María José Salar García-rekin lankidetzan egindako argitalpenak (20)

2024

  1. Ionic Liquid Membrane Technology for Heavy Metal Removal from Aqueous Effluents

    Membrane Technologies for Heavy Metal Removal from Water (CRC Press), pp. 242-255

  2. Sustainable Production of Biofuels and Biochemicals via Electro-Fermentation Technology

    Molecules, Vol. 29, Núm. 4

2017

  1. A Box–Behnken Design-Based Model for Predicting Power Performance in Microbial Fuel Cells Using Wastewater

    Chemical Engineering Communications, Vol. 204, Núm. 1, pp. 97-104

  2. Keys for Bioethanol Production Processes by Fermentation and Ionic Liquid Extraction

    ACS Sustainable Chemistry and Engineering, Vol. 5, Núm. 8, pp. 6986-6993

2015

  1. Developments in microbial fuel cell modeling

    Chemical Engineering Journal, Vol. 271, pp. 50-60

  2. Microbial fuel cells: A promising technology

    DYNA INGENIERIA E INDUSTRIA, Vol. 90, Núm. 3, pp. 0-0

  3. Recent progress and perspectives in microbial fuel cells for bioenergy generation and wastewater treatment

    Fuel Processing Technology, Vol. 138, pp. 284-297

2014

  1. Avances recientes en modelado y simulación de pilas de combustible microbianas

    Revista DYNA, Vol. 89, Núm. 6, pp. 625-632

  2. PVC-ionic liquid polymer inclusión membranes for their application in microbial fuel cells

    IX Ibero-American Congress on Membrane Science and Technology (CITEM 2014): Santander, del 25 al 28 de mayo de 2014

  3. Pilas de combustible microbianas: Factores clave para su diseño.

    DYNA energía y sostenibilidad, Vol. 3, Núm. 1