R&D on Industrial Heat Pumps - publications.tno.nl · Industrial energy use & waste heat •Use of...
Transcript of R&D on Industrial Heat Pumps - publications.tno.nl · Industrial energy use & waste heat •Use of...
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R&D on Industrial Heat
Pumps
S. Spoelstra
July 2014
ECN-L--14-039
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www.ecn.nl
R&D on Industrial Heat Pumps
Simon Spoelstra
ECN – Biomass & Energy Efficiency
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Content
• Industrial energy use & waste heat
• Heat pump concepts
• Summary & outlook
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Industrial energy use & waste heat
• Use of heat in industry accounts for 80 % of the final energy use
• Temperature level very diverse (< 100°C tot > 1000°C)
• Total industrial energy use is available as waste heat
• Amount of waste heat decreases with temperature
• Large heat demand @ high temperature Large waste heat sources @ low temperature => Industrial heat pumps
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Industrial heat pump requirements
• Operating temperature
• Temperature lift
• Scale
• Economics
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Heat pump concepts in industry
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Heat source
Heat
dem
an
d
50°C 100°C 150°C
100°C
150°C
200°C
0°C
Spac
e
hea
tin
g P
ulp
&P
ape
r Fo
od
pro
cess
ing
Ch
em
ical
ind
ust
ry
Ref
ine
rie
s
250°C
ambient Solar / geothermal / Industrial waste heat
current heat pump technologies
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VC – New working media
• Media – CO2
– Hydrocarbons
– Water
– R245fa
– ….
• ECN project at paper mill – SmurfitKappa
– IBK
– Bronswerk Heat Transfer
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Vapor compression heat pump
- paper mill -
Full scale - 10% savings on steam use
Pilot - 200 kWth
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Heat source
Heat
dem
an
d
50°C 100°C 150°C
100°C
150°C
200°C
0°C
Spac
e
hea
tin
g P
ulp
&P
ape
r Fo
od
pro
cess
ing
Ch
em
ical
ind
ust
ry
Ref
ine
rie
s
250°C
ambient Solar / geothermal / Industrial waste heat
current heat pump technologies
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Thermoacoustic heat transformer
Waste heat temperature 140°C Process heat temperature 190°C Chemical/refining industry Efficiency 25-30%
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Heat source
Heat
dem
an
d
50°C 100°C 150°C
100°C
150°C
200°C
0°C
Spac
e
hea
tin
g P
ulp
&P
ape
r Fo
od
pro
cess
ing
Ch
em
ical
ind
ust
ry
Ref
ine
rie
s
250°C
ambient Solar / geothermal / Industrial waste heat
current heat pump technologies
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Hybrid thermochemical heat transformer
• Both thermally and electrically driven – Solid sorption system (salt – ammonia)
– NH3 compressor added
• Lower waste heat temperatures
• High temperature lifts
• Chemical/refining, food, and paper industry
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Compressor test hybrid system
• Testing of a continuous component (compressor) under dynamic operation conditions of a batch sorption system.
• Poster 5.13
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Heat source
Heat
dem
an
d
50°C 100°C 150°C
100°C
150°C
200°C
0°C
Spac
e
hea
tin
g P
ulp
&P
ape
r Fo
od
pro
cess
ing
Ch
em
ical
ind
ust
ry
Ref
ine
rie
s
250°C
ambient Solar / geothermal / Industrial waste heat
current heat pump technologies
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Electrically driven thermoacoustic heat pump
• Flexible in operating temperature
• High temperature lifts
• Energy savings 10 – 50%
Linear motor
Heat pump
Distillation column
Bottom stream
Top stream
Reflux
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Testing of electrically driven TA system
Labscale Benchscale
Tested for • 10 - 80°C • 50 - 100°C • 80 - 140°C • Efficiencies nearing 40% of Carnot
Testing currently underway
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Summary & Outlook
• Large energy saving potential for heat pumps in industry, conservative estimate of 20-30% of the Industrial use for heat.
• New concepts/working media needed for higher operating temperatures and higher temperature lifts
• Technically feasible concepts under development
• Scale up and improve economics
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Thanks for your attention
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