Small waste heat recovery system:
The technology makes use of the low-grade waste heat (80 °C ~ 130 °C) in industrial production to recover and utilize it. The cold source above-25 °C can be made by the single-stage device, and the true low-temperature waste heat can be efficiently utilized by cop45% ~ 65%;The whole system has small power drive parts, stable work, easy to operate, and low maintenance cost, high security;Using organic mixed solution as refrigerant, this technology can effectively alleviate a series of environmental problems caused by the use of freon, reduce greenhouse gas emissions, and realize a new concept of green energy.
Features:
1.Energy saving;
2.Saving electricity;
3.Pollution-free;
4.Stable and reliable operation, simple operation and easy adjustment;
5.Land occupation province;
6.Easy maintenance;
7.Low noise.
Technical Parameters:
NO
|
PROUCT NAME
|
PRODUCT NUMBER
|
PRODUCT TYPE
|
Refrigerating
power
|
Power
consumption
|
UNIT
|
OTHERS
|
1
|
Small
waste heat recovery system
|
ES0601002
|
Energy
saving
|
30kw
|
0.8kw
|
Set
|
|
2
|
Medium-sized
waste heat recovery system
|
ES0601003
|
Energy
saving
|
150kw
|
4kw
|
Set
|
|
3
|
Large
waste heat recovery system
|
ES0601004
|
Energy
saving
|
5000kw
|
172kw
|
Set
|
|
Process flow:
The vapor refrigerant (ammonia) is
separated from the steam condensing water heating generator, and then
evaporates to condense, forming liquid ammonia which is stored temporarily in
the buffer tank. After decompression, it is sent into the evaporator for evaporating
and absorbing heat,so that the temperature of the refrigerant (glycol aqueous
solution) in the tube side of the evaporator is reduced to -20.2℃. The poor
solution resolved by the generator is sent into the absorber to be mixed with
the low pressure ammonia gas generated by heat exchange through the evaporator,
and reduced to a rich solution, which is pumped to the generator for
circulating refrigeration.
Applications:
The technology makes use of the low-grade waste heat (80 °C ~ 130 °C) in industrial production to recover and utilize it. The cold source above-25 °C can be made by the single-stage device, and the true low-temperature waste heat can be efficiently utilized by cop45% ~ 65%。