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Press release - 30/08/2023
Rising sea levels due to climate change and artificial irrigation cause soil salinity to increase. This has a negative impact on agriculture, including viticulture. The plants die, yields decrease. Researchers of Karlsruhe Institute of Technology (KIT) have therefore studied a wild grapevine of higher salt tolerance. Their goal is to identify the genetic factors that make the grapevine resilient.
https://www.biooekonomie-bw.de/en/articles/pm/soil-salinity-wild-grapevine-defends-itself
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Synergistic effects with microalgae and purple bacteria - 03/02/2023
A biorefinery that uses industrial wastewater and residual material streams is being built in Rheinfelden (Baden). It will have two interlinking bioreactors and will synthesize biohydrogen as well as organic basic materials such as carotenoids and proteins. SmartBioH2-BW is a pilot project run by the Urban and Industrial Biorefineries initiative and funded by the Baden-Württemberg Ministry of the Environment, Climate Protection and Energy Sector.
https://www.biooekonomie-bw.de/en/articles/news/working-towards-hydrogen-economy-wastewater-biorefinery-smartbioh2-bw-project
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Press release - 13/01/2022
Making important raw materials for fine chemicals out of carbon dioxide really works. As part of the Max Planck collaborative project eBioCO2n, a team of researchers from Fraunhofer IGB have successfully performed a first ever fixation of CO2 via a multi-enzyme enzyme reaction driven by electricity yielding a prospective intermediate for the chemical industry. The process for electro-biocatalytic CO2 fixation was recently published and is…
https://www.biooekonomie-bw.de/en/articles/pm/turning-harmful-co2-useful-chemicals
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Press release - 02/08/2021
Carbon dioxide is one of the main drivers of climate change – which means that we need to reduce CO2 emissions in the future. Fraunhofer researchers are highlighting a possible way to lower these emissions: They use the greenhouse gas as a raw material, for instance to produce plastics. To do this, they first produce methanol and formic acid from CO2, which they convert via microorganisms into building blocks for polymers and the like.
https://www.biooekonomie-bw.de/en/articles/pm/co2-raw-material-plastics-and-other-products
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Start-up kernique catch the zeitgeist - 29/06/2021
A delicious vegan nut snack that uses no sugar, artificial additives, gluten or palm oil, is full of essential nutrients, and is part of a commitment to environmental and social sustainability. Impossible? An Esslingen-based start-up called kernique proves otherwise. The start-up is currently planning a crowdfunding phase that offers a lucrative deal for investors. The idea catches the zeitgeist, but what exactly makes it stand out?
https://www.biooekonomie-bw.de/en/articles/news/nut-snack-sustainable-ecological-concept
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Dossier - 09/11/2020
What will the packaging of the future look like, and what will be required of it? Can packaging be biobased, recyclable, sustainable and economic? In Baden-Württemberg, there are various approaches to developing packaging with the above properties from various sources including agricultural residual and side streams as well as municipal waste.
https://www.biooekonomie-bw.de/en/articles/dossiers/packaging-future
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Biosensors - 09/04/2020
Sensor networks are one of the keys to achieving digitalisation of the bioeconomy. Sensor networks are on the way to becoming important analysis and control instruments for energy-efficient and sustainable material cycles. Dieter Hertweck, Professor of Business Information Systems at Reutlingen University of Applied Sciences, shows what is already possible in digital agriculture and waste recycling and what is feasible for the future.
https://www.biooekonomie-bw.de/en/articles/news/Sensors-for-the-bioeconomy
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Dossier - 22/10/2012
Biotechnologists are increasingly learning how to apply the knowledge about biological metabolic processes in the field of environmental protection including waste management and environmental rehabilitation. Environmental biotechnology is a field with great potential. In future bacteria and other microorganisms will most likely also contribute to sustainability and cost efficiency in other areas including the cosmetics and detergent industry as…
https://www.biooekonomie-bw.de/en/articles/dossiers/environmental-biotechnology
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Dossier - 23/07/2012
Extremophilic bacteria love it hot, sour or salty, toxic substances like heavy metals also do them good and even give them energy. As molecular and systems biology techniques get better and better, industry is also becoming increasingly interested in these exotic organisms. What potential does knowing the biochemistry of extremophilic bacteria have for the pharmaceutical, cosmetics and sanitary articles industries?
https://www.biooekonomie-bw.de/en/articles/dossiers/extremophilic-bacteria
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