MUMBAI, India, Sept. 28 -- Intellectual Property India has published a patent application (202641110977 A) filed by Dr B Nagaraj; Akshitha P; Asya Sree R; Ambrosiya A; Anu Keerthana Muthu M; Mathu Arasi S; and Ms. Naseema A on September 16, 2026, for Ai-Assisted Photovoltaic Electrohydrogenic System For Sustainable Hydrogen Extraction From Non-Potable Water Sources.
Inventors include Akshitha P; Asya Sree R; Ambrosiya A; Anu Keerthana Muthu M; Mathu Arasi S; and Ms. Naseema A.
The application for the patent was published on September 25, 2026, under issue no. 39/2026.
Abstract: ABSTRACT OF THE INVENTION The current invention refers to a method and an integrated system of generating a hydrogen using renewable energy sources, particularly the solar energy, and treated waste water as water feedstock. The system includes a renewable power generation device which is designed to supply electrical energy to an electrolysis machine. It further includes a water purification unit configured to treat waste water to a quality suitable for the electrolysis. The system also has an electrolyzer with modular electrode assemblies. Further, it has a hydrogen storage subsystem that is configured to collect, regulate and store the hydrogen generated. During the process, the waste water is filtered and purified to remove all suspended particles and dissolved contaminants that may reduce the efficiency of electrolysis or damage the electrodes. Afterward, the purified water is fed into the electrolyzer, wherein electrical energy obtained from solar panels or other renewable sources is used for splitting water into hydrogen and oxygen. The electrolyzer comprises conductive electrode materials with excellent economics, suitable inter-electrode spacing, and a sealing arrangement that reduces leakage, electrical resistance, and energy loss. This modular design facilitates the convenient upkeep, upgrade and substitution of electrode components according to hydrogen’s necessity. If required, the separated hydrogen undergoes drying followed by transitions to another sub-system where the hydrogen gets safety valves, pressure and storage vessels. Later on, the hydrogen is utilized in battery plants, industries and for clean energy. The oxygen that is generated is harmlessly released or can be gathered for valuable experimental applications. The efficiency of hydrogen obtained by an electrolysis process using electrical power is by electing. Further invention relates to making use of green hydrogen on will, reuse of waste water, renewable electricity, electrolysis process, and controlled storage of produced hydrogen. So, it can also contribute to the production of green hydrogen with zero greenhouse gas emissions making the world greener and cleaner. As a result of further innovation waste fossil fuel use reuse of water production of green hydrogen without carbon due use of renewable electricity. The invention can be deployed at even burnt, industrial, institutional and also rural places, hence useful for decentralized installation
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