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Erschienen in: Clean Technologies and Environmental Policy 6/2015

01.08.2015 | Original Paper

Optimal operation of a distributed energy generation system for a sustainable palm oil-based eco-community

verfasst von: Wai Shin Ho, Cheng Seong Khor, Haslenda Hashim, Jeng Shiun Lim, Suichi Ashina, Diego Silva Herran

Erschienen in: Clean Technologies and Environmental Policy | Ausgabe 6/2015

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Abstract

The palm oil industry potentially can be environmentally sustainable through utilizing the vast availability of biomass residues from palm oil mills as renewable energy sources. This work addresses the optimal operation of a combined bioenergy and solar PV distributed energy generation system to meet the electricity and heat demands of an eco-community comprising a palm oil mill and its surrounding residential community. A multiperiod mixed-integer linear programming planning and scheduling model is formulated on an hourly basis that optimally selects the power generation mix from among available biomass, biogas, and solar energy resources with consideration for energy storage and load shifting. A multiscenario approach is employed that considers scenarios in the form of many possible weather conditions and various energy profiles under varying mill operation modes and residential electricity consumption. The proposed approach is demonstrated on a realistic case study for a palm oil mill in the Iskandar Malaysia economic development region. The computational results indicate that biomass-based resource is the preferred renewable energy to be implemented due to the high cost associated with solar PV. As well, load shifting and energy storage can be feasibly deployed for demand peak shaving particularly for solar PV systems.

