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Published in: Clean Technologies and Environmental Policy 3/2016

14-10-2015

Economic feasibility analysis of a solar energy and solid oxide fuel cell-based cogeneration system in Malaysia

Authors: R. K. Akikur, R. Saidur, K. R. Ullah, S. A. Hajimolana, H. W. Ping, M. A. Hussain

Published in: Clean Technologies and Environmental Policy | Issue 3/2016

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Abstract

The current study presents a concept of a cogeneration system integrated with solar energy and solid oxide fuel cell technology to supply electrical and thermal energy in Malaysia. To appraise the performance, the system is analysed with two case studies considering three modes of operation. For the case-1, typical per day average electricity and hot water demand for a single family have been considered to be 10.3 kWh and 235 l, respectively. For the case 2, electricity and hot water demand are considered for the 100 family members. Energy cost, payback period, future economic feasibility and the environmental impact of the system are analysed for both cases using an analytical approach. The overall system along with individual component efficiency has been evaluated, and the maximum efficiency of the overall system is found to be 48.64 % at the fuel cell operation mode. In the present study, the proposed system shows 42.4 % cost effectiveness at higher load. Energy costs for case-1 and case-2 have been found to be approximately $0.158 and $0.091 kWh−1, respectively, at present. Energy costs are expected to be $0.112 and $0.045 kWh−1 for the case-1 and case-2, respectively, considering future (i.e. for the year 2020) component cost.

