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  • Alternative construction materials: mycelium-based materials - 20/12/2023 Ein großes Stück schwarzes Pilzleder, von einer Hand gehalten.

    Using fungi to create sustainable and economical mycelium-based materials

    Most of us see fungi as just food - and possibly pathogens. This is a mistake, because these amazing organisms are capable of much more: they grow on plant residues of all kinds, forming a dense and interconnected structure as they spread. The resulting material can be moulded into desired shapes and be turned into new sustainable and economically attractive products such as leather and polystyrene substitutes or building materials.

    https://biopro-v9-test-bio.xanium.io/en/articles/news/using-fungi-create-sustainable-and-economical-mycelium-based-materials
  • Sustainable binder alternative - 18/12/2023 Bunt gezeichnetes Schaubild mit dem Kreislauf des Verfahrens beginnend mit Holz und Insektenspeichel über Kleber und Fabrikationsgerät bis zur Kompostierung nach Gebrauchsende und wieder von vorne beginnend vom Baum, der die Holzreste spendet.

    Copied from insects: new biological wood binder under development

    Plastic is all around us; and unfortunately, it is not going away any time soon. The search for more sustainable solutions is fully underway. However, binders that degrade only with difficulty or not at all are still used to bond natural materials such as wood and straw - not yet truly environmentally friendly. Fraunhofer researchers are working on an insect-inspired wood binder that makes bonded wood products both resistant and biodegradable.

    https://biopro-v9-test-bio.xanium.io/en/articles/news/copied-insects-new-biological-wood-binder-under-development
  • Press release - 27/10/2023

    Lignin coating makes Geotextiles made from environmentally friendly natural fibers durable

    Textiles are a given in civil engineering. Until now, textiles made of resistant synthetic fibers have been used for this purpose, having a long lifetime. For some applications, however, it would not only be sufficient but even desirable for the auxiliary textile to degrade when it has done its job. Natural fibers, in contrast, often decompose too quickly. The DITF are developing a bio-based protective coating that extends their service life.

    https://biopro-v9-test-bio.xanium.io/en/articles/pm/lignin-coating-makes-geotextiles-made-environmentally-friendly-natural-fibers-durable
  • Microorganisms degrade biobased turf infill - 17/10/2023 Cut through the eco-friendly artificial turf with green fibres and white granule beads on a beige, small-grained subsoil.

    Eco-friendly artificial turf: a sports pitch that’s good for people and the environment

    There are thousands of artificial turf pitches in Germany. They are extremely practical, but often not at all environmentally friendly. When it rains or the pitch is used, plastic particles from the rubber granules can be released into the envronment, where they remain. Researchers at the University of Stuttgart along with the company TECNARO are now developing an artificial turf with an infill that biodegrades as soon as it leaves the pitch.

    https://biopro-v9-test-bio.xanium.io/en/articles/news/eco-friendly-artificial-turf-sports-pitch-s-good-people-and-environment
  • Preventing waste from instant meals - 05/10/2023 Next to two empty eggshells lie two sachets of the new film filled with spices.

    EDGGY: edible packaging film made from eggshell waste

    Many instant meals such as ramen soups have both a protective outer packaging and individual ingredients in small plastic sachets. To prevent this environmentally harmful waste, five students at the University of Hohenheim have developed a sustainable film based on eggshells and plant proteins that dissolves in hot water and is edible.

    https://biopro-v9-test-bio.xanium.io/en/articles/news/edggy-edible-packaging-film-made-eggshell-waste
  • Press release - 27/07/2023

    Self-healing plastic becomes biodegradable

    Konstanz chemists develop mineral plastics with numerous positive properties from sustainable basic building blocks and, together with biologists, demonstrate the material's excellent microbiological degradability.

    https://biopro-v9-test-bio.xanium.io/en/articles/pm/Self-healing-plastic-becomes-biodegradable
  • Press release - 27/07/2023

    Materials Research: Biocatalytic Foams of Tremendous Stability and Activity

    Industrial biocatalysis with enzymes is deemed to be a “game changer” in the development of a sustainable chemical industry. Enzymes can be used to synthesize an impressive range of complex molecules. Researchers of KIT have now developed a new class of materials by producing enzyme foams of tremendous stability and activity. The researchers have already filed a patent application on the process to produce enzyme foams.

    https://biopro-v9-test-bio.xanium.io/en/articles/pm/materials-research-biocatalytic-foams-tremendous-stability-and-activity
  • Innovative materials - 14/06/2023 A brown, rectangular, wood-based piece of material with black writing "CIBSS".

