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Efficient purification & compression
THE NEW STANDARD IN HYDROGEN COMPRESSION
Commercial deliveries
have started
WWW.HYETHYDROGEN.COM
Electrochemical Hydrogen purifi cation and compression
No moving parts
High reliability and availability
Low energy consumption
No vibrations
Compact
Silent
HyET is now taking orders for delivery of EHC systems. Purchase and rental units available.Please contact [email protected] for more information.
HyET HCS100 H2 Compressionand Purifi cation systems
MoHyTO
2
3-200
0-410
0.4
175
0.7
1
Skid
10
3-200
0-900
1.4
750
3.5
1
Refueling station
120
3-200
0-950
7.8
5000
33
12
2, 10 and 120-600 kg/day standard systems
Modular design: more stacks = more capacityUp to 875 bar in a single stage, throughput from 0-100%Proprietary highly effi cient power electronics
Throughput (kg/day)
Input pressure (barg)
Output pressure (barg)
Footprint (m2)
Weight (kg)
Power Consumption (kW)
Number of stacks
ThroughputThroughput
Input pressure Input pressure
Output pressure Output pressure
Footprint
Arnhem, The Netherlands | Berkeley, CA, USA20
20
.00
1.0
4
RELIABLESILENT
COMPACT
Efficient purification & compression
Operating input pressure
Operating output pressure
Nominal hydrogen flow rate
Maximum hydrogen flow rate
Required input purity
Inlet connection
Hydrogen purity output
Hydrogen output temperature
Outlet connection
Nominal compression energy consumption
Maximum compression energy consumption
Installed power
Voltage
Coolant
Ambient temperature range
Installation area
Size (L x W x H)
3 – 15 barg
410 barg/6000 PSI (900 barg/13000 PSI as an option)
4.65 m3/h (at STP)
7.23 m3/h (at STP)
99.9%; H2O saturated, CO < 1ppm, CO2 < 2%, (0-100% H2 input purity as an option)*
1/4 inch Swagelok tube fitting
99.999%
35°C
1/4 inch Swagelok medium pressure IPT fitting
8.5 kWh/kg (at nominal flow rate)**
13.2 kWh/kg (at maximum hydrogen flow rate)
15 kW
3 phase 400 VAC 50 Hz
Demineralized water, other options possible
+5°C to +30°C
Indoor, non-ATEX zone (outdoor non-ATEX zone as an option)
1.5 x 0.9 x 2.0 m
Skid 10kg/dayMODEL
Notes
* A CO/CO2 tolerant membrane is under development
** Current developments will lead to significantly lower energy consumption rates.