We’re looking for
Thank you for your referral.
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
About the job
Hydrogen is considered one of the main enablers to achieve Net-Zero carbon emissions by 2050. According to Hydrogen Council, more than 1000 projects are already announced globally which is expected an investment of 320 billion USD.
The shift toward green hydrogen is critical for industries aiming to reduce environmental impact. Ammonia production is an important area where sustainable systems can make a significant impact. It is essential not only as a fertilizer but also as a potential fuel and energy carrier which makes an efficient and environmentally friendly production important. Traditional ammonia synthesis is energy-intensive and reliant on fossil [1] fuel-based hydrogen. However, optimizing the integration of green hydrogen produced via PEM electrolysis into ammonia production offers a promising way to increase energy efficiency. Alfa Laval with its advanced heat exchanger technology, is well positioned to support this transition by optimizing energy usage and heat integration within the ammonia production process.
Master thesis description
Alfa Laval is a leading company in heat exchange manufacturing which is crucial to improve energy efficiency. The objective of the study is to calculate how much energy can be saved by doing heat integration.
The project is expected to advance knowledge on optimizing green hydrogen in ammonia production using PEM electrolysis. This includes analysis of the efficiency gains and operational considerations of PEM [1] produced hydrogen. Additionally, by optimizing energy integration with Alfa Laval’s heat exchanger technology, the project will demonstrate how to enhance energy efficiency and reduce costs.
Who you are?
You are a process/environmental engineer passionate about green transition and sustainability. You are an analytical person with business interest.
Assessment practicalities
We care about diversity, inclusion, and equity in our recruitment processes. We also believe behavioral traits can provide important insights into a candidate's fit to a role. To help us achieve this, we apply Pymetrics assessments, and upon application you will be invited to play the assessment games
For more information, please contact:
Luciana Mendes, Global Sales Manager
Princess Jeremy Bondoc, Talent Acquisition Coordinator
princessjeremy.bondoc@alfalaval.com
Please apply as soon as possible. The application deadline is on December 9th.We do not accept applications sent via email.
Join Alfa Laval Talent Community now!
Thank you for joining our Talent Community!
© 2015-2024, Alfa Laval
By clicking “I accept”, you agree to the storing of cookies on your device to enhance site navigation, analyze site usage, and assist in our marketing efforts. Alfa Laval Cookie Policy
These cookies are necessary for the website to function and cannot be switched off in our systems. They are usually only set in response to actions made by you which amount to a request for services, such as setting your privacy preferences, logging in or filling in forms. You can set your browser to block or alert you about these cookies, but some parts of the site will not then work. These cookies do not store any personally identifiable information.
These cookies allow us to count visits and traffic sources so we can measure and improve the performance of our site. They help us to know which pages are the most and least popular and see how visitors move around the site. All information these cookies collect is aggregated and therefore anonymous. If you do not allow these cookies we will not know when you have visited our site, and will not be able to monitor its performance.