Four unit operations of mass transfer: part I, distillation , part II, absorption and desorption, part III, liquid extraction, part IV, adsorption
Gespeichert in:
1. Verfasser: | |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Aachen
Shaker
2001
|
Schriftenreihe: | Berichte aus der Verfahrenstechnik
|
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Getr. Zählung Ill., graph. Darst. |
ISBN: | 3826592085 |
Internformat
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100 | 1 | |a Dutta-Roy, Subash |e Verfasser |4 aut | |
245 | 1 | 0 | |a Four unit operations of mass transfer |b part I, distillation , part II, absorption and desorption, part III, liquid extraction, part IV, adsorption |c Subash Dutta-Roy |
264 | 1 | |a Aachen |b Shaker |c 2001 | |
300 | |a Getr. Zählung |b Ill., graph. Darst. | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
490 | 0 | |a Berichte aus der Verfahrenstechnik | |
650 | 4 | |a Absorption - Stoffübertragung | |
650 | 4 | |a Adsorption - Stoffübertragung | |
650 | 4 | |a Desorption - Stoffübertragung | |
650 | 4 | |a Destillation - Stoffübertragung | |
650 | 4 | |a Extraktion - Stoffübertragung | |
650 | 0 | 7 | |a Adsorption |0 (DE-588)4000536-7 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Absorption |0 (DE-588)4000245-7 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Stoffübertragung |0 (DE-588)4057696-6 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Destillation |0 (DE-588)4011543-4 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Extraktion |0 (DE-588)4016062-2 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Desorption |0 (DE-588)4149190-7 |2 gnd |9 rswk-swf |
689 | 0 | 0 | |a Destillation |0 (DE-588)4011543-4 |D s |
689 | 0 | 1 | |a Stoffübertragung |0 (DE-588)4057696-6 |D s |
689 | 0 | |5 DE-604 | |
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689 | 1 | 1 | |a Stoffübertragung |0 (DE-588)4057696-6 |D s |
689 | 1 | |5 DE-604 | |
689 | 2 | 0 | |a Desorption |0 (DE-588)4149190-7 |D s |
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Datensatz im Suchindex
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adam_text |
PART
I
-
DISTILLATION
CONTENTS
1.
MASS-TRANSFER
PROCESSES
6
1.1
PROCESSES
DEALING
WITH
MASS
TRANSFER
6
1.2
PHASE
AND
PHASE
EQUILIBRIUM
6
1.2.1
DEFINITION
-
PHASE
6
1.2.2
PHASE
EQUILIBRIUM
6
1.2.3.
EQUILIBRIUM
DIAGRAMM
7
1.2.4.
BUBBLE
POINT
AND
DEW
POINT
DIAGRAMM
7
1.3
GIBBS
PHASE
RULE
8
1.3.1
DEGREE
OF
FREEDOM
IN
A
SYSTEM
UNDER
EQUILIBRIUM
8
1.3.2
GIBBS
RULE
FOR
DEGREE
OF
FREEDOM
IN
DISTILLATION
9
1.3.3
GIBBS
RULE
FOR
DEGREE
OF
FREEDOM
IN
ABSORPTION
9
1.4
VAPOUR
PRESSURE
OF
A
PURE
COMPONENT
10
1.4.1
DEFINITION
-
VAPOUR
PRESSURE
10
1.4.2
CLAUSIUS
CLAYPERON-EQUATION
FOR
VAPOUR
PRESSURE
11
1.5
DRIVING
FORCE
OF
MASS
TRANSFER
12
1.5.1
DEFINITION
-
DRIVING
FORCE
12
1.5.2
DRIVING
FORCE
OF
MASS
TRANSFER
AT
THE
PHASE
INTERFACE
12
1.5.2.1
IN
DISTILLATION
PROCESS
12
1.5.2.2
IN
ABSORPTION
PROCESS
13
1.5.3
MASS
TRANSFER
COEFFICIENT
14
2.
