The restaurant trade is increasingly facing delivery bottlenecks as a result of climate change, which may even cause interruptions of the production of food products. Due to reduced yields and at the same time increased resource requirements, cost pressures are rising. In order to face these challenges in a timely manner, the DEHOGA East Friesland & Weser-Ems District Association is developing climate adaptation strategies for the restaurant trade. In the present project, the effects of climate change are analyzed, and specific solution paths for the restaurant trade are developed and communicated within the DEHOGA District Association.
The Protestant Hospital Service GmbH (eks) was founded in 1997. The catering service of the KS includes not only the delivery to hospitals, rehabilitation centers and senior citizens facilities, but also catering services for factory canteens, kindergartens and schools. The EKS has a total of 250 staff and prepares approximately 3500 meals per day in the cook-and-chill procedure. This permits it to de-link food preparation and food distribution, both spatially and chronologically. As a result of climate change, the availability and unquestioned quality of raw materials is ever more difficult to ensure. For these reasons, the KS is supplemented the existing concept of out-of-home catering with a new line of organically and regionally produced products.
Rather than focusing on climate-protection measures, the Bremen Cargo Distribution Center (GVZ Bremen) has identified measures for adaptation to climate change. In 2011 and 2012 the Institute of Shipping Economics and Logistics (ISL), together with the Bremen University of Applied Science, carried out a comprehensive empirical investigation of the effects of climate change on the logistics sector of the Metropolitan Region Bremen-Oldenburg in the Northwest. The results clearly show that the expected impacts of climate change could mean a new challenge, both for the GVZ and for individual companies at the Center.
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 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.
Due to growing animal stocks and increasing numbers of biogas facilities (fermentation residues), as well as the limited possibilities for use as fertilizer, handling liquid manure involves ever greater distances. In the future therefore, important steps will involve both an increase in transport-worthiness and a reduction of transport routes and quantities of organic nutrient-containing materials produced; this is especially true for liquid manure and fermentation residues. New, climate-adapted business models need to be developed. During the course of the nordwest2050 project, The Naturdünger-Verwertungs GmbH (Natural Fertilizer Recycling Company/NDV), functioning as an expert and a multiplier, provided data on background knowledge especially for the presentation series Land-Use in the Context of Climate Change in the Northwest.
The survey of 4.000 companies in the metropolitan area of Bremen-Oldenburg in north-western Germany conducted by the University of Oldenburg as part of the ‚nordwest2050’ project in 2010 and 2012 showed that the economic importance of climate change is growing. The 2012 survey revealed that 38% of the companies polled already saw climate change as an important success factor for their company. In 2010, 31% of the companies surveyed said that they ascribed a “high” to “very high importance” to climate change for corporate success.
In order to initiate the design, communication and implementation of the transformation to a lowconflict and climate-adapted land-use system, the Centers of Competence e.V. organized three events in the context of nordwest2050 between 2010 and 2013. In cooperation with the Carl von Ossietzky University of Oldenburg, a dialogue was initiated in which heterogeneity of the issues and the various interests of the actors on the issue of land-use was discussed and a solution-oriented manner. At the second and largest event, in February 2013, the »Aurich Declaration,« a regional statement on the most important land-use problems, and concrete approaches to solutions, was adopted. It is represented and supported by a wide range of authors from the region.
Regional climate change projections show a changing climate in the metropolitan region of Hamburg for the end of the century: The temperature could increase and the precipitation in summer could decrease. To cope with the probably longer lasting and hotter summer conditions in Europe there are different possible adaptation measures in land management practice, e.g. forest conversion. That means the conversion of mostly coniferous forest monocultures to deciduous and mixed forests. Mixed forests are generally more adaptable in comparison to conifer forests. They ensure an increased groundwater recharge because of less canopy interception and reduced transpiration outside the growing season. An interesting question is how forest conversion would feedback to the regional climate under different climate conditions. To explore climate feedbacks, REMO (regional climate model at the Max Planck Institute for Meteorology, Hamburg) is applied. To get a more realistic representation of the land surface, a current dataset from a digital basis landscape model of the Federal Agency for Cartography and Geodesy is used instead of the standard representation of the land surface in REMO. In some areas of the metropolitan region of Hamburg the updated land surface increases the forest fraction. Additionally, all coniferous forest types are converted into broadleaf forest types to study the maximum impact on the simulated near surface climate. This set-up is used for a climate simulation with REMO, forced by ERA-INTERIM reanalysis data for the period of 1990-2008. Selected climate variables are analyzed and the associated processes are investigated: The different forest distributions affect particularly the evapotranspiration and thus the water- and energy cycle of the soil and the lower atmosphere. Especially, the effects in the very hot and dry year 2003 and in the wet year 2002 are analyzed. To study the impacts of the forest distributions under different climate conditions, a second climate simulation is set up with REMO, forced by ECHAM5-MPIOM for the historical period 1970-2000 and for the future time periods 2035-2065 and 2070-2100 under A1B emissions. This allows analyzing the impact of a changed forest cover under different climate conditions. It gives a first estimation of climate sensitivity.