cheg511 advanced reaction engineering. s(ch4)

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Ahmed Abdala Department of Chemical Engineering The Petroleum Institute Abu Dhabi, UAE

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CHEG511 Advanced Reaction Engineering. S(Ch4)

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Page 1: CHEG511 Advanced Reaction Engineering. S(Ch4)

Ahmed Abdala

Department of Chemical EngineeringThe Petroleum InstituteAbu Dhabi, UAE

Page 2: CHEG511 Advanced Reaction Engineering. S(Ch4)

๐‘Ÿ๐‘– =1

๐‘‰

๐‘‘๐‘๐‘–๐‘‘๐‘ก

= ๐‘“ ๐‘๐‘œ๐‘›๐‘‘๐‘–๐‘ก๐‘–๐‘œ๐‘›๐‘  ๐‘ค๐‘–๐‘กโ„Ž๐‘–๐‘› ๐‘กโ„Ž๐‘’ ๐‘Ÿ๐‘’๐‘”๐‘–๐‘œ๐‘› ๐‘œ๐‘“ ๐‘ฃ๐‘œ๐‘™๐‘ข๐‘š๐‘’ ๐‘‰

Homogenous reactor typeโ—ฆ Batch reactorsโ—ฆ Steady state flow reactorsโ—ฆ Unsteady state semibatch reactor

1

Page 3: CHEG511 Advanced Reaction Engineering. S(Ch4)

Fj

Consider the volume enclosed by the boundaries (system volume)

The mole balance of species j:

๐ผ๐‘› โˆ’ ๐‘‚๐‘ข๐‘ก + ๐บ๐‘’๐‘›๐‘’๐‘Ÿ๐‘Ž๐‘ก๐‘–๐‘œ๐‘› = ๐ด๐‘๐‘๐‘ข๐‘š๐‘ข๐‘™๐‘Ž๐‘ก๐‘–๐‘œ๐‘›

๐‘Ÿ๐‘Ž๐‘ก๐‘’ ๐‘œ๐‘“๐‘“๐‘™๐‘œ๐‘ค

๐‘œ๐‘“ ๐‘— into๐‘กโ„Ž๐‘’ ๐‘ ๐‘ฆ๐‘ ๐‘ก๐‘’๐‘š

๐‘š๐‘œ๐‘™๐‘’๐‘ /๐‘ก๐‘–๐‘š๐‘’

โˆ’

๐‘Ÿ๐‘Ž๐‘ก๐‘’ ๐‘œ๐‘“ ๐‘“๐‘™๐‘œ๐‘ค๐‘œ๐‘“ ๐‘— ๐‘œ๐‘ข๐‘ก ๐‘œ๐‘“๐‘กโ„Ž๐‘’ ๐‘ ๐‘ฆ๐‘ ๐‘ก๐‘’๐‘š

๐‘š๐‘œ๐‘™๐‘’๐‘ /๐‘ก๐‘–๐‘š๐‘’

+

๐‘Ÿ๐‘Ž๐‘ก๐‘’ ๐‘œ๐‘“ ๐‘”๐‘’๐‘›๐‘’๐‘Ÿ๐‘Ž๐‘ก๐‘–๐‘œ๐‘›๐‘œ๐‘“ ๐‘— ๐‘๐‘ฆ ๐‘โ„Ž๐‘’๐‘š๐‘–๐‘๐‘Ž๐‘™๐‘Ÿ๐‘’๐‘Ž๐‘๐‘ก๐‘–๐‘œ๐‘› ๐‘ค๐‘–๐‘กโ„Ž๐‘–๐‘›๐‘กโ„Ž๐‘’ ๐‘ ๐‘ฆ๐‘ ๐‘ก๐‘’๐‘š

๐‘š๐‘œ๐‘™๐‘’๐‘ /๐‘ก๐‘–๐‘š๐‘’

