Waste2Nano


Waste2Nano

Wastewater → Infrastructure Value

Wastewater treatment plants manage enormous flows of water and solids. AI and high-performance-computing data centers require substantial cooling and reject significant quantities of heat. Waste2Nano is developing an integrated infrastructure platform designed to connect those systems.

Wastewater Cooling → Heat Recovery → Wastewater Treatment Integration → PFAS / Microplastic Management → Solids Recovery → Cellulose & Nanocellulose

The principle is straightforward: use infrastructure that already exists more intelligently. Instead of treating wastewater, cooling demand, waste heat, wastewater solids, PFAS, and microplastics as separate problems, Waste2Nano looks at them as parts of one connected resource system.

Waste2Nano combines its current new intellectual-property platform with more than two decades of experience in wastewater-resource recovery, machinery development, process engineering, material recovery, and real-world system operation, including the development and deployment of wastewater-resource-recovery systems that converted wastewater solids into recoverable cellulosic materials.

Waste2Nano partnerships and pilot inquiries: info@waste2nano.com


The Technology

The material and infrastructure gains Waste2Nano is built around are already visible in the earlier wastewater-resource-recovery work behind it: recovered cellulosic material pulled out of the waste stream before it becomes conventional sludge, that same material recovered and processed into pellet form for reuse, and direct water-treatment comparisons showing what a recovery-focused process produces versus a conventional one. Waste2Nano’s current platform extends that same recovery logic into the cooling and infrastructure needs of AI and high-performance-computing data centers.


Built on Two Decades of Wastewater Engineering

Waste2Nano combines a new intellectual-property platform with more than two decades of hands-on wastewater-resource-recovery experience, from pilot systems to real-world deployment.


Dr. Refael Aharon