Metadata
Title
John van der Schaaf
Category
general
UUID
9ec72f1c2e8d4b4db9cbbf6ea3529add
Source URL
https://www.tue.nl/en/research/researchers/john-van-der-schaaf
Parent URL
https://www.tue.nl/en/education/bachelor-college/bachelor-chemical-engineering-a...
Crawl Time
2026-03-23T15:23:30+00:00
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John van der Schaaf

Source: https://www.tue.nl/en/research/researchers/john-van-der-schaaf Parent: https://www.tue.nl/en/education/bachelor-college/bachelor-chemical-engineering-and-chemistry

Full Professor

John van der Schaaf

Contact

j.vanderschaaf@tue.nl

+31 40 247 4712

Helix-west 1.37

Department / Institute

Chemical Engineering and Chemistry

EIRES

Group

Sustainable Process Engineering

EIRES Research

RESEARCH PROFILE

The research of John van der Schaaf focuses on the development of catalytic and non-catalytic multiphase reactors that use rotation to create high gravity and high shear conditions. These conditions lead to excellent interphase mass transfer, intraphase mixing, and fluid-to-wall heat transfer. Applications are especially in (exothermic) fast reactions that are interphase mass transfer limited, are mixing limited, or are heat transfer limited. Additionally, in a high gravity field two phases with different density can be contacted countercurrently. Thus, distillation (gas-liquid), extraction (liquid-liquid), and crystallization (liquid-solid) become feasible.

The high-gravity high-shear conditions enable the use of extremely compact equipment for the chemical industry. The equipment is easily a factor hundred smaller than conventional equipment. The much smaller equipment size allows for the safe use of high temperatures and high pressures, enlarging the economic process window. An additional benefit of the small equipment size is that expensive construction materials and coatings can be used, with only a minor increase in equipment costs.

In future research Van der Schaaf will focus on the performance of high-gravity high-shear equipment as a function of design, operating conditions, and fluid properties. For proper design and optimization, preferably determined with industrially relevant systems, research is required into e.g. flow patterns, mixing intensity, and interphase mass transfer.

The switch to renewable resources requires a new generation of chemical production plants. I develop small, multipurpose and durable production units enabling a self-sustainable chemical community that provides for local welfare and wellbeing.

ACADEMIC BACKGROUND

John van der Schaaf studied chemical engineering at TU Delft where he obtained his master's degree in 1993. In 1998 he obtained his PhD from the same university with his thesis 'Dynamics of Gas-Solids Fluidized Beds - analysis of pressure fluctuations'. Until 2000 he performed postdoctoral research at TU Delft on the validation of computational fluid dynamics codes for gas-solid fluidized beds. In 2000 he moved to Eindhoven University of Technology (TU/e) where he joined the Glass Technology research group of Prof. Ruud Beerkens to perform postdoctoral research on the formation of foam in glass melting furnaces, in cooperation with TNO. In 2003 he started working as assistant professor (tenure track) in the Chemical Reactor Engineering group of Prof. Jaap Schouten. In 2014 he was appointed associate professor and since 2017 he is the chair of the group.

Recent Publications

International Journal of Hydrogen Energy

(2026)

Rodrigo Lira Garcia Barros,John van der Schaaf,Matheus T. de Groot](https://research.tue.nl/nl/publications/1c05bad2-fbee-41c8-a1d7-b7ff0e9ce150) - [### Experimental Study Toward Integrated Capture and Conversion of CO2to Methanol

ACS Sustainable Chemistry and Engineering

(2026)

Anouk W.N. de Leeuw den Bouter,Larissa Brito,Adeline Miquelot,Pierre Olivier,John van der Schaaf](https://research.tue.nl/nl/publications/5c1a516a-19d1-4a14-96e7-7fa6d966f2f7) - [### Elucidating the Role of Catalyst layer Resistance in AEM Water Electrolysis

Journal of the Electrochemical Society

(2026)

Naveen Guruprasad,John van der Schaaf,M.T. (Thijs) de Groot](https://research.tue.nl/nl/publications/edd91935-1a5a-4c1d-b82d-3760f856ee0b) - [### Stirring the Debate

ACS Central Science

(2026)

Stefan D.A. Zondag,John van der Schaaf,Timothy Noël](https://research.tue.nl/nl/publications/f3591cd9-6875-4dba-9e9c-71d1dc278f7c) - [### Neural network based molecular dynamics simulations for oxide ion transport in solid oxide electrolysis cell materials

International Journal of Hydrogen Energy

(2025)

Sher Ahmad,Daniël Emmery,Fausto Gallucci,John van der Schaaf](https://research.tue.nl/nl/publications/328086d5-1523-4655-8e6d-f8f4c3ae646b)

Current Educational Activities

Ancillary Activities