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Featured researches published by Lante Carbognani Ortega.


Reaction Chemistry and Engineering | 2017

Experimental and theoretical studies on oxy-cracking of Quinolin-65 as a model molecule for residual feedstocks

Abdallah D. Manasrah; Amjad El-Qanni; Ismail Badran; Lante Carbognani Ortega; M. Josefina Perez-Zurita; Nashaat N. Nassar

Oxy-cracking is a combination of oxidation and cracking reactions for converting heavy hydrocarbons into commodity products with minimal emission of CO2. This reaction takes place in basic aqueous media, at mild operation temperatures (200–230 °C) and pressures (500–750 psi). In this study, the main goal is to understand the oxy-cracking mechanism, involving oxidation and cracking reactions, of solid hydrocarbons represented by the model molecule Quinolin-65 (Q-65). In the experimental part, the oxy-cracking reaction was performed in a Parr batch reactor operated at an optimized oxygen partial pressure of 750 psi and temperatures between 200 °C and 230 °C. The reaction products were characterized by FTIR spectroscopy, TOC analysis, GC, NMR spectroscopy, and XPS. We found that the main products are composed of organic carboxylic, phenolic, and carbonyl-containing compounds, with small amounts of inorganic carbon (IC). In the theoretical part of the study, a comprehensive computational modeling of Q-65 reactivity was performed using high-level quantum theoretical calculations. The reaction studies indicated the attack of the hydroxyl radical (OH˙) and hydroxide anion (OH−) on the Q-65 molecule. The theoretical study employed the density functional theory (DFT) and the second-order Moller–Plesset perturbation theory (MP2) to study the reaction mechanisms under the same experimental conditions. Both the theoretical and the experimental studies confirmed the complexity of the reaction kinetics. The reaction kinetic results suggested that the Q-65 oxy-cracking reaction went through a parallel-consecutive reaction in which oxidative decomposition took place in the first step producing different aromatic intermediates. These intermediates were oxy-cracked consecutively into different organic acids and a small amount of CO2 gas.


Energy & Fuels | 2015

Effect of Precipitating Conditions on Asphaltene Properties and Aggregation

Lante Carbognani Ortega; Estrella Rogel; Janie Vien; Cesar Ovalles; Héctor J. Guzmán; Francisco Lopez-Linares; Pedro Pereira-Almao


Energy & Fuels | 2016

Characterization of Acid-Soluble Oxidized Asphaltenes by Fourier Transform Ion Cyclotron Resonance Mass Spectrometry: Insights on Oxycracking Processes and Asphaltene Structural Features

Renzo C. Silva; Jagoš R. Radović; Farouq Ahmed; Ursula Ehrmann; Melisa Brown; Lante Carbognani Ortega; Steve Larter; Pedro Pereira-Almao; Thomas B.P. Oldenburg


Energy & Fuels | 2016

Experimental Study on Catalytic Hydroprocessing of Solubilized Asphaltene in Water: A Proof of Concept To Upgrade Asphaltene in the Aqueous Phase

Parsa Haghighat; Lante Carbognani Ortega; Pedro Pereira-Almao


Energy & Fuels | 2016

New Pathways for Asphaltenes Upgrading Using the Oxy-Cracking Process

Maryam Ashtari; Lante Carbognani Ortega; Francisco Lopez-Linares; Abdelatif Eldood; Pedro Pereira-Almao


Energy & Fuels | 2016

Laboratory Two-Dimensional Experimental Simulation of Catalytic in Situ Upgrading

Christian Nubar Hovsepian; Lante Carbognani Ortega; Pedro Pereira-Almao


Journal of Canadian Petroleum Technology | 2015

Upgrading of Athabasca Bitumen Using Supported Catalyst in Conjunction With In-Situ Combustion

Ibrahim Inamah Abu; R. Gordon Moore; S.A. Mehta; M.G. Ursenbach; Donald G. Mallory; Pedro Pereira Almao; Lante Carbognani Ortega


Journal of Canadian Petroleum Technology | 2015

Supported Catalyst Regeneration and Reuse for Upgrading of Athabasca Bitumen in Conjunction With In-Situ Combustion

Ibrahim Inamah Abu; R. Gordon Moore; S.A. Mehta; M.G. Ursenbach; Donald G. Mallory; Pedro Pereira-Almao; Carlos E. Scott; Lante Carbognani Ortega


Energy & Fuels | 2016

Kinetic Study of Preoxidized Asphaltene Hydroprocessing in Aqueous Phase

Parsa Haghighat; Lante Carbognani Ortega; Pedro Pereira-Almao


Energy & Fuels | 2016

Thermal Crackability/Processability of Oils and Residua

Lante Carbognani Ortega; Josune Carbognani; Estrella Rogel; Cesar Ovalles; Janie Vien; Harris Morazan; Francisco A Lopez-Linares; Pedro Pereira-Almao

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