Develops sustainable building materials that replace concrete by integrating recycled plastics, carbon sequestration, and upcycled manufacturing waste. This approach addresses the shortages of river sand and water, reduces carbon emissions, and mitigates waste, supporting eco-friendly construction in the face of rapid urbanization and climate change.
Funding
$530K raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.
Founders
Product
Problem
The construction industry faces challenges related to river sand depletion, water scarcity, increasing carbon emissions, and escalating waste volumes. Traditional concrete production contributes significantly to these environmental issues, while rapid urbanization exacerbates the demand for sustainable building materials.
Solution
MAA’VA provides a next-generation green building material that serves as a functional replacement for concrete. By integrating recycled plastics, carbon sequestration techniques, and upcycled manufacturing waste, MAA’VA addresses critical environmental concerns. The resulting material reduces reliance on river sand and water, actively sequesters carbon, and mitigates waste accumulation. MAA’VA's materials offer faster curing times and lighter weight compared to traditional concrete, promoting more sustainable and efficient construction practices.
Target Audience
MAA'VA's target audience includes construction companies, architects, and developers seeking sustainable and eco-friendly alternatives to traditional concrete, as well as government entities and organizations focused on promoting green building practices.
Features
- Utilizes recycled plastics, sequestered carbon, and upcycled manufacturing waste as primary components.
- Offers a lighter weight alternative to traditional concrete, reducing transportation costs and improving ease of handling.
- Requires less water in the production process, conserving water resources.
- Achieves faster curing times compared to conventional concrete, accelerating construction timelines.
- Contributes to carbon sequestration, reducing the overall carbon footprint of construction projects.