Impact Acoustic enables a closed loop system with ARCHISONIC® Cotton
Crafted with cellulose, a natural by-product of the cotton industry, the acoustic panels can be fully recycled and reintegrated into the production process.
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Impact Acoustic
UK & EuropeCrafted with natural raw materials such as cellulose, Impact Acoustic’s ARCHISONIC® Cotton is an innovative, patent-pending material that offers superior sound absorption while mastering sustainability. Made from sustainable materials and designed for a circular life cycle, each acoustic tile is meticulously crafted to be fully recyclable, ensuring that 100% can be seamlessly returned to production at the end of its life. This commitment not only minimises waste but also optimises the use of resources. Unlike conventional acoustic materials, which rely on synthetic binders that are difficult to recycle, ARCHISONIC® Cotton allows the absorbers to be fully reintegrated into the production process.
ARCHISONIC® Cotton harnesses the potential of cotton cellulose (a by-product of the cotton industry that would otherwise go to waste), along with other natural materials, without the use of harmful synthetic binders and chemicals. This approach not only reuses what would otherwise be discarded, but also promotes a healthier indoor environment: by using only natural resources, the acoustic panels are fully compostable.
The collection also offers a stunning range of 24 natural earth tones curated by Colour Hive trend scouts, perfectly complementing the existing ARCHISONIC® Felt collection – and no harsh chemical dyes are used. In order to actively address climate challenges, there is a drive for industries to rethink processes, values and relationships with colour. A more conscious approach to colour, working with nature, offers a vision of alternative systems of production and consumption.
Featured in some of the world’s leading magazines such as Forbes and recognised with prestigious awards, ARCHISONIC® Cotton is a testament to environmental responsibility and high quality production.