    Reinventing ‘wood’ with programmable bacteria

    Conserving wood by producing furniture and other objects from wood-based materials with the help of microorganisms? That is exactly what a team of researchers from the University of Freiburg and the Leibniz Institute for New Materials (INM) in Saarbrücken is working on in the DELIVER project. The aim is to create a database of materials with a broad range of controllable properties for various applications that can be produced from wood waste.

    https://biopro-v9-test-bio.xanium.io/en/articles/news/reinventing-wood-programmable-bacteria
  • 3D-Thermocell project - 17/05/2023 Computer model of a brown paper bowl with several compartments, each containing one type of fruit - tangerines, raspberries, orange slices, blueberries on the outside and cherries in the middle.

    Paper instead of plastic: sustainable packaging with a good conscience

    Replacing plastic – for example in packaging – is not that easy but nevertheless urgently needed. In the 3D-Thermocell project, researchers at DHBW Karlsruhe are currently developing new plastic substitute products made of thermoformable paper as a renewable resource, which should be cheap and light and easy to dispose of along with waste paper. The characterisation and application of demonstration models will start soon.

    https://biopro-v9-test-bio.xanium.io/en/articles/paper-instead-plastic-sustainable-packaging-good-conscience
  • Press release - 16/05/2023

    Biocomposite at the Venice Architecture Biennale

    This year's Venice Architecture Biennale sees itself as a "Laboratory of the Future". Bio-composites are not just dreams of the future in architecture. The German Institutes of Textile and Fiber Research (DITF) have developed a sustainable material for support profiles and connecting nodes, which will be on display at Palazzo Mora during the Biennale from May 20 to November 26.

    https://biopro-v9-test-bio.xanium.io/en/articles/pm/bioverbundwerkstoff-auf-der-architektur-biennale-venedig
  • Press release - 03/05/2023

    Organic-based coating with innovative functional properties is suitable for packaging and food products

    Sustainability is a major challenge in the food and packaging industry. Plastic packaging is being replaced by organic-based and biodegradable materials, but it must still fulfill high functional requirements. A team of researchers at the University of Hohenheim has developed a new coating system that is both water-impermeable, heat-resistant, and mechanically durable as well as being suitable for consumption, and biodegradable at the same time.

    https://biopro-v9-test-bio.xanium.io/en/articles/pm/organic-based-coating-innovative-functional-properties-suitable-packaging-and-food-products
  • Press release - 30/03/2023

    Green composite material made from flax and chitosan

    Composite materials provide stability in aircraft parts, sports equipment, and everyday household items. However, most of these materials have a poor carbon footprint and are not naturally degradable. A more sustainable alternative has been developed by a team from the University of Stuttgart. This completely bio-based composite material is made of flax fibers and the biopolymer chitosan.

    https://biopro-v9-test-bio.xanium.io/en/articles/pm/green-composite-material-made-flax-and-chitosan
  • Valorization of biological materials - 12/01/2023 Green, round logo of the ValBio Urban project, schematically showing the production.

    ValBio-Urban brings bioeconomy research to users

    Reducing carbon dioxide emissions and the capture and utilization of CO2 are important steps towards achieving a climate-neutral and sustainable economy. Accordingly, as part of the ValBio-Urban research project, an interdisciplinary team from the University of Stuttgart is developing bioeconomic approaches to solutions that will be implemented with companies from Baden-Württemberg.

    https://biopro-v9-test-bio.xanium.io/en/articles/news/valbio-urban-brings-bioeconomy-research-users
  • Press release - 20/12/2022

    Strong and biodegradable

    A polyester plastic of great mechanical stability, which is also easily recyclable and even compostable: Stefan Mecking, chemist at the University of Konstanz, and his research group present a new material.

    https://biopro-v9-test-bio.xanium.io/en/articles/pm/strong-and-biodegradable
  • 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.

    https://biopro-v9-test-bio.xanium.io/en/articles/pm/carl-zeiss-stiftung-foerdert-forschungsvorhaben-der-universitaet-freiburg-zu-holzbasierten-werkstoffen
  • Press release - 06/04/2022

    High-tech bridge built with flax

    The University of Stuttgart is contributing to innovations for climate protection as part of the EU project "Smart Circular Bridge". An old material is being rediscovered: flax has been with us for thousands of years in the form of clothing, sacks, and robust ship's ropes. Now the plant fibres are experiencing a renaissance and could become the building material of the future.

