

Examining the effects of combining green/blue hydrogen and ammonia (fuels of the future) in the production units. Transitioning to hydrogen in the power plants to reduce greenhouse gas emissions.
Identifying people, turtles, oil stains and foam through stilling basins in power plants - saving lives and preventing environmental pollution.
An orbital welding robot for narrow areas in power plants. Preforms smart and fast welding of piping (about 3 times faster than a human) and with superior quality.
Measuring thickness with ultrasonic technology using drones.
Nanoparticle-based strain gauges, installed on the piping with adhesives, and used to measure temperature changes and detect leakages in steam valves.
Using cooling suits (vests) to improve working conditions and productivity in hot areas at the power stations. The suit is either attached to a stationary unit or a mobile unit that's carried on the back.
Using aerial laboratories (drones) to monitor exhaust gases from power plant chimneys.
A flexible and simple sticker that cools when exposed to sunlight and air. May be used to cool containers, electrical panels and more. Does not require electricity and may be applied to any surface that's exposed to the sun.
Using drones to visually inspect coal piles in terms of size and combustion.
Developing the ability to additively manufacture critical steam-piping components is crucial for a power company. This ability is developed by employing 3D printing techniques that allow to produce piping components, fast and at a reduced cost.
Real-time data available through a cellphone app which uses 3D photography and augmented reality. This data can be used to identify piping and equipment parameters (pipeline, equipment, pressure, temperature) using any smartphone or AR glasses.