Semiclathrate Hydrate Thermal Energy Carrier for Cooling and Energy Storage
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Technology Overview
This invention utilize semiclathrate hydrate for efficient cooling, storage, and transport. It features a temperature control system (-56°C), 200 kg/h hydrate generation, 600L storage tanks, and a 10-kW air handling unit, with 40+ sensors for real-time monitoring.
Semiclathrate Hydrate Cooling & Storage Technology
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Advanced Low-Temperature Cooling:
Operates down to –56°C, suitable for deep cooling applications. Efficient thermal energy storage and release.
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High-Capacity Hydrate Generation:
Produces 200 kg/h of semiclathrate hydrate, two 600 L storage tanks for large-scale storage. Supports cooling, storage, and transport integration.
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Integrated Demonstration System:
10 kW air handling unit to simulate heat load. Piping system for hydrate slurry flow studies. End-to-end prototype validation.
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Real-Time Monitoring & Control:
40+ sensors for temperature, pressure, flow, and resistivity. Comprehensive process monitoring to ensure operational reliability and optimisation.
Maritime Use Cases

This cooling technology provides efficient temperature regulation for refrigerated shipping containers transporting pharmaceuticals, seafood, and other temperature-sensitive goods. By maintaining stable cooling at temperatures as low as −56 °C, the system improves cargo preservation while reducing refrigeration energy consumption.

The technology can also support the storage of cryogenic fuels such as LNG and hydrogen by improving thermal insulation and reducing fuel evaporation losses. This enables longer storage durations for alternative fuels in maritime and offshore energy applications.

In addition, the system can provide precise temperature control for underwater laboratories and submersibles, supporting the safe operation of equipment and the preservation of biological samples in extreme underwater environments.
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