About SurfacePlay
SurfacePlay was created with a clear purpose: to provide a safer, more sustainable alternative to traditional plastic and rubber playground surfacing. By harnessing the natural strength and resilience of coconut husk fibers, we’ve developed a surface that enhances play spaces while supporting a healthier environment.
Our Vision
We believe nature plays a vital role in creating safer, more sustainable outdoor environments. Our vision is to replace synthetic, plastic-based playground surfaces with natural solutions that are both durable and environmentally responsible. We are committed to reducing waste, promoting sustainability, and delivering a better play experience for communities.
Commitment to Sustainability
SurfacePlay is made from coconut husks—a renewable, biodegradable resource often considered agricultural waste. By transforming this natural by-product into a high-performance playground surface, we reduce reliance on synthetic materials and support more sustainable agricultural practices.
Safety and Performance
Sustainability drives what we do, but performance and safety are just as critical. SurfacePlay provides a cushioned, impact-absorbing surface designed to help reduce the severity of falls, making it ideal for playground environments. It is engineered to withstand heavy use while maintaining a natural look and feel.
A Greener Future
SurfacePlay is more than a product—it’s a step toward creating cleaner, healthier spaces where communities can thrive. By choosing SurfacePlay, you’re helping reduce environmental impact and supporting a future where nature and play work together.
1. Coir Fibres sourced from coconut husks to deliver a resilient, eco-friendly turf system with excellent stability and drainage performance
2. Natural Rubber Backing that is biodegradable and sustainably sourced, supporting environmentally responsible landscaping and green building initiatives
3. Jute Mesh Backing that is biodegradable, sustainably sourced, and engineered to provide added tensile strength and stability for environmentally responsible turf applications