We’re looking for
Rudeboksvägen, Lund, Skåne län, Sweden, 226 55
Full time
Every day, we get opportunities to make a positive impact – on our colleagues, partners, customers and society. Together, we’re pioneering the solutions of the future and unlocking the full potential of precious resources. Trusted to act on initiative, we challenge conventional thinking to develop world-leading technologies that inspire progress in vital areas, including energy, food, water and shipping.
As we push forward, the innovative, open spirit that fuels our 140-year-old start-up culture and rapid growth also drives our personal growth. So, as we shape a more resourceful, less wasteful world, we build our careers too.
We create better everyday conditions for people. We do this by contributing to a more sustainable future through engineering innovation. We love what we do and we’re good at it. But now we want to be even better! We are looking for an M.Sc. thesis student to our Materials Technology and Chemistry department, R&D. So, what are you going to do today?
Alfa Laval is a global company with three key product areas: heat transfer, separation, and fluid handling. We have sales in more than 100 countries and in 2022 the order intake was about 5 500 million euro. The number of employees is about 20 000. The head office is in Lund, Sweden, where a major part of the research and development of plate heat exchangers reside.
The Master thesis project
Alfa Laval is a global leader in providing technical equipment essential for heating, cooling, separating, and transporting fluid products. Our products are integral in domestic appliances, industrial and food industry applications. One of our largest product groups, Gasketed Plate Heat Exchangers (GPHEs), are engineered from pressed plates stacked and separated by rubber gaskets, which enable efficient opening, closing and sealing. Fouling (accumulation of deposits on the heat transfer surfaces) is very detrimental for the heat exchanger performance leading to loss of thermal performance and an increase in the pressure drop.
The project includes:
Conduct a literature survey on the effect of different process parameters and dairy and plant-based products on fouling on stainless steel surfaces
Select the relevant process parameters to study the fouling and cleaning process
Evaluation of the fouling generated by the different process conditions and raw materials with relevant techniques
Characterize the fouled and cleaned surfaces by for ex. microscopic techniques
Who are you?
We are looking for master thesis students with several major courses in chemistry and/or material sciences. We expect you to work independent or in pairs in close cooperation with your mentors at Alfa Laval, executing the work on our site in Lund and at the university. You will be part of the Materials & Technology Centre within the R&D BU GPHE.
For more information about the project contact
Olga Santos, Materials Specialist
Princess Jeremy Bondoc, Talent Acquisition Coordinator
princessjeremy.bondoc@alfalaval.com
For union information, please contact:
Johan Ranhög, Akademikerna, +46 46 2891664
Stefan Sandell, Ledarna, +46 46 367364
Monica Anderberg, Unionen, +46 709623811
This master thesis is planned to start no later than January 2026.
We are looking forward to hearing from you soon so send your application without delay, and no later than 30th of November. Please note, due to GDPR applications sent directly via email will be disregarded without notice.
Tilmeld dig Alfa Laval Talent Community nu!
Ta, fordi du tilmeldte dig vores talentfællesskab!
© 2015-2025, Alfa Laval
Ved at klikke på “Jeg accepterer” accepterer du lagring af cookies på din enhed for at forbedre webstedsnavigation, analysere webstedsbrug og hjælpe med vores markedsføringsindsats. Alfa Lavals cookiepolitik
Disse cookies er nødvendige for at hjemmesiden kan fungere og kan ikke slås fra i vores systemer. De er normalt kun indstillet som svar på handlinger foretaget af dig, som svarer til en anmodning om tjenester, såsom at angive dine privatlivspræferencer, logge på eller udfylde formularer. Du kan indstille din browser til at blokere eller advare dig om disse cookies, men nogle dele af siden vil ikke fungere. Disse cookies gemmer ingen personligt identificerbar information.
Disse cookies giver os mulighed for at tælle besøg og trafikkilder, så vi kan måle og forbedre ydeevnen af vores websted. De hjælper os med at vide, hvilke sider der er mest og mindst populære og se, hvordan besøgende bevæger sig rundt på siden. Alle oplysninger, som disse cookies indsamler, er aggregerede og derfor anonyme. Hvis du ikke tillader disse cookies, ved vi ikke, hvornår du har besøgt vores websted, og vi vil ikke være i stand til at overvåge dets ydeevne.