PARTIAL
VAPOUR
PRESSURE
AND
STATE
OF
EQUILIBRIUM
IN
A
15
BINARY
SYSTEM
2.1
GAS
MIXTURE
15
2.1.1
DALTON
'
S
LAW
15
2.1.2
MIXING
OF
'IDEAL'
GASES
15
2.2
VAPOUR
AND
LIQUID
PHASE
IN
INTIMATE
CONTACT
16
2.2.1
COMPONENTS
ARE
TOTALLY
IMMISCIBLE
16
2.2.1.1
PARTIAL
VAPOR
PRESSURE
OF
THE
COMPONENTS
16
2.2.1.2
STEAM
DISTILLATION
18
2.2.1.3
BUBBLE
AND
DEW
POINT
CURVE
OF
THE
SYSTEM
19
2.2.2
COMPONENTS
IN
THE
LIQUID
PHASE
ARE
COMPLETELY
MISCIBLE
20
2.2.2.1
FUGACITY
AND
COEFFICIENT
OF
FUGACITY
20
2.2.2.2
CALCULATION
OF
FUGACITY
COEFFICIENT
24
2.2.2.3
'IDEAL'
SOLUTION
IN
LIQUID
PHASE
27
2.2.2.3.1
LEWIS-RANDALL-RULE
27
2.2.2.3.2
RAUOLT
'
S
LAW
27
2.2.2.3.3
DISTRIBUTION
COEFFICIENT
'K'
28
2.2.2.4
'NONIDEAL'
SOLUTION
IN
LIQUID
PHASE
35
2.2.2.4.1
POSITIVE
AND
NEGATIVE
DEVIATION
FROM
35
IDEALITY
2.2.2.4.2
ACTIVITY
COEFFICIENT
'Y'
37
2.2.2.4.3
DISTRIBUTION
COEFFICIENT
'K'
OF
A
42
NON-IDEAL
SOLUTION
2.2.3
COMPONENTS
IN
THE
LIQUID
PHASE
ARE
MISCIBLE
ONLY
44
WITHIN
LIMITED
CONCENTRATION
RANGE
2.2.3.1
PARTIAL
VAPOUR
PRESSURE
OF
THE
COMPONENTS
44
2.2.3.2
EQUILIBRIUM
CURVE
AND
BOILING
POINT
DIAGRAMM
45
2.2.4
CALCULATION
OF
EQUILIBRIUM
STATE
WITHIN
BUBBLE
POINT
45
AND
DEW
POINT
TEMPERATURES
3.
FLASH
DISTILLATION
47
3.1
DEFINITION
-
FLASH
DISTILLATION
47
3.2
FLASH CURVE
47
3.3
FLASH
CURVE
WITH
ENTHALPY
BALANCE
49
3.4
FLASH CURVE
OF
IMMISCIBLE
COMPONENTS
50
4.
CONTINUOUS
DISTILLATION
OR
RECTIFICATION
OF
A
BINARY
MIXTURE
53
4.1
DISTILLATION
WITH
TWO
EQUILIBRIUM
STAGES
53
4.2
DISTILLATION
WITH
A
NUMBER
OF
STAGES
IN
ROW
53
4.3
DISTILLATION
COLUMN
55
4.3.1
MATERIAL
BALANCE
55
4.3.2
OPERATING
LINE
55
4.3.3
REFLUX
RATIO
58
4.3.4
MCCABE-THLELE-DIAGRAMM
59
4.3.4.1
DEFINITION
-
THEORETICAL
STAGE
59
4.3.4.2
DETERMINATION
OF
NUMBER
OF
STAGES
60
4.3.5
DEPHLEGMATOR
OR
FRACTIONAL
CONDENSATION
61
4.3.6
EFFECT
OF
THERMAL
CONDITION
OF
FEED
61
4.3.7
FEED
LINE
62
4.3.8
HEAT
BALANCE
OF
A
DISTILLATION
COLUMN
63
4.4
TWO
LIMITS
OF
REFLUX
RATIO
64
4.4.1
MINIMUM
REFLUX
RATIO
64
4.4.2
INFINITELY
LARGE
REFLUX
RATIO
65
4.5
ECONOMIC
SIGNIFICANCE
OF
REFLUX
RATIO
66
4.6
NECESSARY
STEPS
TO
CALCULATE
A
BINARY
DISTILLATION
COLUMN
67
4.7
MCCABE-THIELE-METHOD
WITHOUT
THE
ASSUMPTION
OF
CONSTANT
69
MOLAL
FLOW
4.8
RELATIVE
VOLATILITY
AND
FENSKE-EQUATION
74
5.
