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Liquid Organic Hydrogen Carrier (LOHC) – Assessment based on chemical and economic properties
Hydrogen can be transported via long distances based on Liquid Organic Hydrogen Carriers (LOHC). Such a transport is realized based on a two-step cycle: (1) loading/storage of hydrogen (hydrogenation) into the LOHC molecule and (2) unloading/release of ...
Martin Kaltschmitt
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As the number of new candidates for liquid organic hydrogen carriers (LOHC) that are being identified and experimentally tested is increasing, so does the requirement to analytically evaluate large scale hydrogen delivery processes which will utilize ...
Hankwon Lim +2 more
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Hydrogen storage in liquid organic hydrogen carriers (LOHC) enables the utilization of renewable energy in different sectors. In this paper, we describe the operational experience with one single LOHC system for bidirectional electrical energy storage at
Andreas Bosmann +2 more
exaly +2 more sources
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Hydrogenious starts work on LOHC plant
Fuel Cells Bulletin, 2021In Germany, Hydrogenious LOHC Technologies has begun construction of what will be the world's largest plant for storing green hydrogen in a liquid organic hydrogen carrier (LOHC), with a planned storage capacity of 1800 tonnes, at Chempark Dormagen in North Rhine-Westphalia (NRW).
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Energy & Environmental Science, 2019
LOHC storage and transport concept (H 0 LOHC: unloaded LOHC, H n LOHC: loaded LOHC).
M. Niermann +3 more
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LOHC storage and transport concept (H 0 LOHC: unloaded LOHC, H n LOHC: loaded LOHC).
M. Niermann +3 more
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Hydrogenious sets up JV for maritime LOHC
Fuel Cells Bulletin, 2021Hydrogenious LOHC Technologies GmbH in Germany and Norwegian shipping group Johannes Østensjø dy AS have established the joint venture company Hydrogenious LOHC Maritime AS, to develop and market liquid organic hydrogen carrier-based applications for shipping, with a commercial product ready for operation from 2025.
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Feasibility study of LOHC-SOFC systems under dynamic behavior for cargo ships compared to ammonia alternatives [PDF]
Maritime propulsion is recognized as a hard-to-abate sector and its decarbonization will therefore require transversal efforts, including the introduction of alternative fuels to reduce CO2 emissions.
Michele Manno +2 more
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Wasserstoffspeicherung in LOHCs
2018Flussige Organische Wasserstofftrager (LOHC; von englisch: Liquid Organic Hydrogen Carrier) sind ein Ansatz zur Speicherung von Wasserstoff. LOHCs erlauben es Wasserstoff durch chemische Bindung drucklos bei Raumtemperatur in einem sehr kleinen Volumen zu lagern.
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Catalyst Development for the Electrochemical Oxidation of Isopropanol in LOHC Fuel Cells
ECS Meeting Abstracts, 2022The transportation sector is certainly one of the largest contributors to energy consumption worldwide and its further growth is still expected. To keep up with this huge energy demand from the mobility, it is inevitable for the whole sector to undergo the transition towards renewable energy resources as soon as possible.
Maria Minichova +8 more
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Hydrogenious partners with Framatome to boost LOHC progress
Fuel Cells Bulletin, 2019German-based Hydrogenious Technologies is working in a closer cooperation with Covalion, the energy storage brand of French nuclear energy giant Framatome, to give its Liquid Organic Hydrogen Carrier (LOHC) technology a broader foothold in the growing hydrogen market.
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