30 TR to 3000 TR Thermic Fluid
Thermic Fluid Driven Absorption Chiller
Thermic Fluid

Thermic Fluid Driven Absorption Chiller

Efficient cooling solution powered by thermic fluid heat, ideal for energy recovery in industrial applications

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Thermic Fluid Driven Absorption Chiller delivers efficient cooling using high-temperature thermic fluid, maximising energy recovery and making it ideal for industrial applications.

Thermic Fluid Driven Absorption Chiller utilises high-temperature thermic fluid as a heat source, enabling efficient, electricity-free cooling without compressors. Its modular, corrosion-resistant design and advanced heat recovery technology turn high temperature thermic fluid into useful energy, ideal for process industries like chemicals, pharmaceuticals and textiles. By utilising an eco-friendly water and lithium bromide solution, a refrigerant-absorbent pair with zero ozone depletion, this approach enhances sustainability, improves efficiency and aligns with green manufacturing goals by minimising electricity use and reducing environmental impact.

Technical data

  • Product capacity/performance range: 30-3000 TR
  • Energy source: High-temperature thermic fluid at 220°C to 350°C (typically from solar thermal systems, biomass boilers, or process heat)
  • Compliance/standards: ISO, ASME, CE, ETL, JIS, ASHRAE Standards
  • Flexibility/customisation options: Can be configured for varying thermic fluid inlet temperatures (220°C to 350°C), multiple effects for higher efficiency and compatible with SCADA systems. Available in double and triple effects. Custom solutions like one degree chiller and subzero chillers available
  • Temperature range: Chilled water output: - 5°C to 35°C
  • Operating COP/thermal efficiency: Cooling COP: Up to 1.5 (double), up to 1.8 (triple) depending on fluid temperature and cycle design
  • Process fluid options: Water, glycol mixtures

Product features

Thermic fluid heat source
Utilises high-temperature thermic fluid for compressor-free cooling
Natural refrigerants
Uses eco-friendly water and lithium bromide with zero ozone depletion potential
Modular and scalable design
Customizable to meet diverse cooling capacities and application needs
Corrosion-resistant construction
Durable materials ensure long service life in harsh industrial environments
Advanced smart controls
Optimises performance and enables real-time system monitoring
Low electricity consumption
Minimal power use by eliminating mechanical compression
Compact footprint
Space-efficient design suited for retrofit or new installations
Sustainability focused
Promotes energy recovery and reduces carbon footprint
AI/ML-driven real-time integration and monitoring
EDGE Live continuously tracks equipment performance, detects anomalies and enables preventive maintenance—reducing downtime and enhancing operational reliability