Enhancing Asphaltene Degradation Through the Piezocatalysis Process Using Cadmium Tin Oxides Rod-Like and Cubic-Like Ceramic Nanostructures

The study focused on achieving high rates of asphaltene degradation by controlling the morphology and composition of the cadmium tin oxide (CTO) piezocatalyst. A new, fast, and clean method for asphaltene degradation was employed using the piezo-catalytic process. The performance of the CTO piezocatalyst was investigated based on various synthesis parameters such as precursor concentration, hydrothermal treatment time, hydrothermal temperature, and calcination temperature. In addition, the effect of operating parameters such as catalyst dosage, ultrasonic time, and power on asphaltene degradation was investigated. The results showed a constant rate of 0.0044 M−1·min−1 and a degradation efficiency of up to 95% of asphaltene degradation at 20 °C based on kinetic results. According to the thermodynamic results, the piezo degradation of asphaltene by CTO piezocatalysts was an exothermic reaction with ℎ = −28.22 kj/mol. A possible mechanism for the degradation of asphaltene by CTO piezo is discussed.

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Publication Details

Journal
OICC Press Journals
Published
2026-09-28
DOI
https://doi.org/10.57647/inl.2026.1601.01
Primary Topic
Petroleum Processing and Analysis
Type
article
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article

Enhancing Asphaltene Degradation Through the Piezocatalysis Process Using Cadmium Tin Oxides Rod-Like and Cubic-Like Ceramic Nanostructures

Peshawa H. Mahmood, Nabaz Ali Abdulrahman, Martin Bertau, Wrea Mohammed Ibrahim et al.
OICC Press Journals
Petroleum Processing and Analysis
article

Enhancing Asphaltene Degradation Through the Piezocatalysis Process Using Cadmium Tin Oxides Rod-Like and Cubic-Like Ceramic Nanostructures

Peshawa H. Mahmood, Nabaz Ali Abdulrahman, Martin Bertau, Wrea Mohammed Ibrahim, Sangar Salih Ahmed, Hunar Yasin Muhammad, Omid Amiri, karim younis, Hawta K. Abdulla
article en

Abstract

The study focused on achieving high rates of asphaltene degradation by controlling the morphology and composition of the cadmium tin oxide (CTO) piezocatalyst. A new, fast, and clean method for asphaltene degradation was employed using the piezo-catalytic process. The performance of the CTO piezocatalyst was investigated based on various synthesis parameters such as precursor concentration, hydrothermal treatment time, hydrothermal temperature, and calcination temperature. In addition, the effect of operating parameters such as catalyst dosage, ultrasonic time, and power on asphaltene degradation was investigated. The results showed a constant rate of 0.0044 M−1·min−1 and a degradation efficiency of up to 95% of asphaltene degradation at 20 °C based on kinetic results. According to the thermodynamic results, the piezo degradation of asphaltene by CTO piezocatalysts was an exothermic reaction with ℎ = −28.22 kj/mol. A possible mechanism for the degradation of asphaltene by CTO piezo is discussed.

OICC Press Journals
Cihan University-Erbil (IQ), University of Raparin (IQ), Soran University (IQ), Knowledge University (IQ), Salahaddin University-Erbil (IQ), TU Bergakademie Freiberg (DE), Tishk International University (IQ)
Openalex Percentile: Top 17%
Petroleum Processing and Analysis
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