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Universite du Quebec Institut des sciences de la mer de Rimouski

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PhD in Modeling Fine Biochar Formation in Fast Pyrolysis Reactors Université du Québec à Rimouski in Canada

Degree Level

PhD

Field of study

Chemistry

Funding

Fully funded PhD position. Starting date required in April/May 2027.

Deadline

Sep 30, 2026

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Country

Canada

University

Universite du Quebec Institut des sciences de la mer de Rimouski

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Keywords

Chemistry
Environmental Science
Mechanical Engineering
Chemical Engineering
Materials Science
Numerical Analysis
Process Engineering
Transport Phenomena
Chemical Kinetics
Biomass Valorization
Biochar
Physics

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About this position

PhD opportunity in chemical engineering, process engineering, and computational fluid dynamics at Université du Québec à Rimouski in Canada.

The project is titled Modeling of Fine Biochar Formation in Fast Pyrolysis Reactors and focuses on understanding how fine biochar particles form and are entrained during fast pyrolysis of forest biomass. The research combines CFD-DEM modeling with experimental validation to study reactor hydrodynamics, thermal behavior, particle interactions, reaction environments, and operating conditions that affect bio-oil purity and stability.

Research tasks include biomass feedstock characterization, thermal decomposition analysis, development of a CFD-DEM model, validation against laboratory-scale pyrolysis data, identification of mechanisms behind fine particle formation, and parametric studies on particle size distribution, feed rate, and residence time. The work is interdisciplinary and includes collaboration with academic and industrial partners.

Eligibility highlights: applicants should have an M.Sc. in Chemical Engineering, Process Engineering, Chemistry, Mechanical Engineering, or a related field; a strong background in reaction engineering, chemical kinetics, transport phenomena, and numerical analysis; research experience in kinetic modeling, thermal decomposition, or pyrolysis; and programming skills in Python, MATLAB, or similar. Experience with COMSOL Multiphysics and/or ANSYS Fluent is requested. Strong English is required, and French is an asset.

This is a fully funded PhD position with a required start date of April/May 2027. International applications are welcome. Applicants should email a CV, transcripts, cover letter, two references, and a valid English or French language test certificate to Professor Maha Bhouri.

Funding details

Fully funded PhD position. Starting date required in April/May 2027.

What's required

Applicants must hold an M.Sc. in Chemical Engineering, Process Engineering, Chemistry, Mechanical Engineering, or a related field, with a solid foundation in reaction engineering, chemical kinetics, transport phenomena, and numerical analysis. Research experience in kinetic modeling, thermal decomposition, or pyrolysis is required, ideally demonstrated through reports, theses, or publications. Strong programming skills in Python, MATLAB, or similar are needed, along with experience in numerical modeling and simulation using COMSOL Multiphysics and/or ANSYS Fluent. Candidates should be able to work independently and collaboratively in an interdisciplinary environment and have strong written and spoken English; French is an asset. A valid English (TOEFL, IELTS) or French language test certificate (Bright Language, DALF, TCF, or TEF) is required.

How to apply

Submit a CV, academic transcripts, cover letter, names and contact information of two references, and a valid English or French language test certificate to Professor Maha Bhouri by email. Mention CFD Jobs Database record #20164 in your response.

More information can be found here

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