
CHEMELOT RESEARCH FACILITIES BV
CHEMELOT RESEARCH FACILITIES BV
1 Projects, page 1 of 1
Open Access Mandate for Publications and Research data assignment_turned_in Project2022 - 2025Partners:BAYERNGAS GMBH, SYPOX GMBH, ERIC, ERIC, SYPOX GMBH +18 partnersBAYERNGAS GMBH,SYPOX GMBH,ERIC,ERIC,SYPOX GMBH,CHEMELOT RESEARCH FACILITIES BV,UNIPD,TUM,BUREAU VERITAS EXPLOITATION,BAYERNGAS GMBH,HYGEAR TECHNOLOGY AND SERVICES BV,Josef Kerner Energiewirtschafts-GmbH,LINDE GMBH,Polytechnic University of Milan,HULTEBERG CHEMISTRY AND ENGINEERING AB,Josef Kerner Energiewirtschafts-GmbH,HULTEBERG CHEMISTRY AND ENGINEERING AB,CENTRE FOR RESEARCH AND TECHNOLOGY HELLAS CERTH,CHEMELOT RESEARCH FACILITIES BV,CERTH,BUREAU VERITAS EXPLOITATION,HYGEAR TECHNOLOGY AND SERVICES BV,LINDE AGFunder: European Commission Project Code: 101058608Overall Budget: 9,233,600 EURFunder Contribution: 7,352,360 EUREReTech proposes to develop and validate at TRL 6 a transformative electrically heated reactor, together with the tailored catalyst for steam methane reforming, using a 250 kW unit. Based on SYPOX technology the reactor hosts ceramic supported structured catalyst, electrically heated by internal direct contact resistive heating elements. This allows achieving an energy efficiency close to 95%, i.e., nearly twice the value typical for gas-fired heat boxes, and a reactor volume that is two orders-of-magnitude smaller. As designed, the 250 kW reactor integrated with all required peripherals in a reforming skid will be used to produce approximately 400 kg/day of 99.999% pure H2. This is equivalent to the size of a commercially relevant biogas reforming plant for the decentralized production of renewable H2. The targeted design will allow to increase the power via parallelization, while scale-up will be conceptually targeted for larger capacities (>20 MW electrical input). EReTech?s final goal is to offer solutions for the decentralized market and for the decarbonization of existing or new centralized reforming plants.
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