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Literature
go back to reference Al-Qattan A, ElSherbini A, Al-Ajmi K (2014) Solid oxide fuel cell application in district cooling. J Power Sources 257:21–26CrossRef Al-Qattan A, ElSherbini A, Al-Ajmi K (2014) Solid oxide fuel cell application in district cooling. J Power Sources 257:21–26CrossRef
go back to reference Becker WL, Braun RJ, Penev M, Melaina M (2012) Design and technoeconomic performance analysis of a 1 MW solid oxide fuel cell polygeneration system for combined production of heat, hydrogen, and power. J Power Sources 200:34–44CrossRef Becker WL, Braun RJ, Penev M, Melaina M (2012) Design and technoeconomic performance analysis of a 1 MW solid oxide fuel cell polygeneration system for combined production of heat, hydrogen, and power. J Power Sources 200:34–44CrossRef
go back to reference Chen JMP, Ni M (2014) Economic analysis of a solid oxide fuel cell cogeneration/trigeneration system for hotels in Hong Kong. Energy Build 75:160–169 Chen JMP, Ni M (2014) Economic analysis of a solid oxide fuel cell cogeneration/trigeneration system for hotels in Hong Kong. Energy Build 75:160–169
go back to reference Colpan CO (2009) Thermal modeling of solid oxide fuel cell based biomass gasification systems. (Doctoral dissertation, Carleton University Ottawa) Colpan CO (2009) Thermal modeling of solid oxide fuel cell based biomass gasification systems. (Doctoral dissertation, Carleton University Ottawa)
go back to reference Cucchiella F, D’Adamo I (2015) Residential photovoltaic plant: environmental and economical implications from renewable support policies. Clean Technol Environ Policy. doi:10.1007/s10098-015-0913-1 Cucchiella F, D’Adamo I (2015) Residential photovoltaic plant: environmental and economical implications from renewable support policies. Clean Technol Environ Policy. doi:10.​1007/​s10098-015-0913-1
go back to reference Desideri U, Campana PE (2014) Analysis and comparison between a concentrating solar and a photovoltaic power plant. Appl Energy 113:422–433CrossRef Desideri U, Campana PE (2014) Analysis and comparison between a concentrating solar and a photovoltaic power plant. Appl Energy 113:422–433CrossRef
go back to reference Gardner F (1997) Thermodynamic processes in solid oxide and other fuel cells. Proc Inst Mech Eng Part A J Power Energy 211:367–380CrossRef Gardner F (1997) Thermodynamic processes in solid oxide and other fuel cells. Proc Inst Mech Eng Part A J Power Energy 211:367–380CrossRef
go back to reference Lamas J, Shimizu H, Matsumura E, Senda J (2013) Fuel consumption analysis of a residential cogeneration system using a solid oxide fuel cell with regulation of heat to power ratio. Int J Hydrogen Energy 38:16338–16343CrossRef Lamas J, Shimizu H, Matsumura E, Senda J (2013) Fuel consumption analysis of a residential cogeneration system using a solid oxide fuel cell with regulation of heat to power ratio. Int J Hydrogen Energy 38:16338–16343CrossRef
go back to reference Mahlia TMI, Chan PL (2011) Life cycle cost analysis of fuel cell based cogeneration system for residential application in Malaysia. Renew Sustain Energy Rev 15:416–426CrossRef Mahlia TMI, Chan PL (2011) Life cycle cost analysis of fuel cell based cogeneration system for residential application in Malaysia. Renew Sustain Energy Rev 15:416–426CrossRef
go back to reference Mohammad Rozali N, Wan Alwi S, Manan Z, Klemeš J, Hassan M (2015) A process integration approach for design of hybrid power systems with energy storage. Clean Technol Environ Policy. doi:10.1007/s10098-015-0934-9 Mohammad Rozali N, Wan Alwi S, Manan Z, Klemeš J, Hassan M (2015) A process integration approach for design of hybrid power systems with energy storage. Clean Technol Environ Policy. doi:10.​1007/​s10098-015-0934-9
go back to reference Naimaster E, Sleiti A (2013) Potential of SOFC CHP systems for energy-efficient commercial buildings. Energy Build 61:153–160CrossRef Naimaster E, Sleiti A (2013) Potential of SOFC CHP systems for energy-efficient commercial buildings. Energy Build 61:153–160CrossRef
go back to reference Ngan MS, Tan CW (2012) Assessment of economic viability for PV/wind/diesel hybrid energy system in southern Peninsular Malaysia. Renew Sustain Energy Rev 16:634–647CrossRef Ngan MS, Tan CW (2012) Assessment of economic viability for PV/wind/diesel hybrid energy system in southern Peninsular Malaysia. Renew Sustain Energy Rev 16:634–647CrossRef
go back to reference Ni M, Leung MK, Leung DY (2006) A modeling study on concentration overpotentials of a reversible solid oxide fuel cell. J Power Sources 163:460–466CrossRef Ni M, Leung MK, Leung DY (2006) A modeling study on concentration overpotentials of a reversible solid oxide fuel cell. J Power Sources 163:460–466CrossRef
go back to reference Ni M, Leung MK, Leung DY (2007a) Energy and exergy analysis of hydrogen production by solid oxide steam electrolyzer plant. Int J Hydrogen Energy 32:4648–4660CrossRef Ni M, Leung MK, Leung DY (2007a) Energy and exergy analysis of hydrogen production by solid oxide steam electrolyzer plant. Int J Hydrogen Energy 32:4648–4660CrossRef
go back to reference Ni M, Leung MK, Leung DY (2007b) Parametric study of solid oxide fuel cell performance. Energy Convers Manag 48:1525–1535CrossRef Ni M, Leung MK, Leung DY (2007b) Parametric study of solid oxide fuel cell performance. Energy Convers Manag 48:1525–1535CrossRef
go back to reference Shezan SA, Saidur R, Ullah KR, Hossain A, Chong WT, Julai S (2015) Feasibility analysis of a hybrid off-grid wind–DG-battery energy system for the eco-tourism remote areas. Clean Technol Environ Policy. doi:10.1007/s10098-015-0983-0 Shezan SA, Saidur R, Ullah KR, Hossain A, Chong WT, Julai S (2015) Feasibility analysis of a hybrid off-grid wind–DG-battery energy system for the eco-tourism remote areas. Clean Technol Environ Policy. doi:10.​1007/​s10098-015-0983-0
go back to reference Solangi KH, Islam MR, Saidur R, Rahim NA, Fayaz H (2011) A review on global solar energy policy. Renew Sustain Energy Rev 15:2149–2163CrossRef Solangi KH, Islam MR, Saidur R, Rahim NA, Fayaz H (2011) A review on global solar energy policy. Renew Sustain Energy Rev 15:2149–2163CrossRef
go back to reference Tanaka T, Kamiko H, Bando T, Zaffirah A, Kakimoto N, Inui Y, Maeda T (2014) Energetic analysis of SOFC co-generation system integrated with EV charging station installed in multifamily apartment. Int J Hydrogen Energy 39(10):5097–5104. doi:10.1016/j.ijhydene.2014.01.073 Tanaka T, Kamiko H, Bando T, Zaffirah A, Kakimoto N, Inui Y, Maeda T (2014) Energetic analysis of SOFC co-generation system integrated with EV charging station installed in multifamily apartment. Int J Hydrogen Energy 39(10):5097–5104. doi:10.​1016/​j.​ijhydene.​2014.​01.​073
go back to reference Vialetto G, Rokni M (2015) Innovative household systems based on solid oxide fuel cells for a northern European climate. Renewable Energy 78:146–156CrossRef Vialetto G, Rokni M (2015) Innovative household systems based on solid oxide fuel cells for a northern European climate. Renewable Energy 78:146–156CrossRef
go back to reference Zink F, Lu Y, Schaefer L (2007) A solid oxide fuel cell system for buildings. Energy Convers Manag 48:809–818CrossRef Zink F, Lu Y, Schaefer L (2007) A solid oxide fuel cell system for buildings. Energy Convers Manag 48:809–818CrossRef
Metadata
Title
Economic feasibility analysis of a solar energy and solid oxide fuel cell-based cogeneration system in Malaysia
Authors
R. K. Akikur
R. Saidur
K. R. Ullah
S. A. Hajimolana
H. W. Ping
M. A. Hussain
Publication date
14-10-2015
Publisher
Springer Berlin Heidelberg
Published in
Clean Technologies and Environmental Policy / Issue 3/2016
Print ISSN: 1618-954X
Electronic ISSN: 1618-9558
DOI
https://doi.org/10.1007/s10098-015-1050-6

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