GeoExpander Chilling Pak


 
 






GeoExpander Chilling Pak

Future-proof your process fluid cooling system with a REACT GeoExpander Chilling Pak!

 http://www.reactenergy.ca/nss-folder/pictures/GeoExpander%20Chiller%20Brochure%20.pdfGeoExpander Chiller Brochure .pdf

Now you can reduce or completely eliminate operating costs & greenhouse gas emissions for cooling the process fluids in your next SAGD, heavy oil up-grader or manufacturing plant using this earth friendly solution.

After more than 10 years of development & research, REACT Energy has created a hybrid chilling platform which is energy autonomous & earth friendly.

Our unique process combines the best in off-the-shelf components & patented products in a hybrid design which optimizes the cooling cycle & provides a real payback & return on investment compared to the energy hungry status quo.  A GeoExpander Chilling Pak can completely replace the need for a conventional cooling system & will pay for 100% of its capital costs just from the energy savings in as little as 5 years from the installation date without having compromised your initial capital budget.

Imagine that!  Five years after installation & the GeoExpander Chilling Pak will generate a stable & positive revenue stream for as long as your facility is operating!

The best part is that there will be a reduction or even a complete elimination of greenhouse gas emissions concurrent to saving the green in your bank account.

REACT's Technology Platform:

  • Makes clean & reliable electricity by recycling existing low level waste heat (temperatures >93C degrees)   
  • Rejects remaining heat with efficient geoexchange technologies powered by the on-site generation of electricity from low level waste heat.  
  • Uses Kyoto approved chemical working fluids
  • May not require any additional purchased electricity or fuel for process cooling
  • Non-combustion process offsets green house gas emissions from electricity purchases.
  • The flexible design is scalable, modular, & environmentally friendly.
  • No special training or personnel required
  • Low annual maintenance costs
  • Small mechanical footprint
  • Eligible for favorable government incentive programs, tax investment credits & accelerated capital cost allowances.

For more information & a custom chilling formula for your facilities & more information on the game changing GeoExpander Chilling Pak, call REACT Energy!

  

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Combined Heat and Power (CHP) is also known as Cogeneration or total energy.


CHP is the production of usable heat and power in a single process at the point of consumption.  It differs from traditional methods of power generation in that the heat generated in the production of electricity is captured and used for a variety of purposes such as industrial processes, district/community heating or space heating.

With the addition of an absorption chiller, a CHP system is able to provide cooling - thus making it a tri-generation system.

CHP is a much more efficient way to produce heat and power than traditional methods.  In a conventional power generation system, fuel is burned to drive generators which make power and up to 65% of the potential energy contained in the fuel is lost through heat exhaust transmission and distribution losses’, meaning the system only operates at about 35% efficiency.

 

A CHP system captures the heat and reduces the transmission and distribution losses, and so operates at a much higher rate of efficiency - typically greater than 80%.
A well-designed and operated CHP system will always provide significantly improved energy efficiency than conventional methods, which means the user makes both energy and costs savings.

 

As CHP systems are located at the point of consumption, there is very little loss of energy through transmission and distribution - again creating a more efficient system.
An added benefit of having on-site power production is that it offers a source of high-quality secure power that operates independently of the grid.  In many instances, any excess electricity generated by a CHP unit can be exported and sold back to the grid, thus shortening the capital cost payback period.

Because CHP systems are so efficient, they also provide environmental benefits such as significantly reduced CO2 emissions.

In the past, CHP systems have typically used natural gas as a fuel source, but as the technology has matured significantly in recent years, systems are now coming to market which can use biomass, biogas and other renewable fuel sources.

Many governments around the world have recognized the benefits that CHP can provide and are supporting the promotion of this highly efficient and environmentally responsible technology.

 

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