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Literatur
Zurück zum Zitat Bazmi AA, Zahedi G, Hashim H (2011) Progress and challenges in utilization of palm oil biomass as fuel for decentralized electricity generation. Renew Sustain Energy Rev 15:574–583CrossRef Bazmi AA, Zahedi G, Hashim H (2011) Progress and challenges in utilization of palm oil biomass as fuel for decentralized electricity generation. Renew Sustain Energy Rev 15:574–583CrossRef
Zurück zum Zitat Evald A (2005) Renewable energy resources. In: Report for Government of Malaysia’s Ministry of Natural Resources and Environment and Danish International Development Agency (DANIDA): Integrated Resource Planning Evald A (2005) Renewable energy resources. In: Report for Government of Malaysia’s Ministry of Natural Resources and Environment and Danish International Development Agency (DANIDA): Integrated Resource Planning
Zurück zum Zitat Foo DCY, Tan RR, Lam HL, Abdul Aziz MK, Klemeš JJ (2013) Robust models for the synthesis of flexible palm oil-based regional bioenergy supply chain. Energy 55:68–73CrossRef Foo DCY, Tan RR, Lam HL, Abdul Aziz MK, Klemeš JJ (2013) Robust models for the synthesis of flexible palm oil-based regional bioenergy supply chain. Energy 55:68–73CrossRef
Zurück zum Zitat Gupta A, Saini RP, Sharma MP (2011a) Modelling of hybrid energy system—Part I: problem formulation and model development. Renew Energy 36(2):459–465CrossRef Gupta A, Saini RP, Sharma MP (2011a) Modelling of hybrid energy system—Part I: problem formulation and model development. Renew Energy 36(2):459–465CrossRef
Zurück zum Zitat Gupta A, Saini RP, Sharma MP (2011b) Modelling of hybrid energy system—Part II: combined dispatch strategies and solution algorithm. Renew Energy 36(2):466–473CrossRef Gupta A, Saini RP, Sharma MP (2011b) Modelling of hybrid energy system—Part II: combined dispatch strategies and solution algorithm. Renew Energy 36(2):466–473CrossRef
Zurück zum Zitat Gupta A, Saini RP, Sharma MP (2011c) Modelling of hybrid energy system—Part III: case study with simulation results. Renew Energy 36(2):474–481CrossRef Gupta A, Saini RP, Sharma MP (2011c) Modelling of hybrid energy system—Part III: case study with simulation results. Renew Energy 36(2):474–481CrossRef
Zurück zum Zitat Hansen SB, Olsen SI, Ujang Z (2012) Greenhouse gas reductions through enhanced use of residues in the life cycle of Malaysian palm oil derived biodiesel. Bioresour Technol 104:358–366CrossRef Hansen SB, Olsen SI, Ujang Z (2012) Greenhouse gas reductions through enhanced use of residues in the life cycle of Malaysian palm oil derived biodiesel. Bioresour Technol 104:358–366CrossRef
Zurück zum Zitat Hashim H, Ho WS, Lim JS, Macchietto S (2014) Integrated biomass and solar town: incorporation of load shifting and energy storage. Energy 75(PRES’13 Special Issue):31–39 Hashim H, Ho WS, Lim JS, Macchietto S (2014) Integrated biomass and solar town: incorporation of load shifting and energy storage. Energy 75(PRES’13 Special Issue):31–39
Zurück zum Zitat Herran DS, Nakata T (2012) Design of decentralized energy systems for rural electrification in developing countries considering regional disparity. Appl Energy 91(1):130–145CrossRef Herran DS, Nakata T (2012) Design of decentralized energy systems for rural electrification in developing countries considering regional disparity. Appl Energy 91(1):130–145CrossRef
Zurück zum Zitat Ho WS, Hashim H, Hassim MH, Muis ZA, Shamsuddin NLM (2012) Design of distributed energy system through electric system cascade analysis (ESCA). Appl Energy 99:309–315CrossRef Ho WS, Hashim H, Hassim MH, Muis ZA, Shamsuddin NLM (2012) Design of distributed energy system through electric system cascade analysis (ESCA). Appl Energy 99:309–315CrossRef
Zurück zum Zitat Ho WS, Hashim H, Lim JS, Klemes JJ (2013) Combined design and load shifting for distributed energy system. Clean Technol Environ Policy 15(3):433–444CrossRef Ho WS, Hashim H, Lim JS, Klemes JJ (2013) Combined design and load shifting for distributed energy system. Clean Technol Environ Policy 15(3):433–444CrossRef
Zurück zum Zitat Ho WS, Chin HY, Wong KC, Muis ZA, Hashim H (2014a) Grid-connected distributed energy generation system planning and scheduling. Desalin Water Treat 52(4–6):1202–1213CrossRef Ho WS, Chin HY, Wong KC, Muis ZA, Hashim H (2014a) Grid-connected distributed energy generation system planning and scheduling. Desalin Water Treat 52(4–6):1202–1213CrossRef
Zurück zum Zitat Ho WS, Hashim H, Lim JS (2014b) Integrated biomass and solar town concept for a smart eco-village in Iskandar Malaysia (IM). Renew Energy 69:190–201CrossRef Ho WS, Hashim H, Lim JS (2014b) Integrated biomass and solar town concept for a smart eco-village in Iskandar Malaysia (IM). Renew Energy 69:190–201CrossRef
Zurück zum Zitat Ho WS, Khor CS, Hashim H, Macchietto S, Klemes JJ (2014c) SAHPPA: a novel power pinch analysis approach for the design of off-grid hybrid energy systems. Clean Technol Environ Policy 16(5):957–970CrossRef Ho WS, Khor CS, Hashim H, Macchietto S, Klemes JJ (2014c) SAHPPA: a novel power pinch analysis approach for the design of off-grid hybrid energy systems. Clean Technol Environ Policy 16(5):957–970CrossRef
Zurück zum Zitat Ho WS, Tohid MZWM, Hashim H, Muis ZA (2014d) Electric system cascade analysis (ESCA): solar PV system. Int J Electr Power Energy Syst 54:481–486CrossRef Ho WS, Tohid MZWM, Hashim H, Muis ZA (2014d) Electric system cascade analysis (ESCA): solar PV system. Int J Electr Power Energy Syst 54:481–486CrossRef
