Formulation and characterization of formaldehyde free chemically modified bone-based adhesive for lignocellulosic composite products
This study investigates the efficacy of chemically modified bone adhesive as a formaldehyde-free binder for wood-based industries. Two different types of adhesive are formulated after chemical modification of bone powder using sulfuric acid (0.5 m) and polyvinyl acetate (PVA). Gel time, solid conten...
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Wiley-VCH GmbH
2021
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my.ums.eprints.302462021-08-21T05:13:59Z https://eprints.ums.edu.my/id/eprint/30246/ Formulation and characterization of formaldehyde free chemically modified bone-based adhesive for lignocellulosic composite products Md Nazrul Islam Afroza Akter Liza Mst. Liza Khatun Md Omar Faruk Atanu Kumar Das Moutusi Dey Md Jahurul Haque Akanda QD1-999 Chemistry S583-587.73 Agricultural chemistry. Agricultural chemicals This study investigates the efficacy of chemically modified bone adhesive as a formaldehyde-free binder for wood-based industries. Two different types of adhesive are formulated after chemical modification of bone powder using sulfuric acid (0.5 m) and polyvinyl acetate (PVA). Gel time, solid content, Fourier-transform infrared spectroscopy (FT-IR), thermogravimetric analysis (TGA), viscosity, and single lap joint test for shear strength are analyzed in order to assess the adhesive properties. To analyze the efficacy of the formulated adhesive, particleboards are fabricated using boiled and unboiled sugarcane bagasse. The physical and mechanical properties of the fabricated panels are measured following ASTM standards. It is found that adhesive Type C (T-C) has the shortest gel time of 4.2 min for the highest shear strength, i.e., 5.31 MPa. The particleboard (BTC-2) fabricated using T-C adhesive shows a highest density of 0.73 g cm−3, a modulus of elasticity (MOE) of 1975 N mm−2, and a modulus of rupture (MOR) of 11.80 N mm−2. The dimensional stability of the fabricated particleboards does not follow the standard requirements; however, further study might be helpful for using the chemically modified bone adhesive as a biobased adhesive. Wiley-VCH GmbH 2021 Article PeerReviewed text en https://eprints.ums.edu.my/id/eprint/30246/1/Formulation%20and%20characterization%20of%20formaldehyde%20free%20chemically%20modified%20bone-based%20adhesive%20for%20lignocellulosic%20composite%20products%20ABSTRACT.pdf text en https://eprints.ums.edu.my/id/eprint/30246/2/Formulation%20and%20characterization%20of%20formaldehyde%20free%20chemically%20modified%20bone-based%20adhesive%20for%20lignocellulosic%20composite%20products%20FULL%20TEXT.pdf Md Nazrul Islam and Afroza Akter Liza and Mst. Liza Khatun and Md Omar Faruk and Atanu Kumar Das and Moutusi Dey and Md Jahurul Haque Akanda (2021) Formulation and characterization of formaldehyde free chemically modified bone-based adhesive for lignocellulosic composite products. Global Challenges. pp. 1-12. ISSN 2056-6646 https://onlinelibrary.wiley.com/doi/epdf/10.1002/gch2.202100002 https://doi.org/10.1002/gch2.202100002 |
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QD1-999 Chemistry S583-587.73 Agricultural chemistry. Agricultural chemicals Md Nazrul Islam Afroza Akter Liza Mst. Liza Khatun Md Omar Faruk Atanu Kumar Das Moutusi Dey Md Jahurul Haque Akanda Formulation and characterization of formaldehyde free chemically modified bone-based adhesive for lignocellulosic composite products |
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This study investigates the efficacy of chemically modified bone adhesive as a formaldehyde-free binder for wood-based industries. Two different types of adhesive are formulated after chemical modification of bone powder using sulfuric acid (0.5 m) and polyvinyl acetate (PVA). Gel time, solid content, Fourier-transform infrared spectroscopy (FT-IR), thermogravimetric analysis (TGA), viscosity, and single lap joint test for shear strength are analyzed in order to assess the adhesive properties. To analyze the efficacy of the formulated adhesive, particleboards are fabricated using boiled and unboiled sugarcane bagasse. The physical and mechanical properties of the fabricated panels are measured following ASTM standards. It is found that adhesive Type C (T-C) has the shortest gel time of 4.2 min for the highest shear strength, i.e., 5.31 MPa. The particleboard (BTC-2) fabricated using T-C adhesive shows a highest density of 0.73 g cm−3, a modulus of elasticity (MOE) of 1975 N mm−2, and a modulus of rupture (MOR) of 11.80 N mm−2. The dimensional stability of the fabricated particleboards does not follow the standard requirements; however, further study might be helpful for using the chemically modified bone adhesive as a biobased adhesive. |
format |
Article |
author |
Md Nazrul Islam Afroza Akter Liza Mst. Liza Khatun Md Omar Faruk Atanu Kumar Das Moutusi Dey Md Jahurul Haque Akanda |
author_facet |
Md Nazrul Islam Afroza Akter Liza Mst. Liza Khatun Md Omar Faruk Atanu Kumar Das Moutusi Dey Md Jahurul Haque Akanda |
author_sort |
Md Nazrul Islam |
title |
Formulation and characterization of formaldehyde free chemically modified bone-based adhesive for lignocellulosic composite products |
title_short |
Formulation and characterization of formaldehyde free chemically modified bone-based adhesive for lignocellulosic composite products |
title_full |
Formulation and characterization of formaldehyde free chemically modified bone-based adhesive for lignocellulosic composite products |
title_fullStr |
Formulation and characterization of formaldehyde free chemically modified bone-based adhesive for lignocellulosic composite products |
title_full_unstemmed |
Formulation and characterization of formaldehyde free chemically modified bone-based adhesive for lignocellulosic composite products |
title_sort |
formulation and characterization of formaldehyde free chemically modified bone-based adhesive for lignocellulosic composite products |
publisher |
Wiley-VCH GmbH |
publishDate |
2021 |
url |
https://eprints.ums.edu.my/id/eprint/30246/1/Formulation%20and%20characterization%20of%20formaldehyde%20free%20chemically%20modified%20bone-based%20adhesive%20for%20lignocellulosic%20composite%20products%20ABSTRACT.pdf https://eprints.ums.edu.my/id/eprint/30246/2/Formulation%20and%20characterization%20of%20formaldehyde%20free%20chemically%20modified%20bone-based%20adhesive%20for%20lignocellulosic%20composite%20products%20FULL%20TEXT.pdf https://eprints.ums.edu.my/id/eprint/30246/ https://onlinelibrary.wiley.com/doi/epdf/10.1002/gch2.202100002 https://doi.org/10.1002/gch2.202100002 |
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1760230737932451840 |
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13.214268 |