the Dissolution of Bamboo (Bambusa) Cellulose using NaOH/urea Aqueous Solution |
title_fullStr |
Meta-Analysis on the Dissolution of Bamboo (Bambusa) Cellulose using NaOH/urea Aqueous Solution |
title_full_unstemmed |
Meta-Analysis on the Dissolution of Bamboo (Bambusa) Cellulose using NaOH/urea Aqueous Solution |
title_sort |
meta-analysis on the dissolution of bamboo (bambusa) cellulose using naoh/urea aqueous solution |
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Animo Repository |
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2021 |
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https://animorepository.dlsu.edu.ph/conf_shsrescon/2021/paper_men/5 https://animorepository.dlsu.edu.ph/context/conf_shsrescon/article/1632/viewcontent/ME_Meta_Analysis_on_the_Dissolution_of_Bamboo_Cellulose_using.pdf |
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