P-graph approach in value chain modeling of rice husk-fired biomass processes

The world energy demand will keep rising and put a strain on all sources of energy unless a change is made. Countries, like the Philippines, which rely heavily on agriculture can make use of the biomass they produce to generate energy. This paper developed a framework on rice husk-fired biomass valu...

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Main Author: Maleniza, Michael Reiji A.
Format: text
Language:English
Published: Animo Repository 2022
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Online Access:https://animorepository.dlsu.edu.ph/etdb_chemeng/8
https://animorepository.dlsu.edu.ph/cgi/viewcontent.cgi?article=1008&context=etdb_chemeng
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Institution: De La Salle University
Language: English
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spelling oai:animorepository.dlsu.edu.ph:etdb_chemeng-10082022-03-01T08:25:06Z P-graph approach in value chain modeling of rice husk-fired biomass processes Maleniza, Michael Reiji A. The world energy demand will keep rising and put a strain on all sources of energy unless a change is made. Countries, like the Philippines, which rely heavily on agriculture can make use of the biomass they produce to generate energy. This paper developed a framework on rice husk-fired biomass value chains using P-graph which generate high-value energy products. A process flow diagram was first created using existing literature to determine the input flows and output flows between each technology to be used for the conversion of rice husks into high-value energy products. This process flow diagram was then transformed into a P-graph model. Two case studies were created from this process flow diagram where the first one only generates bioelectricity as its high-value energy product while the second one generates diesel, jet fuel, and bioelectricity as its high-value energy products. An optimal solution structure was chosen from each case study based on its economic returns and environmental impact. A sensitivity analysis was performed on the optimal solutions of both case studies to determine the effect of changing the product demand on the overall system. The results of these case studies show that the framework can produce optimal solutions which generate high-value products at a steady profit and low environmental impact. The framework presented can be used to help guide policy decisions by transforming existing rice-based value chains to be more efficient and sustainable. 2022-01-01T08:00:00Z text application/pdf https://animorepository.dlsu.edu.ph/etdb_chemeng/8 https://animorepository.dlsu.edu.ph/cgi/viewcontent.cgi?article=1008&context=etdb_chemeng Chemical Engineering Bachelor's Theses English Animo Repository Rice hulls as fuel Biomass Chemical Engineering
institution De La Salle University
building De La Salle University Library
continent Asia
country Philippines
Philippines
content_provider De La Salle University Library
collection DLSU Institutional Repository
language English
topic Rice hulls as fuel
Biomass
Chemical Engineering
spellingShingle Rice hulls as fuel
Biomass
Chemical Engineering
Maleniza, Michael Reiji A.
P-graph approach in value chain modeling of rice husk-fired biomass processes
description The world energy demand will keep rising and put a strain on all sources of energy unless a change is made. Countries, like the Philippines, which rely heavily on agriculture can make use of the biomass they produce to generate energy. This paper developed a framework on rice husk-fired biomass value chains using P-graph which generate high-value energy products. A process flow diagram was first created using existing literature to determine the input flows and output flows between each technology to be used for the conversion of rice husks into high-value energy products. This process flow diagram was then transformed into a P-graph model. Two case studies were created from this process flow diagram where the first one only generates bioelectricity as its high-value energy product while the second one generates diesel, jet fuel, and bioelectricity as its high-value energy products. An optimal solution structure was chosen from each case study based on its economic returns and environmental impact. A sensitivity analysis was performed on the optimal solutions of both case studies to determine the effect of changing the product demand on the overall system. The results of these case studies show that the framework can produce optimal solutions which generate high-value products at a steady profit and low environmental impact. The framework presented can be used to help guide policy decisions by transforming existing rice-based value chains to be more efficient and sustainable.
format text
author Maleniza, Michael Reiji A.
author_facet Maleniza, Michael Reiji A.
author_sort Maleniza, Michael Reiji A.
title P-graph approach in value chain modeling of rice husk-fired biomass processes
title_short P-graph approach in value chain modeling of rice husk-fired biomass processes
title_full P-graph approach in value chain modeling of rice husk-fired biomass processes
title_fullStr P-graph approach in value chain modeling of rice husk-fired biomass processes
title_full_unstemmed P-graph approach in value chain modeling of rice husk-fired biomass processes
title_sort p-graph approach in value chain modeling of rice husk-fired biomass processes
publisher Animo Repository
publishDate 2022
url https://animorepository.dlsu.edu.ph/etdb_chemeng/8
https://animorepository.dlsu.edu.ph/cgi/viewcontent.cgi?article=1008&context=etdb_chemeng
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