Development of a new pilot scale production of high grade oil palm plywood: Effect of pressing pressure.

Nowadays, the use of waste materials such as, saw dust, rice husk, coconut coir, empty fruit brunch (EFB), oil palm mass and oil palm stem (OPS) as alternative material for wood-based industry in producing various commercial product have been extensively explored. Nevertheless, the used of OPS as ra...

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Main Authors: Yeoh, Beng Hoong, Yueh, Feng Loh, Abd. Wahab, Nor Hafizah, Md. Tahir, Paridah, Harun, Jalaluddin
Format: Article
Language:English
English
Published: Elsevier 2012
Online Access:http://psasir.upm.edu.my/id/eprint/24018/1/Development%20of%20a%20new%20pilot%20scale%20production%20of%20high%20grade%20oil%20palm%20plywood.pdf
http://psasir.upm.edu.my/id/eprint/24018/
http://www.elsevier.com/
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spelling my.upm.eprints.240182015-10-26T03:01:54Z http://psasir.upm.edu.my/id/eprint/24018/ Development of a new pilot scale production of high grade oil palm plywood: Effect of pressing pressure. Yeoh, Beng Hoong Yueh, Feng Loh Abd. Wahab, Nor Hafizah Md. Tahir, Paridah Harun, Jalaluddin Nowadays, the use of waste materials such as, saw dust, rice husk, coconut coir, empty fruit brunch (EFB), oil palm mass and oil palm stem (OPS) as alternative material for wood-based industry in producing various commercial product have been extensively explored. Nevertheless, the used of OPS as raw material replacing hardwood species in plywood production has been in practice for the past 10. years. However, high resin consumption and low mechanical properties in OPS plywood are still the limitation. Hence, in this study we explored the potential of a new resin treatment approach using LmwPF in order to produce high grade OPS plywood. Pilot scale production of LmwPF treated OPS plywood was assessed for properties such as, thickness swelling, water absorption, hot-press pressure, bonding integrity, density, the modulus of rupture (MOR) and modulus of elasticity (MOE). LmwPF resin treatment of OPS in plywood production indicated that with this new resin treatment method, improvement of ≥200% in strength, ≥259% in stiffness, dimensional stability (≥6% thickness swelling and ≥36% water absorption) as well as, 28% and 80% greater in dry and WBP shear, respectively as compare to the conventional method of commercial OPS plywood. Elsevier 2012-04 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/24018/1/Development%20of%20a%20new%20pilot%20scale%20production%20of%20high%20grade%20oil%20palm%20plywood.pdf Yeoh, Beng Hoong and Yueh, Feng Loh and Abd. Wahab, Nor Hafizah and Md. Tahir, Paridah and Harun, Jalaluddin (2012) Development of a new pilot scale production of high grade oil palm plywood: Effect of pressing pressure. Materials and Design, 36 (-). pp. 215-219. ISSN 0264-1275 http://www.elsevier.com/ 10.1016/j.matdes.2011.10.004 English
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
language English
English
description Nowadays, the use of waste materials such as, saw dust, rice husk, coconut coir, empty fruit brunch (EFB), oil palm mass and oil palm stem (OPS) as alternative material for wood-based industry in producing various commercial product have been extensively explored. Nevertheless, the used of OPS as raw material replacing hardwood species in plywood production has been in practice for the past 10. years. However, high resin consumption and low mechanical properties in OPS plywood are still the limitation. Hence, in this study we explored the potential of a new resin treatment approach using LmwPF in order to produce high grade OPS plywood. Pilot scale production of LmwPF treated OPS plywood was assessed for properties such as, thickness swelling, water absorption, hot-press pressure, bonding integrity, density, the modulus of rupture (MOR) and modulus of elasticity (MOE). LmwPF resin treatment of OPS in plywood production indicated that with this new resin treatment method, improvement of ≥200% in strength, ≥259% in stiffness, dimensional stability (≥6% thickness swelling and ≥36% water absorption) as well as, 28% and 80% greater in dry and WBP shear, respectively as compare to the conventional method of commercial OPS plywood.
format Article
author Yeoh, Beng Hoong
Yueh, Feng Loh
Abd. Wahab, Nor Hafizah
Md. Tahir, Paridah
Harun, Jalaluddin
spellingShingle Yeoh, Beng Hoong
Yueh, Feng Loh
Abd. Wahab, Nor Hafizah
Md. Tahir, Paridah
Harun, Jalaluddin
Development of a new pilot scale production of high grade oil palm plywood: Effect of pressing pressure.
author_facet Yeoh, Beng Hoong
Yueh, Feng Loh
Abd. Wahab, Nor Hafizah
Md. Tahir, Paridah
Harun, Jalaluddin
author_sort Yeoh, Beng Hoong
title Development of a new pilot scale production of high grade oil palm plywood: Effect of pressing pressure.
title_short Development of a new pilot scale production of high grade oil palm plywood: Effect of pressing pressure.
title_full Development of a new pilot scale production of high grade oil palm plywood: Effect of pressing pressure.
title_fullStr Development of a new pilot scale production of high grade oil palm plywood: Effect of pressing pressure.
title_full_unstemmed Development of a new pilot scale production of high grade oil palm plywood: Effect of pressing pressure.
title_sort development of a new pilot scale production of high grade oil palm plywood: effect of pressing pressure.
publisher Elsevier
publishDate 2012
url http://psasir.upm.edu.my/id/eprint/24018/1/Development%20of%20a%20new%20pilot%20scale%20production%20of%20high%20grade%20oil%20palm%20plywood.pdf
http://psasir.upm.edu.my/id/eprint/24018/
http://www.elsevier.com/
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score 13.160551