PhD Position in Data-driven Critical Raw Material Supply Chain Resilience

Syddansk Universitet

Odense

On-site

DKK 440,000 - 450,000

Full time

9 days ago

Get more replies from employers

Send a job-specific resume in minutes.

Job summary

The University of Southern Denmark invites applications for a three-year PhD position in data-driven critical raw material supply chain resilience, based at SDU Life Cycle Engineering in Odense campus. The expected starting date is February 15, 2027, or as soon as possible thereafter.

You will conduct independent research within an interdisciplinary team, aiming to publish high-quality papers and develop modular data-driven methods for material flow analysis across wind energy and digital

Qualifications

  • Master's degree or equivalent by enrolment.
  • Strong background in quantitative analysis and data science.
  • Experience with programming and data analysis, preferably using Python.
  • Excellent written and spoken English.

Responsibilities

  • Conduct independent research under supervision of an interdisciplinary team.
  • Contribute to high-quality scientific publications.
  • Develop data-driven modular methods for material flow analysis.
  • Collaborate across SDU faculties and with external partners.
  • Present findings at international conferences.

Skills

Python
Data analysis
Quantitative modelling

Education

Master's degree or equivalent

Tools

Geospatial analysis tools
Machine learning frameworks

Job description

PhD Position in Data-driven Critical Raw Material Supply Chain Resilience

Do you want to investigate the resilience of critical raw material supply chains supporting low-carbon and digital technologies? Join us as a PhD student at SDU Life Cycle Engineering , University of Southern Denmark.

The Department of Green Technology at the University of Southern Denmark invites applications for a three-year PhD position in data-driven critical raw material supply chain resilience.

The position will be based at SDU Life Cycle Engineering, Department of Green Technology, Faculty of Engineering, at the SDU Odense campus. The expected starting date is 15 February 2027, or as soon as possible thereafter.

Project Overview

The deployment of low-carbon technologies, electrification and digital infrastructure is increasing global demand for critical raw materials. At the same time, the production and processing of many of these materials are geographically concentrated and exposed to geopolitical, economic, environmental and logistical disruptions.

Understanding how technology development affects material demand,in-use stocks, end-of-life flows and global supply dependencies is therefore important for assessing and strengthening the resilience of critical raw material supply chains.

The PhD position is jointly funded through research projects on critical raw material supply chains and material requirements for Denmark’s climate-neutral transition. The project will be embedded in an interdisciplinary research environment combining environmental systems analysis, supply-chain research and data science.

PhD Topic Description

The PhD project will develop modular and data-driven approaches for analysing critical raw material demand, supply‑chain dependencies and resilience.

A central methodological contribution will be the development of transparent, reusable and reproducible computational modules for dynamic material flow analysis. The modules will support the integration of technology deployment scenarios, material intensities, product lifetimes, stocks and flows, end‑of‑life management, recycling, production, trade, facility and ownership data.

The developed approaches will be applied to selected technology systems, including Denmark’s wind‑energy infrastructure and the rapidly expanding infrastructure supporting data centres and AI computing. These cases will be analysed within a common methodological framework to examine how infrastructure expansion and technological change influence demand for critical and scarce materials, in‑use stocks, future waste flows, recycling potential and global supply‑chain dependencies.

The project may also investigate overlapping material requirements and competition for materials across low‑carbon and digital technologies. Particular attention may be given to supply concentration, host–by‑product dependencies, trade and ownership structures, supply bottlenecks, cascading risks and potential resilience strategies.

Depending on the candidate’s academic background and the specific research questions, the project may include network analysis, geospatial analysis, scenario modelling, uncertainty analysis, machine learning and other AI‑supported approaches.

The candidate will build on selected existing models, datasets and research activities in the group and further develop scientifically robust and reusable methods that improve transparency, comparability and reproducibility in material‑system research.

The exact research focus and detailed PhD plan will be developed jointly with the successful candidate, taking into account the project objectives, academic background and research interests.

In addition to a PhD dissertation and high‑quality scientific publications, the project is expected to produce reusable modelling methods, documented datasets and reproducible computational workflows.

PhD Position and Research Environment

As a PhD student, you will conduct independent research under the supervision of an interdisciplinary team, contribute to high‑quality scientific publications and participate actively in a collaborative research environment.

You will join SDU Life Cycle Engineering, where research covers industrial ecology, material flow analysis, life cycle assessment, circular economy, resource systems and sustainability transitions.

The project connects expertise in engineering, data science, mathematics, business, supply‑chain research and geological resources. The wider research environment includes competences in material flow analysis, critical raw material systems, data mining, network analysis, supply‑chain science, finance, investment, ownership structures, geological resources and technology systems.

The position provides opportunities for collaboration across SDU faculties and with external research partners. It may also include participation in international conferences, research visits and collaboration with relevant industrial and public‑sector stakeholders.

The PhD programme follows the Danish PhD framework and includes coursework, participation in active research environments, dissemination activities, and teaching or other knowledge‑dissemination duties.

What We Expect

We are looking for a highly motivated, independent and collaborative candidate with a strong interest in critical raw materials, quantitative modelling, data‑driven research and sustainability.

Applicants must hold a relevant master’s degree or equivalent by the time of enrolment. Relevant academic backgrounds may include engineering, industrial ecology, sustainability science, resource management, data science, computer science, applied mathematics, operations research, supply‑chain management, geoinformatics, mining or geological sciences, or another relevant natural science or quantitative discipline.

The successful candidate should demonstrate:

A solid academic foundation in quantitative analysis, system modelling, data science or related methods.

Experience with programming and data analysis, preferably using Python or a similar programming language.

Experience with data handling, including data cleaning, transformation, integration and exploratory analysis.

Strong analytical and problem‑solving skills.