BATCH
DISTILLATION
PROCESS
79
5.1
BATCH
DISTILLATION
WITHOUT
RECTIFYING
COLUMN
79
5.2
BATCH
DISTILLATION
WITH
RECTIFYING
COLUMN
84
5.2.1
OPERATION
-
CONSTANT
DISTILLATE
COMPOSITION
84
5.2.1.1
MATERIAL
BALANCE
85
5.2.1.2.
ADJUSTMENT
OF
REFLUX
RATIO
86
5.2.2
OPERATION
-
CONSTANT
REFLUX
RATIO
87
2
6.
INTRODUCTION
TO
MULTICOMPONENT
DISTILLATION
90
6.1
BUBBLE
AND
DEW
POINT
OF
A
MULTICOMPONENT
MIXTURE
90
6.2
SHORT-CUT
METHOD
FOR
MULTICOMPONENT
DISTILLATION
93
6.2.1
KEY-COMPONENTS
AND
FENSKE-EQUATION
93
6.2.2
UNDERWOOD-EQUATION
FOR
MINIMUM
REFLUX
94
6.2.3
NUMBER
OF
THEORETICAL
STAGES
95
6.3
CALCULATION
OF
MULTICOMPONENT
DISTILLATION
100
6.3.1
LEWIS-MATHESON-METHOD
101
6.3.1.1
EQUATIONS
OF
L-M-METHOD
102
6.3.1.2
CONVERGENCE
AND
CORRECTION
OF
ASSUMED
DATA
103
6.3.2
THIELE-GEDDES
METHOD
110
6.3.2.1
SYSTEM
OF
EQUATIONS
OF
T-G-METHOD
111
6.3.2.2
CONVERGENCE
AND
CORRECTION
OF
ASSUMED
DATA
112
6.3.3.
MATRIX-METHOD
118
6.3.3.1
CALCULATION
OF
A
CONVENTIONAL COLUMN
118
6.3.3.1.1
SYSTEM
OF
EQUATIONS
IN
MATRIX
ALGEBRA
118
6.3.3.1.2
CONVERGENCE
AND
CORRECTION
OF
ASSUMED
DATA
120
6.3.3.2
MATRIX
METHOD
FOR
COMPLEX
COLUMN
125
6.3.3.2.1
SYSTEM
OF
EQUATIONS
FOR
A
COMPLEX
126
DISTILLATION
PROCESS
6.3.3.2.2
CONVERGENCE
AND
CORRECTION
OF
ASSUMED
DATA
127
6.4
ACTIVITY
COEFFICIENT
Y
IN
MULTICOMPONENT-MIXTURE
132
3
PART
II
-
ABSORPTION
AND
DESORPTION
CONTENTS
-
1.
DEFINITION
-
ABSORPTION
AND
DESORPTION
4
2.
