Location History:
- Hvalsø, DK (2021)
- Brønshøj, DK (2016 - 2022)
Company Filing History:
Years Active: 2016-2025
Title: Niels Christian Schjødt: Innovator in Ammonia Synthesis Technology
Introduction
Niels Christian Schjødt, an esteemed inventor based in Brønshøj, Denmark, has made significant contributions to the field of ammonia synthesis technology. With a total of seven patents to his name, Schjødt focuses on innovations that enhance the efficiency and capacity of chemical processes within industrial plants.
Latest Patents
Among his latest patents, Schjødt developed a method for a low steam/carbon revamp of a plant that includes a steam reforming section and a water-gas shift section. This invention addresses the need for increased capacity in ammonia processes, utilizing an advanced shift process to refine synthesis gas production. The process includes various intricate steps such as reforming a hydrocarbon feed, shifting synthesis gas in series, and enhancing the process condensate removal method. The revamp technique notably optimizes the steam/carbon ratio to be less than 2.6, resulting in a more efficient operation.
Career Highlights
Schjødt's professional journey has included key roles at prominent companies such as Haldor Topsoe A/S, known for its innovative Catalysis technologies. His expertise in ammonia synthesis processes has driven advancements in the industry, highlighted by the granted patents that showcase his innovative approach to production efficiency.
Collaborations
Throughout his career, Schjødt has collaborated with notable colleagues including Christian Henrik Speth and Per Juul Dahl. These partnerships have contributed to the successful development and implementation of various innovative solutions in the chemical engineering sector.
Conclusion
Niels Christian Schjødt stands out as a leading figure in ammonia synthesis innovation. His seven patents reflect his commitment to advancing industrial processes. Through collaboration and continuous innovation, he plays a crucial role in shaping the future of chemical production.