Solar Energy for a Solvent Recovery Stage in a Biodiesel Production Process

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Abstract

Recent research and development of clean energy have become essential due to the global climate change problem, which is caused largely by fossil fuels burning. Therefore, biodiesel, a renewable and ecofriendly biofuel with less environmental impact than diesel, continues expanding worldwide. The process for biodiesel production involves a significant energy demand, specifically in the methanol recovery stage through a flash separator and a distillation column. Traditionally, the energy required for this process is supplied by fossil fuels. It represents an opportunity for the application of renewable energy. Hence, the current study presents a system of thermal energy storage modeled in TRNSYS® and supported by simulations performed in ASPEN PLUS®. The aim of this research was to supply solar energy for a methanol recovery stage in a biodiesel production process. The results highlighted that it is feasible to meet 91% of the energy demand with an array of 9 parabolic trough collectors. The array obtained from the simulation was 3 in series and 3 in parallel, with a total area of 118.8 m2. It represents an energy saving of 70 MWh per year.

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León, J. A., Montero, G., Coronado, M., Ayala, J. R., García, C., Luna, A., & Vázquez, A. M. (2016). Solar Energy for a Solvent Recovery Stage in a Biodiesel Production Process. International Journal of Photoenergy, 2016. https://doi.org/10.1155/2016/1048095

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