TRANSPORT
OF
MATERIAL
THROUGH
DIFFUSION
AND
CONVECTION
4
2.1
MATERIALTRANSPORT
AS
EQUILIBRIUM
STAGE
PROCESS
AND
AS
4
CONTINUOUS
DIFFUSION
PROCESS
2.2
DIFFUSION
4
2.2.1
EQUIMOLAL
DIFFUSION
IN
A
BINARY
MIXTURE
5
2.2.2
ONE-WAY
DIFFUSION
IN
A
BINARY
GAS
MIXTURE
7
2.2.3
DIFFUSION
IN
LIQUID
9
2.2.4
CALCULATION
OF
DIFFUSIVITY
9
2.3
CONVECTION
11
2.4
FILM-THEORY
AND
DRIVING
FORCE
OF
MASS
TRANSFER
12
2.4.1
FILM
THEORY
12
2.4.2
MASS
TREANSFER
COEFFICIENT
14
2.4.2.1
INDIVIDUAL
AND
OVERALL
MASS
TRANSFER
COEFFICIENT
14
2.4.2.2
HIGBLE
AND
DANCKWERT
MODEL
16
2.4.2.3
MEASUREMENT
OF
MASS
TRANSFER
COEFFICIENT
FROM
18
LABORATORY
EXPERIMENT
2.4.2.4
DIMENSIONAL
ANALYSIS
-
CALCULATION
OF
MASS
19
TRANSFER
COEFFICIENT
FROM
COMPONENT
PROPERTIES
AND
PARAMETER
OF
USED
EQUIPMEMT
2.5
A
FEW
PUBLISHED
EQUATIONS
FOR
THE
DETERMINATION
OF
MASS
21
TRANSFER
COEFFICIENT
3.
OPERATING
LINE
AND
EQUILIBRIUM
LINE
24
3.1
OPERATING
LINE
24
3.2
EQUILIBRIUM
LINE
25
3.2.1
HENRY'S
LAW
25
3.2.2
A
FEW
EQUILIBRIUM
DATA
26
3.3
MINIMUM
QUANTITY
OF
SOLVENT
26
4.
MATHEMATICAL
MODEL
FOR
MASS
TRANSFER
IN
A
COLUMN
30
4.1
NTS
AND
HETS
30
4.2
NTV
AND
HTU
30
4.3
LOGARITHMIC
MEAN
DRIVING
FORCE
35
5.
ADIABATIC
ABSORPTION
37
6.
HTU
AND
A-VALUES
FROM
ACTUAL
RUNNING
PLANTS
46
1
7.
DESORPTION
47
7.1
THREE
WAYS
OF
DESORPTION
47
7.2
STRIPPING
OF
DISSOLVED
MATERIAL
WITH
THE
HELP
OF
INERT
GAS
48
8.
COLUMNS
FOR
ABSORPTION
AND
DESORPTION
PROCESS
8.1
TRAY
AND
PACKING
MATERIAL
-
A
COMPARISON
52
8.2
PACKING
MATERIAL
AND
OTHER
IMPORTANT
PARTS
OF
A
COLUMN
53
8.3
PRESSURE
LOSS
AND
LIMITING
FLOW
RATES
WITH
PACKING MATERIAL
57
9.
MULTICOMPONENT
ABSORPTION
AND
DESORPTION
70
9.1
SYSTEM
OF
EQUATIONS
IN
MULTICOMPONENT
ABSORPTION
71
9.2
SYSTEM
OF
EQUATIONS
IN
MULTICOMPONENT
STRIPPING
75
9.3
SHORT-CUT
METHOD
76
9.3.1
EFFECTIVE
ABSORPTION
AND
STRIPPING
FACTOR
76
9.3.2
DETERMINATION
OF
EFFECTIVE
ABSORPTION
AND
SRTIPPING
78
FACTOR
9.3.2.1
EDMISTER
METHOD
78
9.3.2.2
HORTON-FRANKLIN
METHOD
78
9.3.3
CALCULATION
OF
AN
ABSORPTION
COLUMN
WITH
SHORT-CUT
80
METHOD
9.3.4
CALCULATION
OF
A
STRIPPING
COLUMN
WITH
SHORT-CUT
86
METHOD
9.4
RIGOROUS
STAGE
TO
STAGE
CALCULATION
OF
AN
ABSORPTION
COLUMN
94
2
PART
III
LIQUID
EXTRACTION
CONTENTS
1.
BASIC
CONCEPT
OF
EXTRACTION
PROCESS
4
1.1
DEFINITION
4
1.2
DESIGNATING
NAMES
AND
UTILITY
OF
THE
PROCESS
4
1.3
DESIRABLE
SOLVENT
PROPERTIES
6
2.