Zurück zum Zitat Kasivisvanathan H, Ng RTL, Tay DHS, Ng DKS (2012) Fuzzy optimisation for retrofitting a palm oil mill into a sustainable palm oil-based integrated biorefinery. Chem Eng J 200:694–709CrossRef Kasivisvanathan H, Ng RTL, Tay DHS, Ng DKS (2012) Fuzzy optimisation for retrofitting a palm oil mill into a sustainable palm oil-based integrated biorefinery. Chem Eng J 200:694–709CrossRef
Zurück zum Zitat Liu P, Pistikopoulos EN, Li Z (2010a) An energy systems engineering approach to the optimal design of energy systems in commercial buildings. Energy Policy 38(8):4224–4231CrossRef Liu P, Pistikopoulos EN, Li Z (2010a) An energy systems engineering approach to the optimal design of energy systems in commercial buildings. Energy Policy 38(8):4224–4231CrossRef
Zurück zum Zitat Liu P, Pistikopoulos EN, Li Z (2010b) A multi-objective optimization approach to polygeneration energy systems design. AIChE J 56(5):1218–1234CrossRef Liu P, Pistikopoulos EN, Li Z (2010b) A multi-objective optimization approach to polygeneration energy systems design. AIChE J 56(5):1218–1234CrossRef
Zurück zum Zitat Mehleri ED, Sarimveis H, Markatos NC, Papageorgiou LG (2012) A mathematical programming approach for optimal design of distributed energy systems at the neighbourhood level. Energy 44(1):96–104CrossRef Mehleri ED, Sarimveis H, Markatos NC, Papageorgiou LG (2012) A mathematical programming approach for optimal design of distributed energy systems at the neighbourhood level. Energy 44(1):96–104CrossRef
Zurück zum Zitat Mulvey JM, Vanderbei RJ, Zenios SA (1995) Robust optimization of large-scale systems. Oper Res 43(2):264–281CrossRef Mulvey JM, Vanderbei RJ, Zenios SA (1995) Robust optimization of large-scale systems. Oper Res 43(2):264–281CrossRef
Zurück zum Zitat Nemet A, Kravanja Z, Klemes JJ (2012) Integration of solar thermal energy into processes with heat demand. Clean Technol Environ Policy 14(3):453–463CrossRef Nemet A, Kravanja Z, Klemes JJ (2012) Integration of solar thermal energy into processes with heat demand. Clean Technol Environ Policy 14(3):453–463CrossRef
Zurück zum Zitat Pruitt KA, Braun RJ, Newman AM (2013) Evaluating shortfalls in mixed-integer programming approaches for the optimal design and dispatch of distributed generation systems. Appl Energy 102:386–398CrossRef Pruitt KA, Braun RJ, Newman AM (2013) Evaluating shortfalls in mixed-integer programming approaches for the optimal design and dispatch of distributed generation systems. Appl Energy 102:386–398CrossRef
Zurück zum Zitat Ren HB, Gao WJ (2010) A MILP model for integrated plan and evaluation of distributed energy systems. Appl Energy 87(3):1001–1014CrossRef Ren HB, Gao WJ (2010) A MILP model for integrated plan and evaluation of distributed energy systems. Appl Energy 87(3):1001–1014CrossRef
Zurück zum Zitat Ren HB, Zhou WS, Gao WJ (2012) Optimal option of distributed energy systems for building complexes in different climate zones in China. Appl Energy 91(1):156–165CrossRef Ren HB, Zhou WS, Gao WJ (2012) Optimal option of distributed energy systems for building complexes in different climate zones in China. Appl Energy 91(1):156–165CrossRef
Zurück zum Zitat Shin HW, Hashim H (2012) Integrated design of renewable energy decentralized power plant comprising energy storage for off-grid eco village. Glob J Technol Optim 3:36–41 Shin HW, Hashim H (2012) Integrated design of renewable energy decentralized power plant comprising energy storage for off-grid eco village. Glob J Technol Optim 3:36–41
Zurück zum Zitat Steward D, Saur G, Penev M, Ramsden T (2009) Lifecycle cost analysis of hydrogen versus other technologies for electrical energy storage. U.S. National Renewable Energy Laboratory (NREL), GoldenCrossRef Steward D, Saur G, Penev M, Ramsden T (2009) Lifecycle cost analysis of hydrogen versus other technologies for electrical energy storage. U.S. National Renewable Energy Laboratory (NREL), GoldenCrossRef
Zurück zum Zitat U.S. Energy Information Administration (EIA) (2010) Updated capital cost estimates for electricity generation plants. EIA, Washington, DC U.S. Energy Information Administration (EIA) (2010) Updated capital cost estimates for electricity generation plants. EIA, Washington, DC
Zurück zum Zitat Yang HX, Zhou W, Lou CZ (2009) Optimal design and techno-economic analysis of a hybrid solar–wind power generation system. Appl Energy 86(2):163–169CrossRef Yang HX, Zhou W, Lou CZ (2009) Optimal design and techno-economic analysis of a hybrid solar–wind power generation system. Appl Energy 86(2):163–169CrossRef
Zurück zum Zitat Yun HT, Li WY (2011) Optimization and analysis of distributed energy system with energy storage device. In: Proceedings of international conference on smart grid and clean energy technologies (ICSGCE 2011), vol 12 Yun HT, Li WY (2011) Optimization and analysis of distributed energy system with energy storage device. In: Proceedings of international conference on smart grid and clean energy technologies (ICSGCE 2011), vol 12
Zurück zum Zitat Zhou Z, Liu P, Li Z, Ni WD (2013) Economic assessment of a distributed energy system in a new residential area with existing grid coverage in China. Comput Chem Eng 48:165–174CrossRef Zhou Z, Liu P, Li Z, Ni WD (2013) Economic assessment of a distributed energy system in a new residential area with existing grid coverage in China. Comput Chem Eng 48:165–174CrossRef
Metadaten
Titel
Optimal operation of a distributed energy generation system for a sustainable palm oil-based eco-community
verfasst von
Wai Shin Ho
Cheng Seong Khor
Haslenda Hashim
Jeng Shiun Lim
Suichi Ashina
Diego Silva Herran
Publikationsdatum
01.08.2015
Verlag
Springer Berlin Heidelberg
Erschienen in
Clean Technologies and Environmental Policy / Ausgabe 6/2015
Print ISSN: 1618-954X
Elektronische ISSN: 1618-9558
DOI
https://doi.org/10.1007/s10098-014-0893-6

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