Biodegradable plates made of pineapple leaf pulp with biocoatings to improve water resistance

A crucial property of fibrous packaging paper for food is water resistance, while strength properties are also important. To improve these properties, several bio-coating solutions were applied as coatings on paper made of pineapple leaf pulp. The effects of beeswax, chitosan, shellac, alginate/gell...

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Main Authors: Jutarut Iewkittayakorn, Piyaporn Khunthongkaew, Yutthawee Wongnoipla, Kaewta Kaewtatip, Panumas Suybangdum, Arrisa Sopajarn
Format: Article
Language:English
Published: Elsevier 2020-05-01
Series:Journal of Materials Research and Technology
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2238785419322471
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spelling doaj-372f4aad4524460cb4e30302802e64922020-11-25T04:00:33ZengElsevierJournal of Materials Research and Technology2238-78542020-05-019350565066Biodegradable plates made of pineapple leaf pulp with biocoatings to improve water resistanceJutarut Iewkittayakorn0Piyaporn Khunthongkaew1Yutthawee Wongnoipla2Kaewta Kaewtatip3Panumas Suybangdum4Arrisa Sopajarn5Department of Molecular Biotechnology and Bioinformatics, Faculty of Science, Prince of Songkla University, Hat Yai, Songkhla, 90112, Thailand; Corresponding author.Department of Molecular Biotechnology and Bioinformatics, Faculty of Science, Prince of Songkla University, Hat Yai, Songkhla, 90112, ThailandDepartment of Molecular Biotechnology and Bioinformatics, Faculty of Science, Prince of Songkla University, Hat Yai, Songkhla, 90112, ThailandDepartment of Materials Science and Technology, Faculty of Scicence, Prince of Songkla University, Hat Yai, Songkhla, 90112, ThailandFaculty of Agricultural Machinery Engineering, Department of Industrial, Rattaphum College, Rajamangala University of Technology Srivijaya, Rattaphum, Songkhla 90180, ThailandFaculty of Agricultural Machinery Engineering, Department of Industrial, Rattaphum College, Rajamangala University of Technology Srivijaya, Rattaphum, Songkhla 90180, ThailandA crucial property of fibrous packaging paper for food is water resistance, while strength properties are also important. To improve these properties, several bio-coating solutions were applied as coatings on paper made of pineapple leaf pulp. The effects of beeswax, chitosan, shellac, alginate/gellan gum and beeswax–chitosan (1% chitosan+4%glycerol+30%beeswax) solutions on pineapple leaf pulp paper were assessed in relation to making biodegradable paper plates. The cooking time (120–180 min) of chemical pulping and the dose of pulp by moist weight (200, 250, and 300 g) to a paper frame (40 × 40 cm2) were also studied on making the paper samples. The papers were tested for their physical and mechanical properties. The optimal cooking time and dose of pulp by moist weight found were 180 min and 300 g of pulp per frame, respectively. The bio-coatings increased average grammage and thickness of paper, but gave density reduction from that of uncoated paper. Coating paper with beeswax–chitosan solution gave the longest absorbency time, followed in rank order by alginate/gellan gum, chitosan, beeswax and shellac. The maximum 5.9 kN/m2 tensile strength was found for paper coated with beeswax–chitosan solution before hot pressing. On comparing papers bio-coated before or after hot pressing, no difference was found in the degradable time with NaAlg/gellan coating, while such difference was observed with beeswax-chitosan coating. The results suggest beeswax–chitosan solution as the best among the alternatives tested, for coating paper to make biodegradable plates.http://www.sciencedirect.com/science/article/pii/S2238785419322471BeeswaxBiodegradableBio-coating solutionsChitosanPineapple leaf fibers
collection DOAJ
language English
format Article
sources DOAJ
author Jutarut Iewkittayakorn
Piyaporn Khunthongkaew
Yutthawee Wongnoipla
Kaewta Kaewtatip
Panumas Suybangdum
Arrisa Sopajarn
spellingShingle Jutarut Iewkittayakorn
Piyaporn Khunthongkaew
Yutthawee Wongnoipla
Kaewta Kaewtatip
Panumas Suybangdum
Arrisa Sopajarn
Biodegradable plates made of pineapple leaf pulp with biocoatings to improve water resistance
Journal of Materials Research and Technology
Beeswax
Biodegradable
Bio-coating solutions
Chitosan
Pineapple leaf fibers
author_facet Jutarut Iewkittayakorn
Piyaporn Khunthongkaew
Yutthawee Wongnoipla
Kaewta Kaewtatip
Panumas Suybangdum
Arrisa Sopajarn
author_sort Jutarut Iewkittayakorn
title Biodegradable plates made of pineapple leaf pulp with biocoatings to improve water resistance
title_short Biodegradable plates made of pineapple leaf pulp with biocoatings to improve water resistance
title_full Biodegradable plates made of pineapple leaf pulp with biocoatings to improve water resistance
title_fullStr Biodegradable plates made of pineapple leaf pulp with biocoatings to improve water resistance
title_full_unstemmed Biodegradable plates made of pineapple leaf pulp with biocoatings to improve water resistance
title_sort biodegradable plates made of pineapple leaf pulp with biocoatings to improve water resistance
publisher Elsevier
series Journal of Materials Research and Technology
issn 2238-7854
publishDate 2020-05-01
description A crucial property of fibrous packaging paper for food is water resistance, while strength properties are also important. To improve these properties, several bio-coating solutions were applied as coatings on paper made of pineapple leaf pulp. The effects of beeswax, chitosan, shellac, alginate/gellan gum and beeswax–chitosan (1% chitosan+4%glycerol+30%beeswax) solutions on pineapple leaf pulp paper were assessed in relation to making biodegradable paper plates. The cooking time (120–180 min) of chemical pulping and the dose of pulp by moist weight (200, 250, and 300 g) to a paper frame (40 × 40 cm2) were also studied on making the paper samples. The papers were tested for their physical and mechanical properties. The optimal cooking time and dose of pulp by moist weight found were 180 min and 300 g of pulp per frame, respectively. The bio-coatings increased average grammage and thickness of paper, but gave density reduction from that of uncoated paper. Coating paper with beeswax–chitosan solution gave the longest absorbency time, followed in rank order by alginate/gellan gum, chitosan, beeswax and shellac. The maximum 5.9 kN/m2 tensile strength was found for paper coated with beeswax–chitosan solution before hot pressing. On comparing papers bio-coated before or after hot pressing, no difference was found in the degradable time with NaAlg/gellan coating, while such difference was observed with beeswax-chitosan coating. The results suggest beeswax–chitosan solution as the best among the alternatives tested, for coating paper to make biodegradable plates.
topic Beeswax
Biodegradable
Bio-coating solutions
Chitosan
Pineapple leaf fibers
url http://www.sciencedirect.com/science/article/pii/S2238785419322471
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AT yutthaweewongnoipla biodegradableplatesmadeofpineappleleafpulpwithbiocoatingstoimprovewaterresistance
AT kaewtakaewtatip biodegradableplatesmadeofpineappleleafpulpwithbiocoatingstoimprovewaterresistance
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