Pregled bibliografske jedinice broj: 1065362
HYDRIDE4MOBILITY: an EU HORIZON 2020 project on hydrogen powered fuel cell utility vehicles using metal hydrides in hydrogen storage and refuelling systems
HYDRIDE4MOBILITY: an EU HORIZON 2020 project on hydrogen powered fuel cell utility vehicles using metal hydrides in hydrogen storage and refuelling systems // HYdrogen POwer THeoretical and Engineering Solutions International Symposium e-Book of Abstracts / Niels, Luchters ; Rhiyaad, Mohamed ; Giuseppe, Spazzafumo (ur.).
online, 2020. str. 87-88 (predavanje, međunarodna recenzija, prošireni sažetak, znanstveni)
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Naslov
HYDRIDE4MOBILITY: an EU HORIZON 2020 project on
hydrogen powered fuel cell utility vehicles using metal
hydrides in hydrogen storage and refuelling systems
Autori
Yartys, Volodymyr ; Lototskyy, Mykhaylo ; Linkov, Vladimir ; Pasupathi, Sivakumar ; Davids, Wafeeq ; Tolj, Ivan ; Radica, Gojmir ; Denys, Roman ; Eriksen, Jon ; Taube, Klaus ; Bellosta von Colbe, Jose ; Capurso, Giovanni ; Dornheim, Martin ; Smith, Fahmida ; Mathebula, D. ; Swanepoel, Dana ; Suwarno, Suwarno
Vrsta, podvrsta i kategorija rada
Sažeci sa skupova, prošireni sažetak, znanstveni
Izvornik
HYdrogen POwer THeoretical and Engineering Solutions International Symposium e-Book of Abstracts
/ Niels, Luchters ; Rhiyaad, Mohamed ; Giuseppe, Spazzafumo - , 2020, 87-88
ISBN
978-0-620-87617-9
Skup
HYdrogen POwer THeoretical and engineering solutions – International symposium (HYPOTHESIS 2020)
Mjesto i datum
Online, 03.06.2020. - 05.06.2020
Vrsta sudjelovanja
Predavanje
Vrsta recenzije
Međunarodna recenzija
Ključne riječi
Hydride4Mobility ; Forklift ; Metal hydrides
Sažetak
Vehicles and their support systems utilising metal hydrides” (HYDRIDE4MOBILITY) (RISE project), is in addressing critical issues towards a commercial implementation of hydrogen powered forklifts using metal hydride (MH) based hydrogen storage and PEM fuel cells, together with the systems for their refuelling at industrial customers facilities. For these applications, high specific weight of the metallic hydrides has an added value, as it allows counterbalancing of a vehicle with no extra cost. Improving the rates of H2 charge / discharge in MH on the materials and system level, simplification of the design and reducing the system cost, together with improvement of the efficiency of system “MH store-FC”, is the goal of the work. The work is a joint effort of consortium uniting academic teams and industrial partners from two EU and associated countries Member States (Norway, Germany, Croatia), and two partner countries (South Africa and Indonesia). The technology is validated by a project partner Implats where a hydrogen driven forklift is in operation. An interest to collaborate on the topic from industrial partners in Germany (Stühff GmbH and STILL GmbH, a forklift manufacturer) is in place. The HYDRIDE4MOBILITY project will allow to implement MH based technologies for use in transportation and will promote their commercialisation in the European countries. The work within the project is focused on the validation of various efficient and cost-competitive solutions including (i) advanced MH materials for hydrogen storage and compression, (ii) advanced MH containers characterised by improved charge-discharge dynamic performance and ability to be mass produced, (iii) integrated hydrogen storage and compression / refuelling systems which are developed and tested together with PEM fuel cells during the collaborative efforts of the consortium with a strong and comprehensive expertise in materials science of metal hydrides, manufacturing of the advanced hydrogen storage materials, design and manufacturing of gas sorption reactors, fuel cell system integration, as well as manufacturing of the fuel cell power modules for utility vehicles and systems with integrated MH compressor for their refuelling with hydrogen.
Izvorni jezik
Engleski
Znanstvena područja
Kemijsko inženjerstvo, Strojarstvo
POVEZANOST RADA
Ustanove:
Fakultet elektrotehnike, strojarstva i brodogradnje, Split