=

๐‘Ÿ๐‘Ž๐‘ก๐‘’ ๐‘œ๐‘“ ๐‘Ž๐‘๐‘๐‘ข๐‘š๐‘ข๐‘™๐‘Ž๐‘ก๐‘–๐‘œ๐‘›๐‘œ๐‘“ ๐‘— ๐‘ค๐‘–๐‘กโ„Ž๐‘–๐‘›๐‘กโ„Ž๐‘’ ๐‘ ๐‘ฆ๐‘ ๐‘ก๐‘’๐‘š

๐‘š๐‘œ๐‘™๐‘’๐‘ /๐‘ก๐‘–๐‘š๐‘’

๐น๐‘—0 โˆ’ ๐น๐‘— + ๐บ๐‘— =๐‘‘๐‘๐‘—

๐‘‘๐‘ก

The energy balance equation

๐‘Ÿ๐‘Ž๐‘ก๐‘’ ๐‘œ๐‘“โ„Ž๐‘’๐‘Ž๐‘ก๐‘“๐‘™๐‘œ๐‘ค ๐‘–๐‘›๐‘ก๐‘œ๐‘’๐‘™๐‘’๐‘š๐‘’๐‘›๐‘ก๐‘œ๐‘“ ๐‘ฃ๐‘œ๐‘™๐‘ข๐‘š๐‘’

๐ฝ๐‘œ๐‘ข๐‘™๐‘’/๐‘ก๐‘–๐‘š๐‘’

โˆ’

๐‘Ÿ๐‘Ž๐‘ก๐‘’ ๐‘œ๐‘“โ„Ž๐‘’๐‘Ž๐‘ก๐‘“๐‘™๐‘œ๐‘ค ๐‘œ๐‘ข๐‘ก ๐‘œ๐‘“๐‘’๐‘™๐‘’๐‘š๐‘’๐‘›๐‘ก๐‘œ๐‘“ ๐‘ฃ๐‘œ๐‘™๐‘ข๐‘š๐‘’

๐ฝ๐‘œ๐‘ข๐‘™๐‘’/๐‘ก๐‘–๐‘š๐‘’

+

๐‘Ÿ๐‘Ž๐‘ก๐‘’ ๐‘œ๐‘“ ๐‘”๐‘’๐‘›๐‘’๐‘Ÿ๐‘Ž๐‘ก๐‘–๐‘œ๐‘›๐‘œ๐‘“ โ„Ž๐‘’๐‘Ž๐‘ก ๐‘๐‘ฆ ๐‘Ÿ๐‘’๐‘Ž๐‘๐‘ก๐‘–๐‘œ๐‘›๐‘ค๐‘–๐‘กโ„Ž๐‘–๐‘› ๐‘’๐‘™๐‘’๐‘š๐‘’๐‘›๐‘ก๐‘œ๐‘“ ๐‘ฃ๐‘œ๐‘™๐‘ข๐‘š๐‘’

๐ฝ๐‘œ๐‘ข๐‘™๐‘’/๐‘ก๐‘–๐‘š๐‘’

=

๐‘Ÿ๐‘Ž๐‘ก๐‘’ ๐‘œ๐‘“๐‘Ž๐‘๐‘๐‘ข๐‘š๐‘ข๐‘™๐‘Ž๐‘ก๐‘–๐‘œ๐‘› ๐‘œ๐‘“ โ„Ž๐‘’๐‘Ž๐‘ก

๐‘ค๐‘–๐‘กโ„Ž๐‘–๐‘› ๐‘’๐‘™๐‘’๐‘š๐‘’๐‘›๐‘ก๐‘œ๐‘“๐‘ฃ๐‘œ๐‘™๐‘ข๐‘š๐‘’

๐ฝ๐‘œ๐‘ข๐‘™๐‘’/๐‘ก๐‘–๐‘š๐‘’

Fj0

System volume

Gj

Page 4: CHEG511 Advanced Reaction Engineering. S(Ch4)

