Climate protection and sustainability in hospitals - 09/11/2022 Sustainable activities in the healthcare sector The healthcare sector is not only facing major challenges in dealing with the consequences of climate change on human health, but it also needs to make a concrete contribution to reducing its own greenhouse gas emissions. Analyses show there are many opportunities to make medical care more sustainable, especially in hospitals’ daily routines. This is where the Heidelberg University Hospital and the viamedica foundation from Freiburg come in.
Press release - 21/10/2022 Carl-Zeiss-Stiftung supports research project on wood-based materials at the University of Freiburg The Carl Zeiss Foundation is funding the "DELIVER - Data-driven Engineering of Sustainable Living Materials" project at the University of Freiburg in its "CZS Wildcard" program. In the project, scientists from the Freiburg Clusters of Excellence CIBSS and livMatS will develop sustainable wood-based materials whose properties can be precisely controlled.
Press release - 10/10/2022 Recyclable food packaging: quality control for nanocoatings Across the EU, more than 300 billion items of packaging are not recycled every year because they consist of a mixture of different materials. Monomaterial packaging on the other hand is easy to recycle. However, it needs to be coated with ultra-thin barrier layers to protect delicate products just as well as compound materials do.
Press release - 06/10/2022 New Electrolysis Processes for Sustainable Chemical Production Basic chemicals, which are needed as raw materials for a wide range of products such as medicines and detergents, can currently only be produced with an enormously high input of energy and raw materials. In many cases, fossil fuels and raw materials are still used. The extraction of chemical substances alone requires high temperatures, expensive catalysts made of precious metals and, in some cases, environmentally harmful starting materials.
Press release - 05/10/2022 Flood protection during rain events, cooling of buildings and urban spaces during heat waves The glass facade of a high-rise building can get so hot that you can fry eggs on it – a major factor in the overheating of our cities. At the same time, flood events such as torrential monsoon rains cause billions of dollars of damage annually. On October 4, 2022, a solution to both problems was presented at the University of Stuttgart.
Press release - 20/05/2022 RoofKIT: How to Build in a Recycling-Oriented and Sustainable Way The construction industry consumes large amounts of energy resources and produces tons of waste. At the Solar Decathlon Europe 21/22 university competition, students and researchers from KIT are eager to demonstrate that the building sector is already compatible with a functioning circular economy. The task of the interdisciplinary “RoofKIT” team is to convert previously unused roofs of buildings into usable spaces.
Press release - 12/01/2022 From insect carapace to sustainable building material Chitin is the main component of insect carapaces and ensures that they are both stable and flexible. The Chitinfluid research project, funded by the Carl Zeiss Foundation, focuses on the use of chitin in construction and aims to process chitin and its derivatives into sustainable materials. In a hybrid symposium under the auspices of Prof. Sabine Laschat from the University of Stuttgart, the project team discussed the current state of research…
Press release - 22/11/2021 Wound Lightness - Towards a novel material culture The Cluster of Excellence IntCDC of the University of Stuttgart presents the "Maison Fibre" at the International Architecture Exhibition Venice. The full-scale inhabitable installation is made from robotically produced, fibrous building elements.
Specialized in Sustainability - 30/09/2021 The circular economy of the future The research project RUN (Rural Urban Nutrient Partnership) explores how waste might be used more efficiently as a resource. In this project, Veronika Fendel investigates how recyclable materials from biowaste and domestic wastewater can be fed back into the material cycle in the best possible way.