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Institute for Sustainable Process Technology

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Projects

The projects we work on

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Odysseus

Odysseus

Goal of this project is to develop a library of complementary techniques for concentrating brines beyond reverse osmosis.

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Ammomnia Pipeline Safety

Ammonia Pipeline Safety

The Clean Ammonia Platform is doing a study on safety design and risk impact of ammonia pipelines to explore ways to safely transport large volumes of ammonia by pipeline in...

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STNF - Solvent Tolerant Nanofiltration and reverse osmosis membranes for the purification of industrial aqueous streams
Completed

STNF – Solvent Tolerant Nanofiltration and reverse osmosis membranes for the purification of industrial aqueous streams

Many industrial process streams contain water with solvents and other organic components. Such streams need to be purified from these components or need to be treated before further handling. Polymeric...

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Completed

Amazing – Additive Manufacturing for Zero-Emission Innovative Green Chemistry

Amazing is about replacing large-scale high-temperature cracking processes with electrically driven thermocatalytic dehydrogenation.

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RFS - Radio Frequent Sterilization
Completed

RFS – Radio Frequent Sterilization

Heating with Radio Frequent Sterilization (RFS) has large advantages for the product quality.

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Steel2Chemicals: a circular carbon chain
Completed

S2C – Steel2Chemicals

The project Steel2Chemicals develops a closed value chain in which CO from steel production is used as feedstock for the chemical industry.

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Freezedrying Probiotics
Completed

Probiotics – Low energy living bacterial food formulations

Research towards a novel and generic strategy for probiotics in low energy living bacterial food formulations

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LESSON – Oil free compressor for ammonia based high temperature heat pumps

Wet compression allows for close to isothermal conditions during compression resulting in higher compression isentropic efficiencies. It further prevents operation in the superheating zone of the working fluids of heat...

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Sussic - Sustainable treatment of industrial streams

Sussic – Sustainable treatment of industrial streams

In the Sussic project, atomic layer deposition (ALD) will be used for the development of SiC NF membranes, allowing treatment of challenging industrial streams.

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FOMM - Forward Osmosis Membrane and Module development

FOMM – Forward Osmosis Membrane and Module development

Forward osmosis (FO) is a technology recently developed on academic level, with very few example applications in the market, despite its strong benefits. FO is an energy efficient and effective...

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Condensate Polishing Unit
Completed

Steam and condensate quality

This project focuses on requiering better insights into the distribution and behaviour of conditioning chemicals that is used in their steam-water cycles and condensate polishing. Process industries strive for more...

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Drying and Dewatering: reducing cost, improving quality

MilDeWat – Breakthrough Mild Dewatering Technologies

This project will enhance the implementation of mild (energy extensive) dewatering technologies to contribute to industry's energy reduction goals.

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Demonstration Polymer Heat Exchanger

The goal of this project is to demonstrate the innovative technologies as developed by HeatMatrix in the industrial process in the BioMCN factories. On the one hand this would result...

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Next Level Solid Oxide Electrolysis
Completed

Next Level Solid Oxide Electrolysis

Solid Oxide Electrolysis is a technology with great potential for large-scale green hydrogen production by water electrolysis. This project explores the upscaling potential of SOEC.

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Sustainable heat in the Dutch industry

COMTA – COMpact modular Thermo Acoustic heat pump

To further develop the compact electrically driven thermoacoustic heat (TA) pump technology and to prepare for technical demonstration on full scale. The industry is a large consumer of energy and...

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SUNSOLr: Electrification of Chemical Conversions

SUNSOLr: Electrification of Chemical Conversions

The SUNSOLr project is dedicated to developing technologies for the direct electrification of chemical conversions, focusing on CO2 and H2O/H2 to produce chemicals like CO, CH4, olefins, and methanol.

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New

Advanced Carbohydrates Biorefinery: From Waste to Value

Every year, large amounts of tertiary cellulose end up being incinerated. This results in unnecessary CO₂ emissions and loss of valuable material. The ACB project develops an alternative route: one...

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Completed

WeCare – We Create Awareness & Reduce Energy

The WeCARE project demonstrated the possibilities of Artificial Intelligence technology of EnergQ at a selected number of end users. EnerGQ’s self-learning energy management technology unveiled the excessive energy consumption and with that...

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CareFree Models for real-time decision-making

Carefree Models puts process model maintenance, adaptation and transfer into an integrated, automated, and predictive framework that quantifies and reduces the overall resources required to sustain process predictivity and resulting...

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GRIP On drying
Completed

GRIP on Drying

This project investigates how inline sensors can help improving product quality and efficiency.

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COSMOS - Organic solvent nanofiltration membranes on low cost ceramic supports

COSMOS – Organic solvent nanofiltration membranes on low cost ceramic supports

The COSMOS-project found that membrane technology has the potential to replace or supplement current inefficient distillation processes.

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I40-20-04-AIDA-Gas_Chromatography_Laboratory
Completed

AIDA – Accelerate the Integration of Digitalisation Acceptation

The AIDA project performs research towards predictive capabilities and integration of digital technologies at the various levels of individual processes.

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DISCO: lower the material use and increase the energy-efficiency
Completed

DISCO – Downstream ISolation of high-value COmponents

The Downstream ISolation of high-value Components (DISCO) aims to lower the material use and increase the energy-efficiency.

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Sustainable PrOcess

SPOT: Sustainable PrOcess heaTing

SPOT (Sustainable PrOcess) aims to reduce the use of fossil energy use for industrial heat with at least 100 PJ/year in 2030.

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ISPT is the leading institute for open innovation in the process industry. At the heart of our efforts is the transition towards a CO2-neutral, circular economy in 2050.


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