Fungi may be more An impressive form of life On the ground. They can live almost anywhere, and they have toxic medical qualities, and new research – the transformation of industrial waste into useful vehicles.
The engineers who have started starting German biophelion have succeeded in developing a way to persuade black yeast-like fungi-Aureobasidium Pullolants– In decomposing and converting plastic waste into new products. What is more, during this process, fungi consumes the remaining carbon dioxide in plastic waste, using them to supply themselves and prevent greenhouse gas from escaping to the atmosphere.
The project appeared as part of the “Circular Manufacturing Challenge” organizer By the Federal Agency in Germany for penetration innovations.
Fungal magic
Of course, fungi do not transform waste magically in one step. Firstly, Aureobasidium Pullolants– Hardy template that will live anywhere, eat anything, and exit many vehicles – raises industrial secondary products. The wonderful digestive system of fungi ultimately secretes waste in the form of three vehicles as a key to producing new useful materials.

According to the researchers, these compounds include Pullulan, an edible polymer It is already used in food production today; Polster is suitable for plastic packaging; And the less famous surface molecule that the team wants to use in 3D printing. With regard to its edible applications, PullULAN is used as a dietary additive to provide the largest part and texture, in eating films used in breathing, and to make vegetable birth control pills. The team is still emptying the accurate mechanisms behind this process, but they hope that they will be on something exciting.
“The vitality specifically is developing applications that cannot be conceived after today-we disintegrate Pullulan and the surface’s actor’s molecule in particular,” said Till Tiso, co-founder of the biological environment and microbial specialist at Belveield University in Germany. Release.
Natural solutions to pollution
The time will be determined whether the startup technology may be the next big thing in material science. However, this method already provides a confusing solution to the inclusive plastic waste. The process itself is designed to be sustainable and environmentally friendly.
The actor molecule with the surface in particular can be the ideal replacement of synthetic surface actors-the chemicals produced by the mass in washing cleaners and dishes-which often pollution. In general, enthusiastic for researchers to find out how their sciences can help address some of the most urgent issues in today’s world.
“There is often a gap between academic research and industrial implementation,” said TISO. “But this time it is different. Here we can jump from academic research to industrial implementation ourselves.”
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