Publisher
source

Aarhus University

PhD Fellowship in Bio-integrated Carbon Capture and Utilization of Flue Gas CO2 to E-Methane Aarhus University in United Kingdom

Degree Level

PhD

Field of study

Microbiology

Funding

Available

Deadline

Expired

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Country

United Kingdom

University

Aarhus University

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Where to contact

Official Email

Keywords

Microbiology
Environmental Science
Chemical Engineering
Carbon Capture And Storage
Biotechnology
Biology
Nuclear Engineering
Mass Transfer
Energy Engineering
Process Engineering
Anaerobic Biology
Reactor Physics
Anaerobic Digestion
Natural Gas
Methane
Carbon Dioxide

About this position

This PhD Fellowship at Aarhus University is offered within the Graduate School of Technical Sciences, specifically in the Biological and Chemical Engineering programme. The project, titled 'Bio-integrated carbon capture and utilization of flue gas CO2 to e-methane – exploring the power of biological processes for production of renewable fuel,' is part of the Novo Nordisk Foundation CO2 Center (CORC). The center is dedicated to advancing knowledge and technology in Carbon Capture and Utilization, bringing together experts in biotechnology, chemistry, and engineering to address the global challenge of anthropogenic CO2 emissions.

The successful candidate will join the 'Microbial Conversion Technologies' research group in the Department of Biological & Chemical Engineering. The research focuses on leveraging methanogens for the conversion of CO2 from dilute sources, such as flue gas, into valuable products like synthetic natural gas (e-methane). The work involves developing new reactor systems for CO2 capture and conversion, with an emphasis on understanding the complex dynamics of biological reactors at the intersection of chemistry, microbiology, and engineering.

The position offers access to state-of-the-art experimental facilities and a collaborative, interdisciplinary environment. Candidates are expected to contribute to student co-supervision, teaching, and daily group activities. The ideal applicant will have a master’s degree in Biological, Chemical, or Process Engineering, with hands-on experience in areas such as biological reactors, gas-liquid mass transfer, reactor modelling, anaerobic microbial cultures, and analytical techniques. Proficiency in English is essential.

The project scope can be tailored to the candidate’s expertise. The position is based at Aarhus University, with work locations in Aarhus C and Tjele. For further information, applicants can contact the main supervisor, Michael VW Kofoed.

Applications must be submitted online, including a PDF of the project description, by 25 November 2025. The preferred start date is 15 January 2026.

Funding details

Available

What's required

Applicants must have a relevant master’s degree in Biological, Chemical, or Process Engineering. Preferred candidates will have expertise or hands-on experience with at least three of the following: biological reactors (batch or continuous), gas-liquid mass transfer principles, process or reactor modelling, handling pure or complex anaerobic microbial cultures, and chemical and microbiological analytical techniques. Excellence in both written and spoken English is required. The project can be modified according to the expertise of the candidate.

How to apply

Submit your application by clicking the 'Apply' button on the provided application link. Ensure you upload the project description as a PDF. Review the application guide for information about requirements and mandatory attachments. The application deadline is 25 November 2025 at 23:59 CET.

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