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Gradual switch to carbon-neutral heat generation in the Fichtel Mountains
Gunzenhausen / Wunsiedel, Germany – Hydrogen has
enormous potential for creating a carbon-neutral future. Bosch is now supplying
a new “Hydrogen ready” UT-L series boiler for the Wunsiedel Energy Park in the
Fichtel Mountains in Germany. With up to 100% hydrogen, the UT-L is ready for
future operation and can produce carbon-neutral thermal energy for the new Gelo
Timber sawmill. The hydrogen itself is supplied by a Siemens electrolysis
plant, one of the largest of its kind in Germany. The plant should become
operational by the end of 2021, providing exclusively green hydrogen from
renewable energy.
The operating company for the new Bosch boiler, the gas supplier
Wunsiedel GmbH, will use natural gas initially, in order to supply the Gelo
Timber sawmill with heat. After the electrolysis is commissioned, the service
provider can switch flexibly between natural gas firing and hydrogen firing.
This means that, if there is a surplus of renewable energy, it is possible to
use hydrogen, therefore avoiding the need to shut down the renewable energy
plants. As renewable energies are increasingly expanded, more and more hydrogen
can be used for heat generation, with the goal of completely dispensing with
fossil fuels.
Bosch has already equipped the heating boiler with a dual fuel
burner in its production facility, and based its design on operation with
hydrogen, which enables a quick fuel change later. When hydrogen is used, water
vapour is released as flue gas instead of CO2. The hydrogen
combustion procedure is significantly more complex than natural gas firing;
aside from technical feasibility, there are also increased safety requirements.
Bosch has developed innovations to solve these challenges and has already
gained relevant experience. The UT-L heating boiler used will be capable of
producing up to five megawatts of heat carbon-neutrally. AGO GmbH Energie +
Anlagen has been selected for the integration and installation of the Bosch
systems on-site.
The hydrogen project
in Wunsiedel is the result of a technology partnership between Siemens AG,
Rießner-Gase GmbH and SWW Wunsiedel GmbH. The electrolysis plant is intended to
support the transformation of the German energy landscape, and will combine the
hydrogen produced with a renewable energy supply. The energy source is made
available to the surrounding industrial enterprises, such as Gelo Timber, and
is used, for example, in boilers for heat supply. “Heating applications such as
this one using green hydrogen are fundamental for the decarbonisation of our
energy supply,” confirms Marco Krasser, Managing Director of SWW Wunsiedel GmbH.
To this end, Bosch provides sophisticated solutions, both for subsequently
retrofitting industrial boilers to run on climate-neutral fuels, and for new
systems. An important step in producing process heat and heating energy without
generating CO2.
The property, complete with 30-seat screening from room, a 100-seat amphitheater and a swimming pond with sandy shower…
The property, complete with 30-seat screening from room, a 100-seat amphitheater and a swimming pond with sandy shower…
The property, complete with 30-seat screening from room, a 100-seat amphitheater and a swimming pond with sandy shower…
The property, complete with 30-seat screening from room, a 100-seat amphitheater and a swimming pond with sandy shower…
The property, complete with 30-seat screening from room, a 100-seat amphitheater and a swimming pond with sandy shower…
We’ve invested every aspect of how we serve our users over the past Pellentesque rutrum ante in nulla suscipit, vel posuere leo tristique.
We’ve invested every aspect of how we serve our users over the past Pellentesque rutrum ante in nulla suscipit, vel posuere leo tristique.
We’ve invested every aspect of how we serve our users over the past Pellentesque rutrum ante in nulla suscipit, vel posuere leo tristique.
We’ve invested every aspect of how we serve our users over the past Pellentesque rutrum ante in nulla suscipit, vel posuere leo tristique.