You will develop procedures and optimize conditions for catalyst synthesis while conducting studies and evaluations to enhance DMF production through systematic research and testing.
Anforderungen
- •Student in chemical engineering or related field
- •Solid knowledge in catalysis
- •Laboratory experience in heterogeneous catalytic reactions is an advantage
- •Good skills in German or English
Deine Aufgaben
- •Develop procedures for catalyst synthesis upscaling.
- •Conduct kinetic studies on hydrogenolysis of HMF.
- •Optimize reaction conditions to maximize DMF yield.
- •Employ Design of Experiments for reaction scaling.
- •Evaluate experimental results using GC and HPLC.
- •Present findings in a scientific format.
- •Conduct literature research on separation processes.
- •Scale lab tests for product purification insights.
Deine Vorteile
Top research opportunities
Team collaboration for solutions
Supportive and tolerant environment
State-of-the-art equipment
On-campus cafeteria with meals
Original Beschreibung
City:
Straubing
Date:
Aug 4, 2025
# Master Thesis: Process development for the catalytic synthesis of 2,5-Dimethylfuran (DMF)
**CHANGE STARTS WITH US.**
At the Fraunhofer Institute for Interfacial Engineering and Biotechnology IGB, research and development of sustainable processes, technologies, and products for a healthy and green future are the focus. Our research topics are diverse, ranging from chemical engineering to the design of sustainable production processes and biotechnology. We create innovations and continuously turn sustainability goals into reality. Are you in?
**What you will do**
Your curiosity leads you into the exciting world of heterogeneous catalytic processes. Here, you will significantly contribute to the development of the catalytic synthesis of 2,5-Dimethylfuran (DMF) and accompany practical research projects in a dynamic environment.
2,5-Dimethylfuran (DMF) is increasingly valued as a biofuel additive and a valuable chemical building block. Its production typically occurs in two steps: First, biomass is converted into Hydroxymethylfurfural (HMF), followed by the hydrogenolysis of HMF to DMF. This project focuses on the heterogeneous catalytic hydrogenolysis reaction of HMF to DMF in a batch reactor. A deep understanding of reaction kinetics and systematic process optimizations are crucial for improving technological readiness. A key challenge lies in maintaining a high yield of DMF during the scale-up of the reaction while also considering production costs and economic feasibility.
* You will develop a procedure and a setup for the upscaling of catalyst synthesis
* Conduct kinetic studies on the hydrogenolysis of HMF to DMF in a batch reactor
* Optimize reaction conditions to maximize the yield of DMF while employing a systematic Design of Experiments (DOE) approach for scaling up the reaction
* By utilizing analytical techniques such as GC and HPLC, you will evaluate your experimental results and present them in a scientific format
* Additionally, you will conduct literature research and scale lab tests to gain valuable insights into the separation and purification processes for the product DMF
**What you bring to the table**
* You are a student in chemical engineering, chemistry, process engineering or a comparable field of study
* You have solid knowledge in catalysis and reaction kinetics
* Laboratory experience in the field of heterogeneous catalytic reactions is an advantage
* Good skills in German or English
**What you can expect**
* Top research in a wide variety of pioneering flagship projects that advance society and the economy – and yourself
* The opportunity to contribute your own ideas as part of a strong team and find solutions to pressing future questions
* A tolerant environment with an open error culture and the assurance of getting support at any time.
* State-of-the-art equipment
* Cafeteria on campus with daily meal offerings
Throughout this project, you will have the opportunity to gain comprehensive insights into the demonstration of an entire catalytic chemical production process, including catalyst synthesis, catalytic batch reaction testing, and downstream purification. By the end of your thesis, you can expect to enhance your knowledge and expertise in key areas such as reaction kinetics, experimental design, data analysis, and scientific communication skills.
We offer you an environment that gives you the opportunity to gain a broad spectrum of experience in a short period of time by working on interesting and varied industrial projects with our partners in various industries.
In our teams, creative approaches to solutions are combined with an economic and structured approach.
We value and promote the diversity of our employees' skills and therefore welcome all applications - regardless of age, gender, nationality, ethnic and social origin, religion, ideology, disability, sexual orientation and identity. Severely disabled persons are given preference in the event of equal suitability.
**Job Segment:**
Chemical Research, Biology, Biotech, R&D Engineer, Chemical Engineer, Engineering, Science