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Generating Steam USING Raw Water as fuel

CST EnviroTech – Closed-Loop Hydrogen Based Steam Generator System (WTS-I)

CST EnviroTech’s closed-loop hydrogen steam generator system represents a breakthrough in clean industrial energy, where water is converted into hydrogen fuel and steam without using fossil fuels or external water supply. A hydrogen-powered IC engine drives an alternator, generating electricity that feeds an alkaline electrolyser to continuously produce hydrogen and oxygen. The engine’s high-temperature exhaust (500–550°C) is captured in a Heat Recovery Unit (HRU) to produce industrial steam, while the condensate is recycled back as feed water, creating a self-sustaining circular process. The system includes a battery bank and power multiplier to stabilize and expand power output, enabling 24×7 operation with zero emissions, zero carbon footprint, and near-zero water consumption.

GENERATING STEAM USING RAW WATER as fuel

CST EnviroTech – Closed-Loop Hydrogen Based Steam Generator System (WTS-II)

CST EnviroTech’s closed-loop hydrogen steam generator system is a breakthrough in clean industrial energy, converting water into hydrogen fuel and high-pressure steam without fossil fuels or external water consumption. A hydrogen-powered IC engine drives an alternator that supplies 100% of the running electrical load and powers an alkaline electrolyser to continuously generate hydrogen and oxygen. The engine’s high-temperature exhaust (500–550°C) is captured through a Heat Recovery Unit (HRU) to produce industrial steam, while condensate is recycled, creating a self-sustaining circular system. In this enhanced model, instead of a power multiplier, an intelligent hybrid power source is used—where any additional power needed for electrolysis beyond alternator output is supplemented by solar energy during the day and grid electricity at night, supported by a battery bank for smooth transitions. This enables reliable 24×7 operation with zero emissions, zero carbon footprint, and near-zero water loss.

GENERATING HOT oil USING RAW WATER as fuel

CST EnviroTech’s Closed-Loop Hydrogen-Based Hot Oil & Energy Recovery System (WTS-III)

CST EnviroTech’s WTS-III Closed-Loop Hydrogen-Based Hot Oil & Energy Recovery System is an advanced clean-energy solution designed to deliver high-temperature industrial hot oil while supporting energy security and climate action. In this system, hydrogen produced through an alkaline electrolyser fuels an IC engine–alternator set, generating electrical power for system auxiliaries and continuous hydrogen production within a controlled closed loop. The engine’s high-temperature exhaust (500–550 °C), instead of being wasted, is routed through a Heat Recovery Unit (HRU), where it efficiently heats circulating oil to produce process hot oil for industrial applications such as drying, heating, reactors, and thermal processes—without the use of fossil fuels. Electrical power for electrolysis beyond alternator output is supported by an intelligent hybrid energy architecture using solar power during daytime, grid power at night, and a battery bank for seamless transitions, enabling reliable 24×7 operation. With no conventional fuel firing, minimal water usage, near-zero emissions, and maximum waste-heat utilization, the WTS-III system demonstrates how hydrogen, heat recovery, and hybrid power integration can create a scalable, resilient, and future-ready industrial energy solution aligned with global energy transition and climate objectives.

GENERATING HOT oil USING RAW WATER AS fuel

CST EnviroTech’s Closed-Loop Hydrogen-Based Hot Oil & Energy Recovery System (WTS-IV)

CST EnviroTech’s Closed-Loop Hydrogen-Based Hot Oil Generator System is a hybrid clean-energy solution designed for reliable industrial heating while advancing energy security and climate action goals. In this system, hydrogen generated through an alkaline electrolyser fuels an IC engine–alternator (H₂ DG set), producing electrical power for system operation while delivering high-temperature exhaust gases at approximately 550 °C. This exhaust energy is captured in a Heat Recovery Unit (HRU), where circulating cold oil is heated to produce high-grade process hot oil for industrial applications such as drying, reactors, and thermal processing—without fossil fuels. Electrical power for electrolysis and auxiliaries is supplied through an intelligent hybrid power source that prioritizes solar energy during daytime, seamlessly switches to grid power at night, and is stabilized through a battery bank to ensure uninterrupted 24×7 operation. Hydrogen generated is continuously recycled back to the engine, while oxygen is safely vented or recovered, creating a controlled closed-loop system with minimal water consumption. By combining hydrogen energy, waste-heat recovery, and solar-grid hybrid power integration, the WTS-IV system delivers near-zero emissions, reduced carbon footprint, and highly efficient industrial heat generation aligned with modern energy transition and climate-resilient infrastructure objectives.

GENERATING HOT Water using RAW WATER as fuel

CST EnviroTech’s Closed-Loop Hydrogen-Based Hot Water Generator System (WTS-V)

CST EnviroTech’s  Closed-Loop Hydrogen-Based Hot Water Generator System is a clean and efficient solution for industrial hot water production, designed to support energy security, energy transition, and climate action objectives. In this system, hydrogen generated through an alkaline electrolyser is used to fuel an IC engine–alternator (H₂ DG set), producing electrical power while generating high-temperature exhaust gases at approximately 550 °C. This exhaust heat is recovered in a Heat Recovery Unit (HRU), where incoming cold water is heated to produce continuous, high-temperature hot water for industrial and commercial applications such as process heating, washing, sanitation, and utilities—without the use of fossil fuels. The electrical power produced by the alternator is routed through a power multiplier and stabilized via a battery bank to ensure reliable operation of the electrolyser and system auxiliaries, enabling sustained closed-loop hydrogen generation. Hydrogen is continuously recycled back to the engine, oxygen is safely vented or recovered, and water remains within a controlled loop, resulting in near-zero water loss. By integrating hydrogen energy, waste-heat recovery, and intelligent power management, the WTS-V system delivers zero on-site emissions, reduced carbon footprint, and dependable hot water generation aligned with modern climate-resilient and sustainable industrial infrastructure goals.

GENERATING HOT Water using RAW WATER as fuel

CST EnviroTech’s Closed-Loop Hydrogen-Based Hot Water Generator System (WTS-VI)

CST EnviroTech’s Closed-Loop Hydrogen-Based Hot Water Generator System is a hybrid clean-energy solution engineered to deliver reliable industrial hot water while supporting energy security, energy transition, and climate action initiatives. In this system, hydrogen produced through an alkaline electrolyser fuels an IC engine–alternator (H₂ DG set), generating electrical power and producing high-temperature exhaust gases at approximately 550 °C. This exhaust heat is captured in a Heat Recovery Unit (HRU), where incoming cold water is efficiently heated to produce continuous hot water for industrial and institutional applications such as process heating, washing, sanitation, and utilities—without the use of fossil fuels. Electrical power for electrolysis and auxiliaries is managed through an intelligent hybrid power source that prioritizes solar energy during daytime operation, seamlessly switches to grid electricity at night, and is stabilized by a battery bank to ensure uninterrupted 24×7 performance. Hydrogen is continuously recycled back to the engine, oxygen is safely vented or recovered, and water remains within a controlled loop, resulting in minimal water loss and near-zero on-site emissions. By integrating hydrogen energy, waste-heat recovery, and solar-grid hybrid power management, the WTS-VI system delivers a resilient, low-carbon, and future-ready hot water solution aligned with global sustainability and climate-resilient infrastructure goals.

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