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Chemistry
Mexico
2026

D-Index & Metrics

Chemistry

D-Index
67
Citations
14831
World Ranking
6968
National Ranking
3

Research.com Recognitions

  • 2026 - Research.com Chemistry in Mexico Leader Award
  • 2025 - Research.com Chemistry in Mexico Leader Award

Overview

Jorge Ancheyta is affiliated with the Instituto Politécnico Nacional in Mexico and has a strong research presence primarily in the fields of Engineering and Chemistry. Their body of work covers a range of subfields, including Analytical Chemistry, Biomedical Engineering, Mechanical Engineering, Ocean Engineering, and Mechanics of Materials.

Ancheyta's research topics largely focus on various aspects of petroleum and catalytic processes. Key areas of interest include Petroleum Processing and Analysis, Catalysis and Hydrodesulfurization Studies, Enhanced Oil Recovery Techniques, Hydrocarbon Exploration and Reservoir Analysis, Biodiesel Production and Applications, Subcritical and Supercritical Water Processes, as well as Catalytic Processes in Materials Science.

They have published extensively in a variety of scientific journals, with frequent contributions to venues such as Fuel, Industrial & Engineering Chemistry Research, Energy & Fuels, Processes, and the International Journal of Hydrogen Energy.

Recent papers authored or coauthored by Jorge Ancheyta include:

  • Effect of decalin as hydrogen-donor for in-situ upgrading of heavy crude oil in presence of nickel-based catalyst (2021, Fuel)
  • Sunflower oil as renewable biomass source to develop highly effective oil-soluble catalysts for in-situ combustion of heavy oil (2022, Chemical Engineering Journal)
  • Kinetic models for Fischer-Tropsch synthesis for the production of clean fuels (2020, Catalysis Today)
  • Kinetic modeling of aquathermolysis for upgrading of heavy oils (2021, Fuel)
  • SARA-based kinetic model for non-catalytic aquathermolysis of heavy crude oil (2022, Journal of Petroleum Science and Engineering)

Frequent collaborators in their research include:

  • Alexis Tirado
  • Mikhail A. Varfolomeev
  • Guillermo Félix
  • Chengdong Yuan
  • Ameen A. Al-Muntaser

Their work addresses kinetic modeling, catalyst development, and processes aimed at improving oil upgrading and combustion techniques, reflecting a concentration on applied research in energy and fuels.

Best Publications

  • A review of recent advances on process technologies for upgrading of heavy oils and residua

    Mohan S. Rana;Vicente Sámano;Jorge Ancheyta;J.A.I. Diaz

  • Catalytic Aquathermolysis Used for Viscosity Reduction of Heavy Crude Oils: A Review

    S. K. Maity;J. Ancheyta;G. Marroquín

  • Hydroprocessing of Heavy Oils and Residua

    James Speight;Jorge Ancheyta

  • Kinetic modeling of hydrocracking of heavy oil fractions: A review

    Jorge Ancheyta;Jorge Ancheyta;Sergio Sánchez;Miguel A. Rodríguez

  • Hydroprocessing of heavy petroleum feeds: Tutorial

    Jorge Ancheyta;Mohan S. Rana;Edward Furimsky

  • Current situation of emerging technologies for upgrading of heavy oils

    Luis C. Castañeda;José A.D. Muñoz;Jorge Ancheyta

  • A review of experimental procedures for heavy oil hydrocracking with dispersed catalyst

    M.J. Angeles;C. Leyva;J. Ancheyta;S. Ramírez

  • Extraction and characterization of asphaltenes from different crude oils and solvents

    J. Ancheyta;G. Centeno;F. Trejo;G. Marroquin

  • Asphaltenes: Chemical Transformation during Hydroprocessing of Heavy Oils

    Jorge Ancheyta;Fernando Trejo;Mohan Singh Rana

  • Kinetic Model for Moderate Hydrocracking of Heavy Oils

    Sergio Sánchez;and Miguel A. Rodríguez;Jorge Ancheyta

  • Methods for determining asphaltene stability in crude oils

    Roque Guzmán;Roque Guzmán;Jorge Ancheyta;Fernando Trejo;Silvano Rodríguez;Silvano Rodríguez

  • Combined process schemes for upgrading of heavy petroleum

    L.C. Castañeda;J.A.D. Muñoz;J. Ancheyta

  • Testing various mixing rules for calculation of viscosity of petroleum blends

    Guillermo Centeno;Gabriela Sánchez-Reyna;Jorge Ancheyta;José A.D. Muñoz

  • Precipitation, fractionation and characterization of asphaltenes from heavy and light crude oils

    F. Trejo;F. Trejo;G. Centeno;G. Centeno;J. Ancheyta

  • Review on criteria to ensure ideal behaviors in trickle-bed reactors

    Fabián S. Mederos;Jorge Ancheyta;Jorge Ancheyta;Jinwen Chen

  • Changes in Asphaltene Properties during Hydrotreating of Heavy Crudes

    J. Ancheyta;G. Centeno;F. Trejo,†,§ and;G. Marroquín

  • Modeling of Processes and Reactors for Upgrading of Heavy Petroleum

    Jorge Ancheyta

  • Characterization of Asphaltenes from Hydrotreated Products by SEC, LDMS, MALDI, NMR, and XRD

    F. Trejo;J. Ancheyta;T. J. Morgan;and A. A. Herod

  • Pyrolysis kinetics of atmospheric residue and its SARA fractions

    Elena Alvarez;Gustavo Marroquín;Fernando Trejo;Guillermo Centeno

  • Structural Characterization of Asphaltenes Obtained from Hydroprocessed Crude Oils by SEM and TEM

    Fernando Trejo;Jorge Ancheyta;Mohan S. Rana

Frequent Co-Authors

Jorge Ramírez
Jorge Ramírez National Autonomous University of Mexico
Gilbert F. Froment
Gilbert F. Froment Texas A&M University
Muthanna H. Al-Dahhan
Muthanna H. Al-Dahhan Missouri University of Science and Technology
Marcos Millan
Marcos Millan King Fahd University of Petroleum and Minerals
Luis A. Ricardez-Sandoval
Luis A. Ricardez-Sandoval University of Waterloo
Françoise Maugé
Françoise Maugé Université de Caen Normandie
Rafael Kandiyoti
Rafael Kandiyoti Imperial College London

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