Maygia utilizes hydrogen and air to simultaneously produce electricity and treat seawater, transforming it into potable water while minimizing chemical use and energy costs. This technology addresses the high energy demands of traditional reverse osmosis systems, offering a sustainable solution for water scarcity and regulatory compliance in various industries.
Funding
$120K 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
Traditional seawater desalination methods, particularly reverse osmosis, consume significant amounts of electricity, contributing to high operational costs and environmental impact. Industries and utilities face increasing pressure to reduce energy consumption and minimize the depletion of water resources while meeting stringent regulatory requirements.
Solution
Maygia offers a combined electricity generation and water treatment system powered by hydrogen and air. This integrated approach simultaneously produces electricity and desalinates seawater, reducing the reliance on external power sources and minimizing chemical usage. By leveraging hydrogen as a fuel source, the system lowers both costs and emissions compared to conventional reverse osmosis desalination. The technology provides a sustainable solution for industries and utilities seeking to improve water treatment efficiency and reduce their environmental footprint.
Target Audience
The primary target audience includes industries such as refineries, fertilizer manufacturers, steel producers, and semiconductor manufacturers, as well as utilities and other sectors that use hydrogen and require water treatment.
Features
- Integrated system for simultaneous electricity generation and seawater desalination
- Hydrogen-powered operation, reducing reliance on grid electricity
- Reduced chemical usage compared to traditional water treatment methods
- Lower operational costs and emissions profile
- Modular design for flexible deployment and scalability