EQUIPMEMTS
FOR
EXTRACTION
PROCESS
6
2.1
GENERAL
REQUIREMENT
6
2.2
MIXER-SETTLER
COMBINATION
6
2.3
COLUMN
WITH
PACKING
MATERIAL
AND
SPRAY
TOWER
9
2.4
PERFORATED
PLATE
COLUMN
11
2.5
COLUMN
WITH
BAFFLE
PLATES
12
2.6
EXTRACTOR
WITH
ROTATING
PLATES
12
2.7
PULSATING
COLUMN
13
3.
CALCULATION
OF
AN
EXTRACTION
PROCESS
WITH
STAGEWISE
CONTACT
14
3.1
TRIANGULAR
DIAGRAM
14
3.1.1
DESCRIPTION
OF
A
MIXING
PROCESS
IN
TRIANGULAR
DIAGRAM
14
3.1.2
PHASE
EQUILIBRIUM
IN
A
TRIANGULAR
DIAGRAM
15
3.1.2.1
LIMITED
SOLUBILTY
OF
A
BINARY
MIXTURE
15
3.1.2.2
LIMITED
SOLUBILITY
AND
PHASE
EQUILIBRIUM
IN
A
16
TERNARY
SYSTEM
3.1.3
INTERPOLATION
OF
TIE-LINES
19
3.1.4
ONE
THEORETICAL
STAGE
21
3.1.5
DETERMINATION
OF
NUMBER
OF
THEORETICAL
STAGES
22
3.1.5.1
CROSSCURRENT
MULTISTAGE
EXTRACTION
22
3.1.5.2
COUNTERCURRENT
MULTISTAGE
EXTRACTION
23
3.2.
RECTANGULAR
COORDINATES
FOR
COMPLETELY
IMMISCIBLE
31
SOLVENT
AND
SOLUTION
3.2.1
ONE
THEORETICAL
STAGE
31
3.2.2
CROSSCURRENT
MULTISTAGE
EXTRACTION
32
3.2.3
COUNTERCURRENT
MULTISTAGE
EXTRACTION
33
4.
CALCULATION
OF
AN
EXTRACTION
PROCESS
WITH
CONTINUOUS
37
COUNTERCURRENT
CONTACT
4.1
SOLVENT
B
AND
SOLUTION
COMPONENT
A
HAVE
LIMITED
SOLUBILITY
37
4.2
SOLVENT
B
AND
SOLUTION
COMPONENT
A
ARE
COMPLETELY
41
IMMISCIBLE
1
5.
LIQUID
EXTACTION
WITH
REFLUX
46
5.1
SIMILARITY
BETWEEN
DISTILLATION
AND
EXTRACTION
46
5.2
JANECKE
COORDINATES
47
5.2.1
SINGLE
STAGE
EXTRACTION
IN
JANECKE
COORDINATES
47
5.2.2
COUNTERCURRENT
MULTISTAGE
EXTRACTION
IN
JANECKE
52
COORDINATES
5.3
CALCULATION
OF
AN
EXTRACTION
PROCESS
WITH
REFLUX
53
5.3.1
EXTRACT
ENRICHING
SECTION
53
5.3.2
RAFFINATE
STRIPPING
SECTION
55
5.3.3
MINIMUM
REFLUX
56
5.3.4
DETERMINATION
OF
NUMBER
OF
THEORETICAL
STAGES
58
2
PART
IV
-
ADSORPTION
CONTENTS
1.
INTRODUCTION
4
1.1
DEFINITION
4
1.2
DESCRIPTION
OF
A
SIMPLE
PROCESS
OF
ADSORPTION
AND
4
DESORPTION
1.3
WAY
OF
MASS
TRANSFER
IN
ADSORPTION
AND
DESORPTION
5
1.3.1
PHYSICAL
AND
CHEMICAL
ADSORPTION
5
1.3.2
DESORPTION
8
1.3.3
ADSORPTION
WITH
CONDENSATION
10
2.
