Related Experiment Video
Updated: Oct 3, 2026

Synthesis and Testing of Supported Pt-Cu Solid Solution Nanoparticle Catalysts for Propane Dehydrogenation
Published on: July 18, 2017
Sustainable Biodiesel Production over a Novel Magnetic Solid Acid Catalyst Derived from Copper Ferrite: Statistical
Gustavo Ferreira Leal1, Matheus Arrais Gonçalves1, Hiarla Cristina Lima Dos Santos1
1Federal University of Pará, Institute of Exact and Natural Sciences, Graduate in Chemistry Program, Laboratory of Catalysis and Oleochemical, Belém, Pará 66075-110, Brazil.
Abstract:
In this study, a novel magnetic solid acid catalyst based on molybdenum oxide-impregnated copper ferrite was synthesized and applied to methyl transesterification from waste cooking oil (WCO). The catalytic solid was characterized by surface acidity, XRD, FTIR, SEM, EDS, and VSM techniques. A 24 face-centered central composite design (FCCD) and a linear regression mathematical model were developed to describe the behavior of the ester content of the biodiesel produced as a function of the independent reaction variables: temperature (120-180 °C); MeOH:WCO molar ratio (10:1-50:1); time (1-5 h); and catalyst concentration (2-10 wt %). The optimized experimental results yielded a biodiesel with 95.6% ester content under the following optimized reaction conditions: temperature of 155 °C, MeOH:WCO molar ratio of 35:1, catalyst concentration of 8 wt %, and reaction time of 3.5 h. The developed mathematical model exhibited a relative error of less than 5% between predicted and observed values, demonstrating its robustness. Furthermore, the catalyst exhibited excellent catalytic stability over four reaction cycles, with ester conversion remaining above 85%, indicating great reusability potential.
Related Concept Videos
Biofuels
Microbial Leaching

