There is in every 1 million Btu's of combusted natural gas 5 gallons of recoverable water. A lot of industries and processing plants consume a lot of natural gas. They often also consume a lot of water. To get at this water in the combusted natural gas the heat energy in the exhaust has to be removed/recovered. This is done with the technology of Condensing Flue Gas Heat Recovery. The cooler the temperature of the exhaust can be lowered, the greater the volume of water that will be produced. There can be days when the exiting waste exhaust can be cooler than the outside air temperature. We call that mass cooling. Removing and utilizing the heat energy will also help in the battle against Global Warming. For every 1 million Btu's of heat energy that is recovered from the exhaust and is utilized in the building or facility, 117 lbs of CO2 will not be put into the atmosphere. Increasing natural gas energy efficiency is not only good for the business economy but it's also good for the environment.

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There is in every 1 million Btu's of combusted natural gas 5 gallons of recoverable water. A lot of industries and processing plants consume a lot of natural gas. They often also consume a lot of water. To get at this water in the combusted natural gas the heat energy in the exhaust has to be removed/recovered. This is done with the technology of Condensing Flue Gas Heat Recovery. The cooler the temperature of the exhaust can be lowered, the greater the volume of water that will be produced. There can be days when the exiting waste exhaust can be cooler than the outside air temperature. We call that mass cooling.

Removing and utilizing the heat energy will also help in the battle against Global Warming. For every 1 million Btu's of heat energy that is recovered from the exhaust and is utilized in the building or facility, 117 lbs of CO2 will not be put into the atmosphere. Increasing natural gas energy efficiency is not only good for the business economy but it's also good for the environment.