In light of projected climate change impacts in the Baltic Sea region, there is a strong need for enhanced understanding about adaptation needs. In this regard, the role of local level decision makers will be crucial to the success of such adaptation strategies. This primer aims to provide local decision makers with insights and knowledge on the subject. This primer has been prepared as part of the project RADOST (Regional Adaptation Strategies for the
German Baltic Sea Coast), which is funded by the
German Federal Ministry of Education and Research.
Over the last decades, Fucus vesiculosus, an ecologically important macroalga in the German Baltic Sea, has shown a massive retreat from the deeper zones of its former distribution presumably due to low light co-acting with other potential stressors such as high temperature, fouling, and grazing. In shallow water F. vesiculosus may be exposed to high water temperatures during summer seasons. Intensity and frequency of heat waves are expected to increase due to climate change which could potentially affect all fucoid life stages. Early life stage processes (fertilization, germination) are often considered particularly sensitive to stress. If the mortality caused by a first heat wave in a genetically diverse population selects for stress resistance, we would expect the survivors to be less sensitive to a second heat wave or possibly even to other stressors like feeding pressure.
In the present study, the mortality of early post-settlement stages of F. vesiculosus under thermal stress and the sensitivity of survived recruits against a proximate stressor (feeding pressure, second heat wave) were analysed by laboratory experiments. The mortality of early fucoid life stages at 25°C, compared to their mortality at 15°C was significantly higher. Regrettably, the ensuing assessment of feeding impact by Idotea baltica and Hydrobia ulvae on the surviving germlings could not be analysed since the two consumer species unexpectedly avoided feeding on the young stages of F. vesiculosus. During the second thermal stress experiment fucoid offspring which was genetically preselected by high temperature (first heat wave: 25°C) differed not significantly in sensitivity from fucoid offspring without prior stress.
A farmer and turkey raiser in Varrel (Oldenburg, Germany) has set up an absorption cooling plant on his farm which provides the necessary air-conditioning for his stall on hot summer days with the help of the waste heat from a biogas plant. The biogas plant itself is fueled partially by turkey manure, and the waste heat from the cogeneration plant linked to the biogas facility is used to operate an absorption cooling plant. The absorption cooling experts from the companies SolarNext AG and Meyer Kühlanlagen, together with the University of Bremen are working on implementation. The project has been subsidized to the tune of €185,000 by the Federal Ministry for Education and Research. The farmer’s self-payment share amounted to €45,000.
One of the important parts of the final conference of ‘nordwest2050’ has been the scientific exchange sessions in the House of Science and the Industryclub Bremen. Contributions were based upon a call for papers from October 2013. The scientific committee received almost 100 abstracts where 36 were chosen for oral presentations and 15 for poster presentations (see overview tables below).
Four main topics were discussed in parallel workshops:
• Analysing Impacts and Assessing Vulnerabilities
• Designing and Testing Solutions for Regional Climate Adaptation and Resilience
• Implementing Climate Adaptation and Paths to a Resilient Future
• Resilience for Business: Climate Adaptation Challenge and Strategies of Sectors and Companies
The company Colocation IX GmbH is building a new data center in Bremen, and has decided upon the use of a new innovative cooling technology: Instead of traditional air conditioning to remove the waste heat from the servers, integral wells and geothermal probes are to provide energy-effi cient cooling in summer and heating energy for use in winter. The company is working together with the University of Bremen and the company Geo-En GmbH, which has expertise in integral wells. These alternatives to electrically driven compressor cooling will protect the environment through energy savings, help relieve the power grids, and at the same time ensure a decentralized and fail-safe cooling supply. The project has been funded by the Federal Ministry of Education and Research to the tune of €280,000. The co-payment share for ColocationIX GmbH amounts to €315,000.
The Freese Organic Farm is testing a number of adaptation options for agriculture, especially in the area of the cultivation of cereals and of high-quality vegetables. Open-field crop farming is becoming ever more difficult due to climate change. In order to better protect vegetable cultures from such extreme weather events as heat waves or heavy rain, the Freese Organic Farm is testing the following innovations: (1) A new greenhouse covering which, due to its particular permittivity, makes open-field-like light conditions possible in a protected structure. At the same time the farm is seeking resilient, climate adapted vegetable strains which are to be examined for their particular properties, both in open-field cultivation and under the protection of this innovative foil. (2) In the area of cereal raising, the organic farm is trying to cultivate an old strain of rye. (3) And by baking and marketing bread from this rye, the farm wants to raise consciousness about the issue of climate change and adaptation.
The farm Moorgut Kartzfehn in Bösel/Kartzfehn is the largest independent turkey-raising operation in Europe, and at the same time has Germany’s largest research site for turkeys. Since turkeys, like all birds, cannot sweat, the predicted long and hot summer days are a risk, especially for the final stage of turkey-farming. In order to avoid heat stress for the animals, various ventilation and feeding concepts have been developed in the context of nordwest2050.
ONNO e.V., the East Frisian Network for Ecology – Region – Future, functions as a mediator between its members affected by climate change, the scientists in the project nordwest2050, and the public. The Association is especially active in the area of food communications and education, in order to strengthen the perspective of sustainable food culture in East Friesland among all relevant actors. In the context of this project, this is especially being developed and deepened with respect to the issue of climate change.