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. 2021 Apr 28;12(20):6772–6799. doi: 10.1039/d1sc01609a

Summary of the adsorption capacity of H2S for selected metal–organic frameworks and benchmark materials.

MOF BET Surface area [m2 g−1] H2S adsorption [mmol g−1] Ref.
MIL-47(V) 930 14.6 67
MIL-53(Cr) 1946 12.0 67
MIL-53(Al)-BDC 1103 11.7 67
Ni-CPO-27 1547 12.0 85
Mg-CUK-1 604 3.1a 68
MIL-53(Al)-TDC 1150 18.5 69
MIL-100(Fe) 2000 16.7 67
MIL-101(Cr) 2916 30.1 34
MIL-101(Cr)-4F(2%) 2176 36.9 34
MFM-300(Sc) 1350 16.5 70
Cu-BTC 1590 1.1 63
SU-101 412 15.95 74
PAF-302 5600 51.94 75
COF-102 3621 35.57b 75
HKUST-1c 2.7d 60
10Mn–45Zn–45Ti–Oe 0.0005 76
4A molecular sieve zeolite 49.5 0.0002f 77
13X zeolite 440 0.007g 78
SBA-15 950 1.98h 79
PEI(50)/SBA-15(MBS-2) 80 0.0002h 80
Wood-based AC 1400 0.008 81
a

15% vol H2S.

b

GCMC simulations.

c

Graphite-oxide composite.

d

1000 ppm H2S in moist air.

e

H2S/H2/CO2/H2O (600 ppm : 25% : 7.5% : 1%).

f

10% vol H2S.

g

80 ppmv H2S.

h

4000 ppmv of H2S and 20 vol% of H2 in N2.