ADSOL offers decentralized water regeneration systems that treat wastewater on-site for reuse in non-potable applications. Their modular solutions reduce potable water consumption and operational costs for industries and infrastructure by enabling water circularity.
Funding
Funding not disclosed
Founders
Product
Problem
The increasing scarcity and rising cost of potable water, coupled with growing environmental regulations, create significant challenges for industries and infrastructure in managing water resources efficiently. Traditional water management strategies often lead to high operational expenses and a substantial environmental footprint due to reliance on external potable water sources and inefficient wastewater discharge.
Solution
ADSOL provides decentralized water regeneration and reuse technologies designed to create modern, efficient, and sustainable water management strategies. Their integrated systems treat various wastewater streams, including greywater, rainwater, and condensate, enabling on-site reuse for non-potable applications such as irrigation, toilet flushing, and industrial processes. This approach significantly reduces potable water consumption, lowers operational costs through decreased water intake and wastewater disposal fees, and enhances the sustainability profile of architectural and industrial projects. ADSOL offers end-to-end services, encompassing system design, engineering, installation, and ongoing operational support to ensure optimal performance and water circularity.
Target Audience
ADSOL targets industries, logistics centers, sustainable infrastructure developers, hotels, golf courses, residential communities, and mobile living solutions (e.g., campers) seeking to implement circular water management strategies.
Features
- Modular, decentralized water regeneration systems capable of treating multiple wastewater streams (greywater, rainwater, condensate) within a single unit.
- Advanced multi-barrier treatment process incorporating pre-filtration, biological treatment, direct hollow fiber nanofiltration, and UV/chlorination disinfection.
- Nanofiltration membranes with a molecular weight cut-off between 400-800 Daltons to effectively remove contaminants, viruses, and bacteria.
- Intelligent automation and control systems utilizing sensors and machine learning algorithms to optimize energy efficiency, predict maintenance needs, and reduce operational costs.
- Heat recovery capabilities to capture thermal energy from wastewater for pre-heating incoming water, further reducing energy consumption.
- Scalable solutions adaptable for residential, commercial, industrial, and urban infrastructure applications.
- Compliance with tertiary reuse water standards for safe application in non-potable uses.