Absorption Chillers

Increased Reliability and Efficiency

Achieving building efficiency and meeting environmental demands requires innovative chiller options. As a global leader in chiller design, YORK® delivers.

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BENEFITS

FLEXIBLE DESIGN

A variety of driving heat sources and the broadest product range available provides greater application diversity.

INNOVATIVE TECHNOLOGY

Two-step evaporation and absorption cycle combined with a parallel flow reduces the risk of crystallization and increases efficiency.

PROVEN RELIABILITY

Since 1960, YORK® has led the industry in absorption chiller technology, offering the most advanced, diverse product portfolio.

UNMATCHED SUSTAINABILITY

Using water as the refrigerant yields zero ozone depletion and global warming potential.

  • 30-2,000 TR (105-7,034 kW)
  • Innovative YORK® two-step evaporator and absorber design enhances absorption of the refrigerant into the concentrated solution, reducing overall pressure and risks of crystallization.
  • Lower pressure steam into the generator can be used to drive the absorption cycle for higher system efficiency.

  • 120-4,000 TR (422 TO 14,067 kW)
  • Two-step evaporator and absorber design enhances absorption of the refrigerant into the concentrated solution, reducing overall pressure.
  • Parallel flow cycle enables lower lithium bromide solution concentrations, reducing crystallization risk and the potential for corrosion.

  • 30-100 TR (105-352 kW)
  • Coefficient of performance (COP) of 1.23 based on lower heating value (LHV) with a turndown ratio from 100% to 25%.
  • Ambient temperature range of 5°C/41°F to 40°C/104°F with 10-90% relative humidity.

  • 120-1,600 TR (422-5,626 kW)
  • Two-step evaporator and absorber design enhances absorption of the refrigerant into the concentrated solution, reducing overall pressure
  • Parallel flow cycle enables lower lithium bromide solution concentrations, reducing crystallization risk and the potential for corrosion

  • 30–2,000 TR (105-7,034 kW)
  • Innovative YORK® two-step evaporator and absorber design enhances absorption of the refrigerant into the concentrated solution, reducing overall pressure
  • Lower temperature hot water source into the generator can be used to drive the absorption cycle for higher system efficiency

  • Up to 194°F/90°C
  • Innovative YORK® two-step evaporator and absorber design enhances absorption of the refrigerant into the concentrated solution, reducing overall pressure
  • Variable driving heat sources, such as jacket water from a gas engine, low- to high-pressure steam, direct-fired or exhaust gas

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