The ability to work independently and collaboratively in an interdisciplinary research environment.

Good written and spoken English.

A strong interest in sustainability, critical raw materials and supply‑chain resilience.

Experience in one or more of the following areas will be considered an advantage:

Material flow analysis, industrial ecology or material systems modelling.

Network, supply‑chain or geospatial analysis.

Scientific computing and reproducible research workflows.

Statistics, machine learning, artificial intelligence, optimisation, uncertainty or scenario analysis.

International trade, production facility or corporate ownership data.

Critical raw materials, wind energy, digital infrastructure or data centres.

Applicants are not expected to possess expertise in all these areas. Prior experience with material flow analysis is an advantage but is not a requirement. Relevant training will be provided according to the candidate’s background and the needs of the project.

Application Deadline

November 15, 2026, at 11:59 PM/23:59 (CET/CEST).

Enrollment and Employment Terms

Appointment as a PhD fellow is a 3‑year salaried position, and the monthly gross salary incl. pension is 37.075 DKK. If you have relevant postgraduate experience, you may be placed on a higher salary step. The place of employment is in Odense, Denmark and preferred starting date is February 15, 2027, or as soon as possible thereafter.

Applicants must hold a master’s degree (equivalent to a Danish master’s degree) at the time of enrollment and employment. Employment is contingent on enrollment approved by the PhD School. Enrollment will be in accordance with Faculty regulations and the Danish Ministerial Order on the PhD Programme at the Universities (PhD order). Employment will be in accordance with the collective agreement between the Ministry of Finance and the Danish Confederation of Professional Associations for academics in the state including the associated circular on the job structure for academic staff at Danish universities and the provisions for PhD fellows as described therein as well as the Protocol on PhD fellows signed by the Danish Ministry of Finance and the Danish Confederation of Professional Associations (AC).

Salary is determined in accordance with the applicable collective agreement and based on objective and gender‑neutral criteria, including the content of the position, responsibilities, and qualification requirements. As an applicant, you are entitled to information about the starting salary and salary range for the position. This information will be provided during the recruitment process. SDU does not collect information on applicants’ previous salary. Further information on salary and taxation.

Persons employed in the position may, based on a specific individual managerial assessment, be exempted from time registration, also known as a “self‑organizer”.

-

Inclusivity Statement

The University of Southern Denmark wishes its staff to reflect the surrounding community and therefore encourages everyone, regardless of personal background, to apply for the position. SDU conducts research in critical technologies, which, due to the risk of unwanted knowledge transfer, is subject to a number of security measures. Therefore, based on information from open sources, background checks may be conducted on candidates for the position(s).

Affiliation and Research Environment

The successful candidate will be affiliated with SDU Life Cycle Engineering at the Department of Green Technology. The research environment conducts interdisciplinary research on the global and systemic interactions between materials, technologies, energy, the environment and society.

The Department of Green Technology is located in Odense, the main campus of the University of Southern Denmark. Odense offers an international research environment and an open Scandinavian working culture.

Further Information

Further information about the scientific content of the position is available from:

Wu Chen
Associate Professor
Department of Green Technology
SDU Life Cycle Engineering
University of Southern Denmark
Email:wuc@igt.sdu.dk

Get your free, confidential resume review.
or drag and drop your file here.
Similar jobs

Similar jobs worth comparing

PhD Position in Data-driven Critical Raw Material Supply Chain Resilience
PhD Position in Data-driven Critical Raw Material Supply Chain Resilience

SDU International • Odense

Hybrid
DKK 33,000 - 41,000
PhD Position in Data-driven Critical Raw Material Supply Chain Resilience
PhD Position in Data-driven Critical Raw Material Supply Chain Resilience

Dansk Sprogskole • Cortex Park

On-site
DKK 377,000 - 451,000
PhD Position in Data-driven Critical Raw Material Supply Chain Resilience
PhD Position in Data-driven Critical Raw Material Supply Chain Resilience

Syddansk Universitet (University of Southern Denmark - SDU) • Odense

On-site
DKK 377,000 - 451,000
PhD Fellow in Data-Driven Critical Materials Supply Chain
PhD Fellow in Data-Driven Critical Materials Supply Chain

Syddansk Universitet • Odense

On-site
DKK 440,000 - 450,000
PhD in Data-Driven Critical Raw Material Resilience
PhD in Data-Driven Critical Raw Material Resilience

SDU International • Odense

Hybrid
DKK 33,000 - 41,000
PhD Fellow: Data-Driven Critical Raw Materials & Resilience
PhD Fellow: Data-Driven Critical Raw Materials & Resilience

Syddansk Universitet (University of Southern Denmark - SDU) • Odense

On-site
DKK 377,000 - 451,000
PhD in Data-Driven Critical Raw Materials & Resilience
PhD in Data-Driven Critical Raw Materials & Resilience

Dansk Sprogskole • Cortex Park

On-site
DKK 377,000 - 451,000
PhD Position in High Performance Organic Photovoltaics
PhD Position in High Performance Organic Photovoltaics

Syddansk Universitet (University of Southern Denmark - SDU) • Sønderborg

On-site
DKK 377,000 - 451,000
PhD Position in 3D Concrete Printing for Low-Carbon Buildings
PhD Position in 3D Concrete Printing for Low-Carbon Buildings

Syddansk Universitet • Odense

On-site
DKK 377,000 - 451,000
Postdoctoral Position in Multiphysics Modelling of Bubble Transport and Electrochemical Processes in Alkaline Electrolysers
Postdoctoral Position in Multiphysics Modelling of Bubble Transport and Electrochemical Processes in Alkaline Electrolysers

Syddansk Universitet • Sønderborg

On-site
DKK 520,000 - 680,000
State-of-the-art computing facilities
International research environment
Cross-sector collaboration