Prediction of physical properties of oil palm biomass reinforced polyethylene: Linear regression approach

In recent years, there has been an increasing interest on renewable resources for consumer products and biodegradable materials.Traditional polymeric materials derived from petro-chemical sources do not degrade and disposal of such materials is a major concern in minimizing the environmental proble...

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Main Authors: Abu Bakar, Syamsiah, Mohd Dom, Rosma, Akbarally, Ajab Bai, Wan Hassan, Wan Hasamudin
Format: Conference or Workshop Item
Language:English
Published: 2011
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Online Access:http://repo.uum.edu.my/13634/1/123.pdf
http://repo.uum.edu.my/13634/
http://www.icoci.cms.net.my
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spelling my.uum.repo.136342015-04-07T08:00:23Z http://repo.uum.edu.my/13634/ Prediction of physical properties of oil palm biomass reinforced polyethylene: Linear regression approach Abu Bakar, Syamsiah Mohd Dom, Rosma Akbarally, Ajab Bai Wan Hassan, Wan Hasamudin QA76 Computer software In recent years, there has been an increasing interest on renewable resources for consumer products and biodegradable materials.Traditional polymeric materials derived from petro-chemical sources do not degrade and disposal of such materials is a major concern in minimizing the environmental problems. Currently, experiments are carried out in laboratories to determine the physical properties of degradable plastics which include melt flow index (MFI), melting point (MP) and Density.Oil palm biomass (OPB) is used as bio-active components in the formulation with Polyethylene (PE).Alternatively, a different approach is required as to minimize the time consume, the cost of production and the cost of labor.In this study, Linear Regression model has been developed and used to predict the physical properties of degradable plastics.The ability of Linear Regression model is assessed by comparing the theoretical results with the actual lab results using correlation coefficient (r) and coefficient of determination (R2).The result showed that the percentage prediction accuracy for MFI is 93%, 71% for the prediction of MP and 24% for the prediction of Density respectively using linear regression.The study proves that the use of Linear Regression model for predicting the physical properties of degradable plastics is highly feasible. 2011-06-08 Conference or Workshop Item PeerReviewed application/pdf en http://repo.uum.edu.my/13634/1/123.pdf Abu Bakar, Syamsiah and Mohd Dom, Rosma and Akbarally, Ajab Bai and Wan Hassan, Wan Hasamudin (2011) Prediction of physical properties of oil palm biomass reinforced polyethylene: Linear regression approach. In: 3rd International Conference on Computing and Informatics (ICOCI 2011), 8-9 June 2011, Bandung, Indonesia. http://www.icoci.cms.net.my
institution Universiti Utara Malaysia
building UUM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Utara Malaysia
content_source UUM Institutionali Repository
url_provider http://repo.uum.edu.my/
language English
topic QA76 Computer software
spellingShingle QA76 Computer software
Abu Bakar, Syamsiah
Mohd Dom, Rosma
Akbarally, Ajab Bai
Wan Hassan, Wan Hasamudin
Prediction of physical properties of oil palm biomass reinforced polyethylene: Linear regression approach
description In recent years, there has been an increasing interest on renewable resources for consumer products and biodegradable materials.Traditional polymeric materials derived from petro-chemical sources do not degrade and disposal of such materials is a major concern in minimizing the environmental problems. Currently, experiments are carried out in laboratories to determine the physical properties of degradable plastics which include melt flow index (MFI), melting point (MP) and Density.Oil palm biomass (OPB) is used as bio-active components in the formulation with Polyethylene (PE).Alternatively, a different approach is required as to minimize the time consume, the cost of production and the cost of labor.In this study, Linear Regression model has been developed and used to predict the physical properties of degradable plastics.The ability of Linear Regression model is assessed by comparing the theoretical results with the actual lab results using correlation coefficient (r) and coefficient of determination (R2).The result showed that the percentage prediction accuracy for MFI is 93%, 71% for the prediction of MP and 24% for the prediction of Density respectively using linear regression.The study proves that the use of Linear Regression model for predicting the physical properties of degradable plastics is highly feasible.
format Conference or Workshop Item
author Abu Bakar, Syamsiah
Mohd Dom, Rosma
Akbarally, Ajab Bai
Wan Hassan, Wan Hasamudin
author_facet Abu Bakar, Syamsiah
Mohd Dom, Rosma
Akbarally, Ajab Bai
Wan Hassan, Wan Hasamudin
author_sort Abu Bakar, Syamsiah
title Prediction of physical properties of oil palm biomass reinforced polyethylene: Linear regression approach
title_short Prediction of physical properties of oil palm biomass reinforced polyethylene: Linear regression approach
title_full Prediction of physical properties of oil palm biomass reinforced polyethylene: Linear regression approach
title_fullStr Prediction of physical properties of oil palm biomass reinforced polyethylene: Linear regression approach
title_full_unstemmed Prediction of physical properties of oil palm biomass reinforced polyethylene: Linear regression approach
title_sort prediction of physical properties of oil palm biomass reinforced polyethylene: linear regression approach
publishDate 2011
url http://repo.uum.edu.my/13634/1/123.pdf
http://repo.uum.edu.my/13634/
http://www.icoci.cms.net.my
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score 13.160551