    https://biopro-v9-test-bio.xanium.io/en/articles/pm/high-tech-bruecke-mit-flachs-gebaut
  • Natural fibers in use - 15/02/2022 fahrradakku-ansmann.jpg

    Sustainable reinforcement of e-bike battery cases

    Ansmann AG from Assamstadt provides mobile energy solutions with a focus on sustainability. The BioBattery project, which was awarded the Baden-Württemberg Bioeconomy Innovation Prize, saw Ansmann AG working with the Fraunhofer LBF in Darmstadt to develop a natural fibre reinforced plastic composite for use in e-bike battery cases.

    https://biopro-v9-test-bio.xanium.io/en/articles/news/sustainable-reinforcement-e-bike-battery-cases
  • Press release - 02/02/2022

    Animal Friends made of renewable resources

    fischertechnik has set a new milestone with the Animal Friends construction kit, as the building blocks and packaging are largely made of renewable resources and the models depict playful animals in new colours. The company is thereby taking another major step towards sustainability. The bio-based building set recently won the Toy Award, one of the most prestigious awards in the industry.

    https://biopro-v9-test-bio.xanium.io/en/articles/pm/animal-friends-aus-nachwachsenden-rohstoffen
  • Protection against game damage - 13/01/2022 Nahaufnahme der beiden Holz-Modelle.

    Sapling protectors made of domestic wood - simple but effective

    Young forest plants need protecting against damage and as a result it’s often hard to miss the colourful plastic tree guard sleeves when out walking in forests. These tree guard sleeves are neither pleasing to the eye nor sustainable. Bernd Schairer UG from Albstadt has developed sapling protectors made of wood that contain no plastics, metals or chemicals, do not require removal and disposal, and are produced in a socially responsible way.

    https://biopro-v9-test-bio.xanium.io/en/articles/news/sapling-protectors-made-domestic-wood-simple-effective
  • 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…

    https://biopro-v9-test-bio.xanium.io/en/articles/pm/insect-carapace-sustainable-building-material
  • Press release - 25/11/2021

    Environmentally-friendly reforestation: Biodegradable tree covers made from renewable raw materials.

    In reforestation projects, the seedlings must be protected. So-called growth covers prevent game from feeding on the young plants and help to ensure that they are not prevented from growing by other plants. Previously used sheaths made of plastic and metal are often not removed in time and pollute the environment. The DITF have developed a biodegradable yarn for growth covers from renewable raw materials.

    https://biopro-v9-test-bio.xanium.io/en/articles/pm/environmentally-friendly-reforestation-biodegradable-tree-covers-made-renewable-raw-materials
  • 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.

    https://biopro-v9-test-bio.xanium.io/en/articles/pm/gewickelte-leichtigkeit-neue-materialkultur-der-architektur
  • Press release - 25/08/2021

    Material efficiency holds great potential for climate neutrality and should be utilized more for this purpose

    An international research team has calculated the potential for material efficiency strategies in residential buildings and passenger cars. Up to two-thirds of global emissions could be saved in these areas, provided that appropriate strategies are consistently implemented.

    https://biopro-v9-test-bio.xanium.io/en/articles/pm/material-efficiency-holds-great-potential-climate-neutrality-and-should-be-utilized-more-purpose
  • Press release - 16/07/2021

    Robotically wound natural fibre construction

    The "livMatS Pavilion" in the Botanical Garden of the University of Freiburg is a model for a bioinspired sustainable construction. In a joint project, researchers from the Universities of Freiburg and Stuttgart together with master’s students from the University of Stuttgart have designed a lightweight pavilion.

    https://biopro-v9-test-bio.xanium.io/en/articles/pm/robotically-wound-natural-fibre-construction
  • Press release - 03/05/2021

    Bioactive paper coatings to replace plastic for packaging foods

    The amount of plastic waste increases every year. Some of this waste is due to plastic packaging used to protect food. As part of the “BioActiveMaterials” project, researchers at the Fraunhofer-Gesellschaft have developed an eco-friendly coating for paper packaging. With this, not only is plastic saved, but the coating of plant-based proteins and waxes also extends the shelf life of the food.

    https://biopro-v9-test-bio.xanium.io/en/articles/pm/bioactive-paper-coatings-replace-plastic-packaging-foods

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