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Personal profile

Quote

The energy transition requires new, sustainable processes, especially for the production of sustainable fuels and chemicals. I am inspired to develop new concepts and technologies from fundamentals to real-life applications.

Research profile

As a Research Scientist and Doctoral Candidate in Sustainable Process Technology Jasper van Kampen currently focuses on sorption enhanced DME synthesis to produce DME from biomass based syngas and carbon dioxide.

Since 2017 Jasper is a Research Scientist at the Energy Research Centre of the Netherlands (ECN), which recently became part of TNO. In the group Sustainable Process Technology he works on reactive separation, catalysis, syngas processing, CCUS and bio-based fuel synthesis by means of experimental design and reactor modeling. Jasper is affiliated to the research group Chemical Process Intensification at the Eindhoven University of Technology (TU/e), where he pursues a Doctoral degree.

Academic background

Jasper started his academic career at the Eindhoven University of Technology (TU/e) in Chemical Engineering. After a side track in Chemistry at the University of Cambridge, he obtained his master’s degree (MSc) in Chemical Engineering at the Eindhoven University of Technology (TU/e) with a specialization in Chemical and Process Technology in 2016. Since 2017 Jasper is a Research Scientist at ECN, part of TNO, and a Doctoral Candidate in the research group Chemical Process Intensification under supervision of prof. Martin van Sint Annaland.

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Research Output

  • 3 Citations
  • 8 Conference contribution
  • 3 Article
  • 1 Review article

Sorption enhanced dimethyl ether synthesis for high efficiency carbon conversion: modelling and cycle design

van Kampen, J., Boon, J., Vente, J. F. & van Sint Annaland, M., Apr 2020, In : Journal of CO2 Utilization. 37, p. 295-308 14 p.

Research output: Contribution to journalArticleAcademicpeer-review

Open Access
File
  • 27 Downloads (Pure)

    Furfural production by reactive stripping: process optimization by a combined modelling and experimental approach

    Krzelj, V., van Kampen, J., van der Schaaf, J. & Neira d'Angelo, F., 4 Sep 2019, In : Industrial and Engineering Chemistry Research. 58, 35, p. 16126-16137 12 p.

    Research output: Contribution to journalArticleAcademicpeer-review

    Open Access
    File
  • 14 Downloads (Pure)

    Maximising carbon efficiency through steam separation enhancement: carbon recycling into carbon monoxide, methane, methanol, DME

    van Kampen, J. & Boon, J., Sep 2019, 12th European Congress of Chemical Engineering (ECCE12), 15-19 September, 2019, Firenze, Italy.

    Research output: Chapter in Book/Report/Conference proceedingConference contributionAcademicpeer-review

    Reversible deactivation of γ-alumina by steam in the gas-phase dehydration of methanol to dimethyl ether

    Boon, J., van Kampen, J., Hoogendoorn, R., Tanase, S., van Berkel, F. P. F. & van Sint Annaland, M., 10 Jan 2019, In : Catalysis Communications. 119, p. 22-27 6 p.

    Research output: Contribution to journalArticleAcademicpeer-review

    Open Access
    File
  • 3 Citations (Scopus)
    69 Downloads (Pure)

    Separation enhanced reactor systems for high carbon efficiencies: SEDMES

    van Kampen, J., Boon, J. & van Sint Annaland, M., Oct 2019, Netherlands Process Technology Symposium (NPS16), 30-31 October, 2019, Eindhoven, the Netherlands.

    Research output: Chapter in Book/Report/Conference proceedingConference contributionAcademicpeer-review

    Student theses

    Optimization of furfural production processes: simultaneous stripping

    Author: van Kampen, J., 21 Dec 2016

    Supervisor: Krzelj, V. (Supervisor 1), van der Schaaf, J. (Supervisor 2), Neira d'Angelo, M. (Supervisor 2) & Gallucci, F. (Supervisor 2)

    Student thesis: Master