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BEYONDPLASTIC Coffee Talk :: Episode 5 with material designer Paula Nerlich and her Aqua Faba Foam project

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Contenido proporcionado por BEYONDPLASTIC. Todo el contenido del podcast, incluidos episodios, gráficos y descripciones de podcast, lo carga y proporciona directamente BEYONDPLASTIC o su socio de plataforma de podcast. Si cree que alguien está utilizando su trabajo protegido por derechos de autor sin su permiso, puede seguir el proceso descrito aquí https://es.player.fm/legal.

Material Designer Paula Nerlich is developing a bioplastic based on aquafaba from chickpeas as part of her research into circular, compostable biomaterials.

The material, which is currently under development, shows great potential for mechanical manufacturing and thus for industrial production. The biomaterial varies in color from cream white to pink and changes its color over time. However, it can be dyed with natural or food colors. The structure can be flexible or hard, the recipe is adaptable. The biomaterial is completely vegan and biodegradable. Compostability is currently being tested.

The temporary nature of biodegradable biomaterials reminds us of the flow of nature and makes us appreciate the quality of impermanence. The transience of the materials has the potential to create a higher value in the end product, while also emphasizing the circular nature of the material.

  continue reading

9 episodios

Artwork
iconCompartir
 
Manage episode 278762990 series 2798375
Contenido proporcionado por BEYONDPLASTIC. Todo el contenido del podcast, incluidos episodios, gráficos y descripciones de podcast, lo carga y proporciona directamente BEYONDPLASTIC o su socio de plataforma de podcast. Si cree que alguien está utilizando su trabajo protegido por derechos de autor sin su permiso, puede seguir el proceso descrito aquí https://es.player.fm/legal.

Material Designer Paula Nerlich is developing a bioplastic based on aquafaba from chickpeas as part of her research into circular, compostable biomaterials.

The material, which is currently under development, shows great potential for mechanical manufacturing and thus for industrial production. The biomaterial varies in color from cream white to pink and changes its color over time. However, it can be dyed with natural or food colors. The structure can be flexible or hard, the recipe is adaptable. The biomaterial is completely vegan and biodegradable. Compostability is currently being tested.

The temporary nature of biodegradable biomaterials reminds us of the flow of nature and makes us appreciate the quality of impermanence. The transience of the materials has the potential to create a higher value in the end product, while also emphasizing the circular nature of the material.

  continue reading

9 episodios

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