Cost-benefit analysis of kenaf as biomaterial for automotive components

Kenaf is known as a renewable source of material that has various industrial applications. Recognized as a cash crop, it had been brought into Malaysia and was targeted to become one of the major commodities for the country. Among myriads of application, its use as bio-material for automotive compon...

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Main Author: Ong, Chu Lee
Format: Thesis
Language:English
Published: 2015
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Online Access:http://psasir.upm.edu.my/id/eprint/66500/1/FEP%202015%2025%20upmIR.pdf
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spelling my-upm-ir.665002019-01-24T07:09:12Z Cost-benefit analysis of kenaf as biomaterial for automotive components 2015-04 Ong, Chu Lee Kenaf is known as a renewable source of material that has various industrial applications. Recognized as a cash crop, it had been brought into Malaysia and was targeted to become one of the major commodities for the country. Among myriads of application, its use as bio-material for automotive components had proved viable in many technical studies. Moreover, by replacing kenaf with conventional fossil based feedstock; it can improve automobile efficiency by weight reduction which in turns brings fuel savings and avoid corresponding CO2 emission. Furthermore, kenaf is also known for its high carbon absorption ability relative to other plants which can aid in reducing global warming. In conjunction with national kenaf development programs, kenaf venturing into automotive industry seemed encouraging. However, to tap into the restrictive automotive industry; more insights and planning are needed. Thus, the advent of this study is targeted to reveal the feasibility of kenaf applications as biomaterial for automotive components with financial and economic viewpoints. Using cost-benefit analysis, this study has three consecutive objectives. The first is to identify the processes and procedures for kenaf as feedstock for automotive parts in Malaysia. Secondly, is to determine and estimate the relevant cost and benefits involve in the value chain identified. Third, is to assess the financial and economic feasibility of kenaf applications as bio-material for automotive components. This analysis enables the recognition and accounting of direct and indirect costs and benefits in monetary units to uncover the financial and economic feasibility of the project. As a result, the findings suggest that applying kenaf as bio-material for automotive components is generally viable financially and economically. However, looking at the four production stages identified – kenaf cultivation, fibre processing, compounded and non-woven composite sheets production, and utilisation into automobile parcel shelves; the results were mixed. The utilisation of kenaf as bio-material for automotive components can be financially and economically feasible with rising scale of production and with kenaf price reduction. The findings also suggest that more efforts are needed in improving competitiveness of kenaf and kenaf fibre production to enable its penetration to the automotive sector. In addition, policies are needed to promote utilisation of natural fibre in automotive industry. Kenaf - Technological innovations Motor vehicles - Malaysia Renewable natural resources 2015-04 Thesis http://psasir.upm.edu.my/id/eprint/66500/ http://psasir.upm.edu.my/id/eprint/66500/1/FEP%202015%2025%20upmIR.pdf text en public masters Universiti Putra Malaysia Kenaf - Technological innovations Motor vehicles - Malaysia Renewable natural resources
institution Universiti Putra Malaysia
collection PSAS Institutional Repository
language English
topic Kenaf - Technological innovations
Motor vehicles - Malaysia
Renewable natural resources
spellingShingle Kenaf - Technological innovations
Motor vehicles - Malaysia
Renewable natural resources
Ong, Chu Lee
Cost-benefit analysis of kenaf as biomaterial for automotive components
description Kenaf is known as a renewable source of material that has various industrial applications. Recognized as a cash crop, it had been brought into Malaysia and was targeted to become one of the major commodities for the country. Among myriads of application, its use as bio-material for automotive components had proved viable in many technical studies. Moreover, by replacing kenaf with conventional fossil based feedstock; it can improve automobile efficiency by weight reduction which in turns brings fuel savings and avoid corresponding CO2 emission. Furthermore, kenaf is also known for its high carbon absorption ability relative to other plants which can aid in reducing global warming. In conjunction with national kenaf development programs, kenaf venturing into automotive industry seemed encouraging. However, to tap into the restrictive automotive industry; more insights and planning are needed. Thus, the advent of this study is targeted to reveal the feasibility of kenaf applications as biomaterial for automotive components with financial and economic viewpoints. Using cost-benefit analysis, this study has three consecutive objectives. The first is to identify the processes and procedures for kenaf as feedstock for automotive parts in Malaysia. Secondly, is to determine and estimate the relevant cost and benefits involve in the value chain identified. Third, is to assess the financial and economic feasibility of kenaf applications as bio-material for automotive components. This analysis enables the recognition and accounting of direct and indirect costs and benefits in monetary units to uncover the financial and economic feasibility of the project. As a result, the findings suggest that applying kenaf as bio-material for automotive components is generally viable financially and economically. However, looking at the four production stages identified – kenaf cultivation, fibre processing, compounded and non-woven composite sheets production, and utilisation into automobile parcel shelves; the results were mixed. The utilisation of kenaf as bio-material for automotive components can be financially and economically feasible with rising scale of production and with kenaf price reduction. The findings also suggest that more efforts are needed in improving competitiveness of kenaf and kenaf fibre production to enable its penetration to the automotive sector. In addition, policies are needed to promote utilisation of natural fibre in automotive industry.
format Thesis
qualification_level Master's degree
author Ong, Chu Lee
author_facet Ong, Chu Lee
author_sort Ong, Chu Lee
title Cost-benefit analysis of kenaf as biomaterial for automotive components
title_short Cost-benefit analysis of kenaf as biomaterial for automotive components
title_full Cost-benefit analysis of kenaf as biomaterial for automotive components
title_fullStr Cost-benefit analysis of kenaf as biomaterial for automotive components
title_full_unstemmed Cost-benefit analysis of kenaf as biomaterial for automotive components
title_sort cost-benefit analysis of kenaf as biomaterial for automotive components
granting_institution Universiti Putra Malaysia
publishDate 2015
url http://psasir.upm.edu.my/id/eprint/66500/1/FEP%202015%2025%20upmIR.pdf
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