GI Aqua Tech provides G.NANO technology for efficient wastewater treatment through mobile, portable, and stationary systems tailored for domestic and industrial applications. Their solutions address the need for cost-effective and sustainable wastewater management, integrating into the circular economy while minimizing operational footprints.
Funding
Funding not disclosed
Founders
Product
Problem
Traditional wastewater treatment methods can be expensive, inefficient, and require significant infrastructure, making them unsuitable for decentralized or rapidly deployable applications. Existing solutions may also struggle to handle fluctuating influent loads or meet stringent discharge requirements, particularly in industrial settings.
Solution
GI Aqua Tech provides wastewater treatment solutions based on their proprietary G.NANO technology, offering mobile, portable, and stationary systems designed for both domestic and industrial applications. These systems provide efficient and cost-effective wastewater management, integrating into a circular economy framework while minimizing the operational footprint. The technology is designed as a plug-and-play solution, allowing for rapid deployment and scalability to meet varying treatment needs. GI Aqua Tech's solutions are engineered for robustness and flexibility, capable of handling high influent fluctuations while maintaining hygienic and odorless operation.
Target Audience
The primary customers are domestic users, industries, and organizations requiring efficient and cost-effective wastewater treatment solutions, including those in the petrol & oil, textile, and slaughterhouse sectors.
Features
- G.NANO technology for enhanced wastewater treatment efficiency.
- Mobile stations for on-the-go wastewater treatment.
- Portable plants for flexible deployment in various locations.
- Stationary plants for enhanced efficiency in fixed locations.
- Medium and large wastewater treatment plants for industrial applications.
- Scalable solutions that can be tailored to specific needs.
- Robust design capable of handling fluctuating influent loads.
- Integration into a circular economy framework for sustainable wastewater management.