"Every year, 1.2 million people die in road accidents worldwide. This makes car accidents the ninth most common cause of death overall."
The contribution from Anna Bezrogova from 11 August 2016read on goodimpact.org/magazin/null-toleranz-f%C3%BCr-den-tod-im-auto (Article is no longer online)
Berlin, 22 October 2018: Vattenfall Energy Solutions, Gewobag and the energy storage start-up Lumenion are jointly piloting a new type of sector-coupled steel storage system at Bottroper Weg in Berlin-Tegel, which absorbs regional generation peaks from wind and solar energy in a grid-serving manner and later provides the renewable energy as heat and electricity in line with demand.
"With this pilot project, we want to demonstrate the particular technical and economic suitability of thermal storage systems for the effective utilisation of large quantities of wind and solar energy in a very practical way," says Alexander Voigt, founder and Managing Director of Lumenion. "Some of our team have been working with renewable energies for over 30 years and with energy storage systems for over ten years. Based on this experience, we made a conscious decision in favour of steel as a storage medium for the second phase of the energy transition, which is just beginning."
The Lumenion steel storage system stores "electricity peaks" for less than 2 cent/KWh in a cost- and space-efficient manner at up to 650° Celsius as heat, which can be converted back into electricity using a turbine unit if required - or used entirely as heat. As a co-founder of Solon, Q-Cells and Younicos, among others, Voigt has been successfully launching solar modules and storage systems on the market since the 1990s.
Hanno Balzer, Managing Director of Vattenfall Energy Solutions GmbH: "Decentralised systems and energy storage are key factors in the energy transition; heat is a particularly cost-effective form of storage. If the stored energy can then be utilised not only as heat but also in the form of electricity, that is a milestone. The high-temperature storage system brings us a big step closer to this!"
Karsten Mitzinger from Gewobag Energie- und Dienstleistungsgesellschaft adds: "The energy transition can only succeed if it is decentralised and based on partnership. As a housing industry, we are making our contribution to climate protection in our neighbourhoods. With this project, we are pleased to be able to demonstrate the good cooperation between energy supply companies, municipal housing associations and innovative start-ups. Only together can we master the major challenges of the energy transition."
In the Tegler pilot project, a 2.4 megawatt hour (MWh) storage block is being trialled for commercial use and transferred to regular operation. To this end, the unit will be integrated with an existing gas-powered CHP unit from Vattenfall Energy Solutions into the neighbourhood electricity and local heating supply of a 1970s apartment building owned by Gewobag. The storage system will temporarily absorb any power peaks that are not required and feed them into the heat supply later on as needed. In a second step, a reconversion into electricity is also planned.
Parallel to the construction of the pilot project, Lumenion is testing a 450 kWh prototype on the campus of the University of Applied Sciences (HTW) in Oberschöneweide. The HTW is supporting Lumenion with practical accompanying research in the development, testing and validation of data, as well as in the regulation and operational management of the innovative storage system.
In further projects, Lumenion storage systems with 40 MWh and even 1,400 MWh are to be created as the next milestones. These giga-storages can integrate existing and newly added large quantities of renewable electricity generation from wind and solar power into the existing grids in a particularly favourable, efficient and demand-oriented manner, thus enabling a significant acceleration of the energy transition.
A socially responsible coal phase-out is feasible and affordable, according to a report commissioned by ver.di.
"We expect that in none of the scenarios, even at peak times around 2030, will annual costs of more than 250 million euros be incurred for early retirement, but also for retraining and other career-related measures," explained ver.di Federal Executive Board member Andreas Scheidt.
The Enervis report commissioned by ver.di can be downloaded here as a PDF:
The short video gives a first insight into the DGNB system for districts in the 2020 version. Which criteria are relevant? Which types of neighbourhoods can be certified according to DGNB?
Good news for the PV industry: The solar cap will be abolished and solar expansion will be further promoted. The photovoltaic potential in Germany is enormous - especially when it comes to using roof space on new buildings. The new LichtBlick SolarCheck now shows in detail how well the 14 largest German cities are currently exploiting this potential. Enormous differences are revealed: While Nuremberg (49.1%) and Hanover (46.8%) exploit almost half of their potential, Munich and Düsseldorf do not even reach the 10 percent hurdle. The absolute taillight: the Hanseatic city of Hamburg with only 7.2 percent - one more reason for the solar obligation for new buildings planned by the mayor's office.
To calculate the solar potential of the individual cities, the newly built roof areas were put in relation to the newly installed photovoltaic systems in the respective cities in 2018 (most recent figures). The result: the PV potential on roofs is barely exploited in most metropolitan regions in Germany. Yet every new roof without a solar installation is a wasted opportunity for climate protection and a consumer-oriented power supply. The vast majority of people in Germany want solar power from their roofs*.1
In view of the sobering results of the SolarCheck, Ralph Kampwirth, Head of Corporate Communications at LichtBlick, said: "We must finally bring the energy turnaround to the big cities - and the best way to do that is with solar power from the roof. Discussions about distance regulations for wind power or the use of agricultural land for PV plants show that the responsibility should not only lie with the rural population."
Converted to German households (average consumption 3,000 kWh), the possibilities of the individual cities become apparent: If Munich had fully exploited the potential of the new building roof areas, you could have supplied more than 10,000 households with solar power with the new solar areas built in 2018 alone, Hamburg around 11,500 households, in Berlin it would be 16,200 households." Especially in the megacities, only a small fraction of this is developed, as the SolarCheck shows.
About the research method: The market research company Statista determined the number of newly constructed residential and commercial buildings in 2018 for the 14 German cities with more than 500,000 inhabitants on the basis of data from the State Offices for Statistics and calculated the respective roof areas using scientifically based conversion factors.
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