Constant density batch or flow reactor

โ—ฆ ๐‘‹๐ด = 1 โˆ’๐ถ๐ด

๐ถ๐ด0and d๐‘‹๐ด = โˆ’

๐‘‘๐ถ๐ด

๐ถ๐ด0

โ—ฆ๐ถ๐ด

๐ถ๐ด0= 1 โˆ’ ๐‘‹๐ด and d๐ถ๐ด = โˆ’๐ถ๐ด0๐‘‘๐‘‹๐ด

3

Flow Reactor

Batch Reactor

Page 5: CHEG511 Advanced Reaction Engineering. S(Ch4)

Gas phase and Constant and Tโ—ฆ ๐‘‰ = ๐‘‰0 1 + ๐œ€๐ด๐‘‹๐ด

โ—ฆ ๐‘‹๐ด =๐ถ๐ด0โˆ’๐ถ๐ด

๐ถ๐ด0+๐œ€๐ด๐ถ๐ดand d๐‘‹๐ด = โˆ’

๐ถ๐ด0 1+๐œ€๐ด

๐ถ๐ด0+๐œ€๐ด๐ถ๐ด2

โ—ฆ๐ถ๐ด

๐ถ๐ด0=

1โˆ’๐‘‹๐ด

1+๐œ€๐ด๐‘‹๐ดand

d๐ถ๐ด

๐ถ๐ด0= โˆ’

1+๐œ€๐ด

1+๐œ€๐ด๐‘‹๐ด2 ๐‘‘๐‘‹๐ด

โ—ฆ ฮต๐ด =๐‘‰๐‘‹๐ด=1โˆ’๐‘‰๐‘‹๐ด=0

๐‘‰๐‘‹๐ด=0

๐‘Ž๐œ€๐ด

๐ถ๐ด0=

โˆ’๐‘–๐œ€๐‘–๐ถ๐‘–0

๐ถ๐ด0๐‘‹๐ด

๐‘Ž=

โˆ’๐ถ๐‘–0๐‘‹๐‘–

๐‘–

4

Page 6: CHEG511 Advanced Reaction Engineering. S(Ch4)

Gas phase and variable and T

โ—ฆ ๐‘‹๐ด =1โˆ’

๐ถ๐ด0๐ถ๐ด

๐‘๐‘‡0๐‘0๐‘‡0

1+๐œ€๐ด๐ถ๐ด0๐ถ๐ด

๐‘๐‘‡0๐‘0๐‘‡0

โ—ฆ๐ถ๐ด

๐ถ๐ด0=

1โˆ’๐‘‹๐ด

1+๐œ€๐ด๐‘‹๐ด

๐‘0๐‘‡0๐‘๐‘‡0

โ—ฆ๐ถ๐‘–

๐ถ๐ด0=

๐‘–

๐‘Ž+๐‘–

๐‘Ž๐‘‹๐ด

1+๐œ€๐ด๐‘‹๐ด

๐‘‡0๐‘‡0

๐‘Ž๐œ€๐ด

๐ถ๐ด0=

โˆ’๐‘–๐œ€๐‘–๐ถ๐‘–0

๐ถ๐ด0๐‘‹๐ด

๐‘Ž=

โˆ’๐ถ๐‘–0๐‘‹๐‘–

๐‘–

5

Page 7: CHEG511 Advanced Reaction Engineering. S(Ch4)

A continuous stream of fluid enters a vessel at

temperature T0 and pressure 0, reacts there,

and leaves at T and .

a) A gaseous feed, T0 = 400 K, 0= 4 atm, CA0= 100,

CBO= 200, A + B 2 R , T = 300 K , = 3 atm, C A = 20 .

Find XA, XB, CB .

b) A gaseous feed, T0 = 1000 K, B= 5 atm, CA0= 100,

CBO= 200, A + B 5R, T = 400 K, = 4 atm, CA = 20.

Find XA,XB,CB.

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