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Design of a renewable energy system with battery and power-to-methanol unit

  • Andika, Riezqa (School of Chemical Engineering, Yeungnam University) ;
  • Kim, Young (Department of Thermal Systems, Korea Institute of Machinery & Materials) ;
  • Yun, Choa Mun (Sherpa Space Inc.) ;
  • Yoon, Seok Ho (Department of Thermal Systems, Korea Institute of Machinery & Materials) ;
  • Lee, Moonyong (School of Chemical Engineering, Yeungnam University)
  • Received : 2018.06.10
  • Accepted : 2018.10.15
  • Published : 2019.01.01

Abstract

An energy storage system consisting of a battery and a power-to-methanol (PtM) unit was investigated to develop an energy storage system for renewable energy systems. A nonlinear programming model was established to optimize the energy storage system. The optimal installation capacities of the battery and power-to-methanol units were determined to minimize the cost of the energy system. The cost from a renewable energy system was assessed for four configurations, with or without energy storage units, of the battery and the power-to-methanol unit. The proposed model was applied to the modified electricity supply and demand based on published data. The results show that value-adding units, such as PtM, need be included to build a stable renewable energy system. This work will significantly contribute to the advancement of electricity supply and demand management and to the establishment of a nationwide policy for renewable energy storage.

Keywords

Acknowledgement

Supported by : National Research Foundation of Korea (NRF), Engineering Development Research Center (EDRC)

Cited by

  1. Research on self-organizing evolution mechanism of clean energy value co-creation system in China vol.13, pp.4, 2019, https://doi.org/10.1063/5.0048063
  2. Power-to-methanol process: a review of electrolysis, methanol catalysts, kinetics, reactor designs and modelling, process integration, optimisation, and techno-economics vol.5, pp.14, 2019, https://doi.org/10.1039/d1se00635e