par ABO Wind AG (isin : DE0005760029)
ABO Wind AG realises green hydrogen project with refuelling station
EQS-News: ABO Wind AG / Key word(s): Market Launch
ABO Wind AG realises green hydrogen project with refuelling station
17.01.2023 / 10:00 CET/CEST
The issuer is solely responsible for the content of this announcement.
ABO Wind realises green hydrogen project with refuelling station
For the first time, ABO Wind will combine a wind farm with the production and use of green hydrogen: the German Federal Ministry of Digital Affairs and Transport is funding the Hünfeld-Michelsrombach project with around twelve million euros as part of the National Hydrogen and Fuel Cell Technology Innovation Programme. The funding directive is coordinated by NOW GmbH and implemented by Project Management Jülich (PtJ).
"We have been working intensively on the topic of hydrogen for around ten years and are pleased to implement a project for the first time," says ABO Wind board member Dr Jochen Ahn. In the industrial park “Hessisches Kegelspiel” in Hünfeld, ABO Wind is planning the construction and operation of a wind turbine and an electrolyser with a hydrogen refuelling station for lorries and buses. The approval application for the wind turbine with an installed capacity of 4.8 megawatts has already been submitted. The electrolyser will initially be designed for an output of 5 megawatts. After five years, an expansion to 7.5 megawatts is planned to meet the expected increase in demand for hydrogen.
The green hydrogen is to be produced by means of water electrolysis in the industrial park and mainly supplied to lorries at the public refuelling filling station that is also to be built. Later use for other hydrogen vehicles such as cars would also be possible. Around 50 lorries can be refuelled per day at the filling station. The plant is designed in such a way that part of the hydrogen can also be transported to distant customers by lorry via mobile storage units, so-called trailers. In this way – as a H2 hub in the region – the project will not only contribute to the traffic turnaround, but also offer industrial and commercial customers the opportunity to gradually make their processes climate-friendly.
"The direct connection line between the wind turbine and the electrolyser is extremely innovative. It makes it possible to adjust the hydrogen production according to the wind supply," says Dr Jochen Ahn. Such storage systems are essential for a sustainable energy system. If there is no wind, the electrolyser can draw electricity from the grid. According to initial calculations, the project will avoid the emission of 115,000 tonnes of carbon dioxide annually, and of nitrogen oxides. This effect is to be increased even further: The adjacent laundry could reduce its gas consumption by using the waste heat from the electrolyser. In addition, the oxygen produced by the electrolyser can be ideally used for bleaching and disinfecting.
The hydrogen project emerged from the HyExpert project "HyWheels", which was launched in 2019 and aims to turn East Hesse into a pioneer region for a carbon-neutral logistics economy. At the beginning of 2023, another project was launched as part of the H2 Cluster: The HyWheels Hessen fleet. The goal is to build one of the largest fleets of fuel cell vehicles in Germany. Through its role as a pilot project, all relevant data will be recorded to create the best possible network of filling stations and implement a service concept for the users.
17.01.2023 CET/CEST Dissemination of a Corporate News, transmitted by EQS News - a service of EQS Group AG.
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Language: | English |
Company: | ABO Wind AG |
Unter den Eichen 7 | |
65195 Wiesbaden | |
Germany | |
Phone: | +49 (0)611 26 765 0 |
Fax: | +49 (0)611 26 765 5199 |
E-mail: | global@abo-wind.de |
Internet: | www.abo-wind.de |
ISIN: | DE0005760029 |
WKN: | 576002 |
Listed: | Regulated Unofficial Market in Berlin, Dusseldorf, Frankfurt, Hamburg, Munich (m:access), Stuttgart, Tradegate Exchange |
EQS News ID: | 1536769 |
End of News | EQS News Service |
1536769 17.01.2023 CET/CEST