CirPa Panels provides bio-based acoustic panels made from agricultural waste and forest side-streams, offering sustainable sound management for architectural spaces. These compostable and microplastic-free panels deliver enhanced acoustic performance and are customizable for easy integration.
Funding
Funding not disclosed
Founders
Product
Problem
Traditional acoustic panels often contribute to environmental pollution due to their reliance on plastic-based materials and the generation of microplastics. This creates a need for sustainable alternatives that offer effective sound management without negative ecological impacts.
Solution
CirPa Panels offers a bio-based acoustic panel solution derived from agricultural waste and forest industry side-streams, providing a sustainable alternative to conventional plastic foams. These panels are designed for superior sound management and are fully compostable, aligning with circular economy principles. The lightweight and customizable nature of the panels facilitates easy installation and integration into various architectural designs. CirPa's proprietary foam technology enhances acoustic performance through its material structure and surface treatments, ensuring effective sound absorption. The production process is engineered for continuous and scalable manufacturing, enabling efficient market supply.
Target Audience
The primary target audience includes architects, interior designers, and construction firms seeking environmentally responsible and high-performance acoustic solutions for commercial and residential spaces.
Features
- Bio-based acoustic panels manufactured from agricultural waste and cellulose pulps.
- Compostable and recyclable with standard cardboard waste streams.
- Lightweight material construction for ease of handling and installation.
- Free from microplastics and microparticles, promoting a cleaner environment.
- High degree of customization for seamless integration into diverse design aesthetics.
- Continuous and scalable foam production technology.
- Enhanced acoustic properties achieved through material structure and surface treatments.
- Potential for integrated functionalities such as anti-bacterial properties through additive incorporation.
- Two patent applications filed for core technology protection.