ADSORBENT
OR
MEDIUM
OF
ADSORPTION
12
2.1
ACTIVATED
CARBON
12
2.1.1
METHOD
OF
MANUFACTURE
12
2.1.2
CHARACTERISTIC
PROPERTIES
OF
ACTIVATED CARBON
13
2.1.3
CARBON
MOLECULAR
SIEVE
14
2.2
OXIDE
ADSORBENTS
15
2.2.1
SILICA
GEL,
ACTIVE
ALUMINA
15
2.2.2
ALUMINOSILICATE
MOLECULAR
SIEVE
OR
ZEOLITE
16
2.2.2.1
METHOD
OF
PRODUCTION
OF
ZEOLITE
16
2.2.2.2
CHARACTERISTIC
PROPERTIES
OF
ZEOLITE
MOL.
SIEVE
17
2.3
SPECIFIC
DATA
OF
COMMON
ADSORBENTS
19
2.4
ADSORBENT
AS
CATALYST
OR
CATALYST
CARRIER
20
2.5
AGING
OF
ADSORBENTS
21
3.
FUNDAMENTALS
OF
ADSORPTION
PROCESS
FOR
EQUIPMENT
DESIGN
21
3.1
EQUILIBRIUM
CURVE
OR
ISOTHERM
21
3.2
KINETIC
OF
ADSORPTION
PROCESS
26
3.3
MASS
TRANSFER
ZONE
(MTZ),
EQUILIBRIUM
ZONE,
27
BREAKTHROUGH
CURVE
3.4
SCALE-UP
CALCULATION
FOR
INDUSTRIAL
DESIGN
31
3.4.1
EQUILIBRIUM
LOADING
OF
ADSORBENT
32
3.4.2
LENGTH
OF
UNUSED
BED
(LUB)
AND
VELOCITY
OF
MTZ
33
3.4.3
COUNTERCURRENT
AND
COCURRENT
FLOW
OF
RAW
FLUID
38
AND
DESORBING
OR
COOLING
MEDIUM
3.4.4
HEATING
MEDIUM,
PURGE
GAS
39
4.
ADSORPTION
EQUIPMENT
42
4.1
FIXED-BED
ADSORBER
42
4.2
ADSORPTION
COLUMN
OR
CONTINUOUS
ADSORPTION
PROCESS
43
1
45
5.
A
FEW
EXAMPLES
OF
INDUSTRIAL
PROCESSES
5.1
ADSORPTION
FROM
GAS
PHASE
45
5.1.1
PURIFICATION
OF
EXHAUST
AIR
CONTAINING
HYDROCARBON
45
VAPOURS
5.1.2
SEPARATION
OF
NZ
FROM
AIR
46
5.1.3
ISOSIV-PROCESS
47
5.2
ADSORPTION
FROM
LIQUID
PHASE
48
5.2.1
PURIFICATION
OF
HIGHLY
CONTAMINATED
WATER
48
5.2.2
SORBEX-PROCESS
50
2 |
any_adam_object | 1 |
author | Dutta-Roy, Subash |
author_facet | Dutta-Roy, Subash |
author_role | aut |
author_sort | Dutta-Roy, Subash |
author_variant | s d r sdr |
building | Verbundindex |
bvnumber | BV013901872 |
classification_rvk | VN 7200 |
classification_tum | CIT 200f |
ctrlnum | (OCoLC)248620521 (DE-599)BVBBV013901872 |
discipline | Chemie / Pharmazie Chemie-Ingenieurwesen |
format | Book |
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id | DE-604.BV013901872 |
illustrated | Illustrated |
indexdate | 2024-11-22T17:26:18Z |
institution | BVB |
isbn | 3826592085 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-009513932 |
oclc_num | 248620521 |
open_access_boolean | |
owner | DE-703 DE-91G DE-BY-TUM DE-83 |
owner_facet | DE-703 DE-91G DE-BY-TUM DE-83 |
physical | Getr. Zählung Ill., graph. Darst. |
publishDate | 2001 |
publishDateSearch | 2001 |
publishDateSort | 2001 |
publisher | Shaker |
record_format | marc |
series2 | Berichte aus der Verfahrenstechnik |
spelling | Dutta-Roy, Subash Verfasser aut Four unit operations of mass transfer part I, distillation , part II, absorption and desorption, part III, liquid extraction, part IV, adsorption Subash Dutta-Roy Aachen Shaker 2001 Getr. Zählung Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Berichte aus der Verfahrenstechnik Absorption - Stoffübertragung Adsorption - Stoffübertragung Desorption - Stoffübertragung Destillation - Stoffübertragung Extraktion - Stoffübertragung Adsorption (DE-588)4000536-7 gnd rswk-swf Absorption (DE-588)4000245-7 gnd rswk-swf Stoffübertragung (DE-588)4057696-6 gnd rswk-swf Destillation (DE-588)4011543-4 gnd rswk-swf Extraktion (DE-588)4016062-2 gnd rswk-swf Desorption (DE-588)4149190-7 gnd rswk-swf Destillation (DE-588)4011543-4 s Stoffübertragung (DE-588)4057696-6 s DE-604 Absorption (DE-588)4000245-7 s Desorption (DE-588)4149190-7 s Extraktion (DE-588)4016062-2 s Adsorption (DE-588)4000536-7 s DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=009513932&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Dutta-Roy, Subash Four unit operations of mass transfer part I, distillation , part II, absorption and desorption, part III, liquid extraction, part IV, adsorption Absorption - Stoffübertragung Adsorption - Stoffübertragung Desorption - Stoffübertragung Destillation - Stoffübertragung Extraktion - Stoffübertragung Adsorption (DE-588)4000536-7 gnd Absorption (DE-588)4000245-7 gnd Stoffübertragung (DE-588)4057696-6 gnd Destillation (DE-588)4011543-4 gnd Extraktion (DE-588)4016062-2 gnd Desorption (DE-588)4149190-7 gnd |
subject_GND | (DE-588)4000536-7 (DE-588)4000245-7 (DE-588)4057696-6 (DE-588)4011543-4 (DE-588)4016062-2 (DE-588)4149190-7 |
title | Four unit operations of mass transfer part I, distillation , part II, absorption and desorption, part III, liquid extraction, part IV, adsorption |
title_auth | Four unit operations of mass transfer part I, distillation , part II, absorption and desorption, part III, liquid extraction, part IV, adsorption |
title_exact_search | Four unit operations of mass transfer part I, distillation , part II, absorption and desorption, part III, liquid extraction, part IV, adsorption |
title_full | Four unit operations of mass transfer part I, distillation , part II, absorption and desorption, part III, liquid extraction, part IV, adsorption Subash Dutta-Roy |
title_fullStr | Four unit operations of mass transfer part I, distillation , part II, absorption and desorption, part III, liquid extraction, part IV, adsorption Subash Dutta-Roy |
title_full_unstemmed | Four unit operations of mass transfer part I, distillation , part II, absorption and desorption, part III, liquid extraction, part IV, adsorption Subash Dutta-Roy |
title_short | Four unit operations of mass transfer |
title_sort | four unit operations of mass transfer part i distillation part ii absorption and desorption part iii liquid extraction part iv adsorption |
title_sub | part I, distillation , part II, absorption and desorption, part III, liquid extraction, part IV, adsorption |
topic | Absorption - Stoffübertragung Adsorption - Stoffübertragung Desorption - Stoffübertragung Destillation - Stoffübertragung Extraktion - Stoffübertragung Adsorption (DE-588)4000536-7 gnd Absorption (DE-588)4000245-7 gnd Stoffübertragung (DE-588)4057696-6 gnd Destillation (DE-588)4011543-4 gnd Extraktion (DE-588)4016062-2 gnd Desorption (DE-588)4149190-7 gnd |
topic_facet | Absorption - Stoffübertragung Adsorption - Stoffübertragung Desorption - Stoffübertragung Destillation - Stoffübertragung Extraktion - Stoffübertragung Adsorption Absorption Stoffübertragung Destillation Extraktion Desorption |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=009513932&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT duttaroysubash fourunitoperationsofmasstransferpartidistillationpartiiabsorptionanddesorptionpartiiiliquidextractionpartivadsorption |