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RCA Product Design Student Invents Stone-Like Material Made from Fish Scales

Erik de Laurens, a former Master's student in Product Design at the Royal College of Art (RCA), has developed an innovative and sustainable material named Scalite, derived entirely from fish scales. His work addresses the growing need for environmentally friendly materials in various industries, including interior design and construction. The inspiration for Scalite came from de Laurens's search for a sustainable raw material, leading him to explore the potential of fish scales, which are a significant waste product of the fishing industry and are largely undervalued. De Laurens discovered that fish scales naturally contain a polymer, which he learned to extract. This extracted polymer is then combined with the mineral elements also present in the scales. The resulting powder undergoes a compression process, transforming it into sheets or tiles that possess characteristics akin to natural stone. The naming of 'Scalite' is a deliberate reference to early plastics like Bakelite, highlighting its foundational role as a novel material. Following his graduation, de Laurens established a company, also named Scalite, to commercialize this material. The company currently offers Scalite in tile form, primarily targeting interior applications. The material boasts impressive environmental credentials; it is 100% bio-based, requiring no chemical additives in its production, and it repurposes a readily available waste product. Beyond its sustainability, Scalite is also aesthetically pleasing, offering a unique visual and tactile quality suitable for modern interior finishes. The development of Scalite represents a significant step forward in material innovation, showcasing how industrial design can leverage waste streams to create valuable, eco-conscious products. By transforming what was once discarded into a durable and attractive material, de Laurens's work contributes to a circular economy model. The material's application in interior design signifies its potential to replace less sustainable options while offering a distinct aesthetic. This innovation not only provides a practical solution for waste management but also expands the palette of sustainable materials available to designers and architects. #ProductDesign #SustainableMaterials #FishScales #BioBasedMaterial #MaterialInnovation #CircularEconomy #InteriorDesign #WasteUtilization #RCAAlumni #ProductDesign #SustainableMaterials #FishScales #BioBasedMaterial #MaterialInnovation #CircularEconomy #InteriorDesign #WasteUtilization #RCAAlumni
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