Olive pomace versus natural gas for methanol production: a life cycle assessment.

Environ Sci Pollut Res Int

Department of Chemical Engineering, University of Castilla-La Mancha, Avda. Camilo José Cela, 12 13071, Ciudad Real, Spain.

Published: June 2021

AI Article Synopsis

  • The study focuses on finding sustainable methods for methanol production amid rising demand and resource competition, specifically analyzing the process using olive pomace versus traditional natural gas.
  • A life cycle assessment was conducted using SimaPro software to evaluate the environmental impacts of producing methanol from olive pomace, which includes olive production, oil extraction, and the methanol production process itself.
  • Results showed that methanol production from olive pomace had a higher environmental impact in most categories compared to natural gas production, indicating potential inefficiencies in the processes involved.

Article Abstract

Increasing demand for methanol production and global competition for the use of natural resources are key issues in finding new and environmentally routes for methanol production. In this work, life cycle assessment was performed using the software SimaPro v9 to analyze the environmental impact of methanol production process from olive pomace and compare with natural gas route. The main stages considered in the methanol production from olive pomace were olive production, olive oil extraction, and methanol production. In addition, the methanol production in turn can be divided in three main processes: olive pomace gasification, syngas purification, and methanol production which were also evaluated individually. Finally, the global environmental impacts associated with the methanol production from olive pomace were compared with a conventional methanol production from natural gas. This assessment determined that the production of methanol from the olive pomace had a greater environmental impact for all the categories studied except the one related to the shortage of fossil fuels. These results were directly related to the technical performance of the processes.

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Source
http://dx.doi.org/10.1007/s11356-021-12710-6DOI Listing

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