Responsive image





Charging a Liquid Organic Hydrogen Carrier System with H2/CO2 Gas Mixtures

Jorschick, Holger; Bösmann, Andreas; Preuster, Patrick; Wasserscheid, Peter (2018)

ChemCatChem.
DOI: 10.1002/cctc.201800960


mehr

Solid oxide fuel cell operating on liquid organic hydrogen carrier-based hydrogen – making full use of heat integration potentials

Preuster, Patrick; Fang, Qingping; Peters, Roland; Deja, Robert; Nguyen, Van...

International Journal of Hydrogen Energy 43, 1758–1768.
DOI: 10.1016/j.ijhydene.2017.11.054


mehr

Biogenic Formic Acid as a Green Hydrogen Carrier

Preuster, Patrick; Albert, J (2018)

Energy Technology 6, 501-509.
DOI: 10.1002/ente.201700572


mehr

Resilience of Liquid Organic Hydrogen Carrier Based Energy-Storage Systems

Rüde, T; Bösmann, A; Preuster, Patrick; Wasserscheid, P; Arlt, W; Müller, Kathrin (2018)

Energy Technology 6, 529-539.
DOI: 10.1002/ente.201700446


mehr

Seasonal storage and alternative carriers: A flexible hydrogen supply chain model

Reuß, M; Grube, T; Robinius, M; Preuster, Patrick; Wasserscheid, P; Stolten, D (2017)

Applied Energy 200, 290–302.
DOI: 10.1016/j.apenergy.2017.05.050


mehr

Dynamic power supply by hydrogen bound to a liquid organic hydrogen carrier

Fikrt, André; Brehmer, Richard; Milella, Vito-Oronzo; Müller, Karsten; Bösmann, Andreas...

Applied Energy 194, 1–8.
DOI: 10.1016/j.apenergy.2017.02.070


mehr

Liquid Organic Hydrogen Carriers (LOHCs): Toward a Hydrogen-free Hydrogen Economy

Preuster, Patrick; Papp, Christian; Wasserscheid, Peter (2017)

Accounts of Chemical Research 50, 74–85.
DOI: 10.1021/acs.accounts.6b00474


mehr

Hydrogen storage technologies for future energy systems

Preuster, Patrick; Alekseev, A; Wasserscheid, P (2017)

Annual Review of Chemical and Biomolecular Engineering 8, 445-471.
DOI: 10.1146/annurev-chembioeng-060816-101334


mehr

Hydrogen storage using a hot pressure swing reactor

Jorschick, H; Preuster, Patrick; Dürr, S; Seidel, A; Müller, Kathrin; Bösmann, A...

Energy & Environmental Science 10, 1652–1659.
DOI: 10.1039/C7EE00476A


mehr

Chemical utilization of hydrogen from fluctuating energy sources – Catalytic transfer hydrogenation from charged Liquid Organic Hydrogen Carrier systems

Geburtig, Denise; Preuster, Patrick; Bösmann, Andreas; Müller, Karsten...

International Journal of Hydrogen Energy 41, 1010–1017.
DOI: 10.1016/j.ijhydene.2015.10.013


mehr

Regeneration of LOHC dehydrogenation catalysts: In-situ IR spectroscopy on single crystals, model catalysts, and real catalysts from UHV to near ambient pressure

Amende, Max; Kaftan, Andre; Bachmann, Philipp; Brehmer, Richard; Preuster, Patrick...

Applied Surface Science 360, 671–683.
DOI: 10.1016/j.apsusc.2015.11.045


mehr

A new reactor concept for the dehydrogenation of LOHC

Benker, R; Bösmann, A; Preuster, Patrick; Wasserscheid, P (2016)

WHEC 2016 - 21st World Hydrogen Energy Conference 2016, Proceedings, 718-719.


mehr

Chemical utilization of hydrogen from fluctuating energy sources - Catalytic transfer hydrogenation from charged liquid organic hydrogen carrier systems

Geburtig, D; Bösmann, A; Preuster, Patrick; Wasserscheid, P (2016)

WHEC 2016 - 21st World Hydrogen Energy Conference 2016, Proceedings, 94-95.


mehr

Evaluation of a novel reactor concept for the process intensification and intelligent heat management in the hydrogenation and dehydrogenation of Liquid Organic Hydrogen Carriers

Preuster, Patrick; Wagner, L; Nuß, A; Geiling, J; Steinberger, M; Bösmann, A...

WHEC 2016 - 21st World Hydrogen Energy Conference 2016, Proceedings, 722-723.


mehr

Hydrogenation of the liquid organic hydrogen carrier compound dibenzyltoluene – reaction pathway determination by1H NMR spectroscopy

Do, G; Preuster, Patrick; Aslam, R; Bösmann, A; Müller, Kathrin; Arlt, W...

React. Chem. Eng. 1, 313–320.
DOI: 10.1039/c5re00080g


mehr