Doe/netl-2012/1540 Mobility And Conformance Control For Carbon Dioxide Enhanced Oil Recovery (Co2-Eor) Via Thickeners, Foams, And Gels - U.s. Department Of Energy Page 30

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,
OF HOURS
AND ADSORPTION INTO A SOLID CUBE OF THE POROUS MEDIUM TAKES MANY
[G
M
, 2007]. ............................................................ 122
HUNDREDS OF HOURS
RIGG AND
ICHALIN
F
11.23. S
. T
:
IGURE
TATIC ADSORPTION RESULTS FOR SEVERAL ANIONIC SURFACTANTS
OP
CRUSHED
. B
:
[C
D
, 1988].
CARBONATE ROCK
OTTOM
CRUSHED SANDSTONE ROCK
ASTEEL AND
JABBARAH
............................................................................................................................................... 123
F
11.24. E
IGURE
QUILIBRIUM ADSORPTION LEVELS FOR THE CATIONIC SURFACTANT CETYLPYRIDMIUM
[T
,
., 1993] ...................... 124
CHLORIDE ON CRUSHED DOLOMITE AND CALCITE
ABATABAL
ET AL
F
11.25. T
IGURE
HE EFFECT OF SURFACTANT CONCENTRATION AND TEMPERATURE ON THE ADSORPTION
[F
, C
,
G
, 1991] .............................................................. 124
LOSSES
RIEDMANN
HEN
AND
AUGLITZ
F
11.26. V
C
CD 1045
500
CD/
IGURE
ARYING LEVELS OF ADSORPTION OF ANIONIC
HASER
FROM A
MG
LITER
O
2%
40
C [B
., 2010] .................................................................. 125
BRINE SOLUTION AT
AI ET AL
O
F
11.27. A
C
CD 1045
B
23
C
IGURE
DSORPTION OF
HASER
CIRCULATED THROUGH
EREA SANDSTONE AT
FROM
2%
CD
[B
., 2010]
BRINE SOLUTIONS AS A FUNCTION OF
CONCENTRATION IN THE BRINE
AI ET AL
............................................................................................................................................... 125
F
11.28. A
A
CD 128
B
R
IGURE
DSORPTION OF
LIPAL
ONTO A
ATI
AMAN CORE AND A FRACTURED CORE
[A
,
., 1991] ........................................................................................................... 126
LKAN
ET AL
F
11.29. T
: A
10
/
.
0.5
.
IGURE
OP
DSORPTION RESULTS FOR SURFACTANT SOLUTION FLOWING AT
CC
HR
INTO A
IN
. B
: A
DIAMETER LOW PERM DOLOMITE LIMESTONE CORE
OTTOM
DSORPTION RESULTS FOR
5
/
.
0.5
SURFACTANT SOLUTION FLOWING AT
CC
HR
INTO A
IN DIAMETER HIGH PERM DOLOMITE
[T
H
, 1992] ......................................................................... 127
LIMESTONE CORE
SAU AND
ELLER
F
11.30. C
IGURE
ONCENTRATION OF SURFACTANT IN THE CORE EFFLUENT RELATIVE TO THE INJECTED
;
C
CD 1045
I
CONCENTRATION
THE ADSORPTION OF
HASER
ON AN
NDIANA LIMESTONE CORE
[L
., 2006] .................................................................................................................. 129
IU ET AL
F
11.31. D
I
IGURE
ESORPTION OF THE SURFACTANT FROM THE
NDIANA LIMESTONE CORE VIA BRINE INJECTION
[L
., 2006] .................................................................................................................. 129
IU ET AL
12.
NANOPARTICLE-STABILIZED FOAMS .............................................................................................. 130
F
12.1. I
IGURE
LLUSTRATION OF THE SURFACE AND BUOYANCY FORCES ACTING UPON A SPHERICAL PARTICLE
-
[P
G
, 1997; W
, 1973] ......... 130
AT A PLANAR LIQUID
LIQUID INTERFACE
ERRY AND
REEN
INITZER
12.2. “(T
F
) S
IGURE
OP
CHEMATIC DEMONSTRATING THE RELATIONSHIP BETWEEN CONTACT ANGLE
(
)
MEASURED THROUGH THE AQUEOUS PHASE
AND THE POSITION OF A SPHERICAL PARTICLE AT
Θ
Θ
AND Θ
-
;
< 90° (
),
~ 90° (
),
> 90° (
).
THE PLANAR OIL
WATER INTERFACE
LEFT
CENTER
RIGHT
(B
) E
. F
OR Θ
< 90°,
/
OTTOM
XPECTED EMULSION MORPHOLOGY BASED ON CONTACT ANGLE
O
W
.”
(
),
AND FOR Θ
> 90°,
/
EMULSIONS ARE FAVORED
LEFT
W
O EMULSIONS ARE EXPECTED
[D
., 2004] ......................................................................................................... 132
ICKSON ET AL
F
12.3. V
CO
-
. T
0.5
IGURE
ARIOUS SIZE
DROPLET SIZES IN NANO
SILICA STABILIZED FOAMS
HE RED BAR IS
2
,
500
,
[E
., 2010]. ........................................................... 133
CM
OR
MICRONS
LONG
SPINOSA ET AL
F
12.4. T
(
CO
/
)
IGURE
HE EFFECTS OF PHASE RATIO
VOLUME OF
VOLUME OF WATER
AND NANOPARTICLE
2
[E
,
., 2010] .............. 134
CONCENTRATION ON THE ABILITY TO GENERATE A FOAM
SPINOSA
ET AL
F
12.5. T
IGURE
HE EFFECT OF CONCENTRATION AND FOAM QUALITY ON THE APPARENT VISCOSITY OF THE
-
CO
[E
., 2010]. ............................. 134
NANO
PARTICLE FOAM RELATIVE TO PURE
SPINOSA ET AL
2
F
12.6. A
CO
/
5,
IGURE
T A
BRINE PHASE VOLUME RATIO OF
THE ABILITY TO STABILIZE A FOAM WITH
2
NANOPARTICLES INCREASES WITH DECREASING SALINITY AND INCREASING PARTICLE
[E
., 2010]. ............................................................................ 135
CONCENTRATION
SPINOSA ET AL
F
12.7. A
CO
/
1:1,
IGURE
T A
BRINE PHASE VOLUME RATIO OF
THE ABILITY TO STABILIZE A FOAM WITH
2
,
,
NANOPARTICLES INCREASES WITH DECREASING SALINITY
INCREASING PARTICLE SIZE
AND
(
, F
12.6)
DECREASING PHASE VOLUME RATIO
COMPARE WITH PREVIOUS FIGURE
IGURE
[E
., 2010]. ....................................................................................................... 135
SPINOSA ET AL
F
12.8. F
HIP
180
IGURE
OAM GENERATION IN AN
COLUMN PACKED WITH
MICRON GLASS BEADS REQUIRES A
-1
4,000
[E
., 2010]. ................................... 136
SHEAR RATE OF APPROXIMATELY
S
SPINOSA ET AL
xxvi

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