Optimal design and synthesis of rice supply chain

Continuous rise in energy cost and increased competitiveness have motivated rice enterprises to find new ways to improve productivity, reduce resource consumption, minimise waste generation, and ultimately, raise profitability. Consequently, there has been extensive research and development works in...

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主要作者: Lim, Jeng Shiun
格式: Thesis
語言:英语
出版: 2013
主題:
在線閱讀:http://eprints.utm.my/37895/5/LimJengShiunPFKK2013.pdf
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author Lim, Jeng Shiun
author_facet Lim, Jeng Shiun
author_sort Lim, Jeng Shiun
description Continuous rise in energy cost and increased competitiveness have motivated rice enterprises to find new ways to improve productivity, reduce resource consumption, minimise waste generation, and ultimately, raise profitability. Consequently, there has been extensive research and development works in the conversion of the by-products from rice mills into value-added products. However, most of the works on the improvement of the rice mill and its downstream processes have been carried out in the piece-meal manner. There is a clear need for a systematic framework to optimise and improve the existing rice mill and its value-added processes in an integrated, resource-efficient way. The new framework developed in this thesis includes four key components as described below. Component 1: A new cost-screening framework that is known as the resource-efficient screening (RES) method to screen the rice value chain and select the products and technologies targeted to maximise profit. Component 2: The framework for an integrated, resource-efficient (IRE) rice mill complex to synthesise the processes by evaluating the trade-off between the product revenue, capital investment and utility consumption. The model also considers the seasonality and degradation of rice resources with time. Component 3: A new framework called the integrated, resource-efficient (MSIRE) framework has also been developed for the rice enterprise that operates a cluster of rice mills at different locations. The MSIRE framework is used to determine the product portfolio for each rice mill, the location of the cogeneration system and its optimal scale, whether to expand the current processing facility or to build a new facility and the configuration of the paddy and rice husk logistic network. Component 4: A framework that combines the optimal logistic network of rice husk, with the rice mill’s utility supply network has also been developed. These frameworks were successfully implemented on several case studies involving different scenarios of a national rice enterprise, and produced significant improvement in the enterprise’s profitability.
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spelling uthm-378952017-07-06T01:37:38Z http://eprints.utm.my/37895/ Optimal design and synthesis of rice supply chain Lim, Jeng Shiun TJ Mechanical engineering and machinery Continuous rise in energy cost and increased competitiveness have motivated rice enterprises to find new ways to improve productivity, reduce resource consumption, minimise waste generation, and ultimately, raise profitability. Consequently, there has been extensive research and development works in the conversion of the by-products from rice mills into value-added products. However, most of the works on the improvement of the rice mill and its downstream processes have been carried out in the piece-meal manner. There is a clear need for a systematic framework to optimise and improve the existing rice mill and its value-added processes in an integrated, resource-efficient way. The new framework developed in this thesis includes four key components as described below. Component 1: A new cost-screening framework that is known as the resource-efficient screening (RES) method to screen the rice value chain and select the products and technologies targeted to maximise profit. Component 2: The framework for an integrated, resource-efficient (IRE) rice mill complex to synthesise the processes by evaluating the trade-off between the product revenue, capital investment and utility consumption. The model also considers the seasonality and degradation of rice resources with time. Component 3: A new framework called the integrated, resource-efficient (MSIRE) framework has also been developed for the rice enterprise that operates a cluster of rice mills at different locations. The MSIRE framework is used to determine the product portfolio for each rice mill, the location of the cogeneration system and its optimal scale, whether to expand the current processing facility or to build a new facility and the configuration of the paddy and rice husk logistic network. Component 4: A framework that combines the optimal logistic network of rice husk, with the rice mill’s utility supply network has also been developed. These frameworks were successfully implemented on several case studies involving different scenarios of a national rice enterprise, and produced significant improvement in the enterprise’s profitability. 2013-07 Thesis NonPeerReviewed application/pdf en http://eprints.utm.my/37895/5/LimJengShiunPFKK2013.pdf Lim, Jeng Shiun (2013) Optimal design and synthesis of rice supply chain. PhD thesis, Universiti Teknologi Malaysia, Faculty of Chemical Engineering.
spellingShingle TJ Mechanical engineering and machinery
Lim, Jeng Shiun
Optimal design and synthesis of rice supply chain
title Optimal design and synthesis of rice supply chain
title_full Optimal design and synthesis of rice supply chain
title_fullStr Optimal design and synthesis of rice supply chain
title_full_unstemmed Optimal design and synthesis of rice supply chain
title_short Optimal design and synthesis of rice supply chain
title_sort optimal design and synthesis of rice supply chain
topic TJ Mechanical engineering and machinery
url http://eprints.utm.my/37895/5/LimJengShiunPFKK2013.pdf
url-record http://eprints.utm.my/37895/
work_keys_str_mv AT limjengshiun optimaldesignandsynthesisofricesupplychain