Books on the topic 'Catalytic reaction dynamics'

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1

F, Froment Gilbert, and Waugh K. C, eds. Dynamics of surfaces and reaction kinetics in heterogeneous catalysis: Proceedings of the international symposium, Antwerp, Belgium, September 15-17, 1997. Amsterdam: Elsevier, 1997.

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2

Nauman, E. B. Chemical reactor design, optimization, and scaleup. 2nd ed. Hoboken, N.J: Wiley, 2008.

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3

Chemical reactor design, optimization, and scaleup. New York: McGraw-Hill, 2002.

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4

1989), Tutzing-Symposion (27th. Instationary processes and dynamic experimental methods in catalysis, electrochemistry, and corrosion: Papers of the 27th Tutzing Symposium, March 06-09, 1989. Weinheim, Federal Republic of Germany: VCH, 1989.

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5

Succi, Sauro. Lattice Boltzmann for reactive flows. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780199592357.003.0026.

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The dynamics of reactive flows lies at the heart of several important applications, such as combustion, heterogeneous catalysis, pollutant conversion, pattern formation in biology and many others. In general, LB is well suited to describe reaction-diffusion applications with flowing species. This chapter provides the basic guidelines to include reactive phenomena within the LBE formalism. Reactive flows obey the usual fluid equations, augmented with a reactive source term, accounting for species transformations due to chemical reactions. Such term comes typically in the form of a polynomial product of the mass densities of the reacting species.
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6

Chemical Kinetics and Reaction Dynamics. Springer, 2006.

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7

Tanaka, Ken-ichi. Dynamic Chemical Processes on Solid Surfaces: Chemical Reactions and Catalysis. Springer, 2017.

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8

Tanaka, Ken-ichi. Dynamic Chemical Processes on Solid Surfaces: Chemical Reactions and Catalysis. Springer, 2017.

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9

Tanaka, Ken-ichi. Dynamic Chemical Processes on Solid Surfaces: Chemical Reactions and Catalysis. Springer, 2018.

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10

Froment, G. F., and K. C. Waugh. Dynamics of Surfaces and Reaction Kinetics in Heterogeneous Catalysis. Elsevier Science & Technology Books, 1997.

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11

Dynamics of Surfaces and Reaction Kinetics in Heterogeneous Catalysis, Proceedings of the International Symposium. Elsevier, 1997. http://dx.doi.org/10.1016/s0167-2991(97)x8082-6.

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12

Chemical Reaction Engineering. Taylor & Francis Group, 2021.

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13

Instationary processes and dynamic experimental methods in catalysis, electrochemistry, and corrosion: Papers of the 27th Tutzing Symposium, March 06-09, 1989 (DECHEMA monographs). VCH, 1989.

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14

Schmal, Martin. Chemical Reaction Engineering: Essentials, Exercises and Examples. Taylor & Francis Group, 2014.

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15

Schmal, Martin. Chemical Reaction Engineering: Essentials, Exercises and Examples. Taylor & Francis Group, 2014.

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16

Schmal, Martin. Chemical Reaction Engineering: Essentials, Exercises and Examples. Taylor & Francis Group, 2014.

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17

Chemical Reaction Engineering: Essentials, Exercises and Examples. Taylor & Francis Group, 2014.

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18

Schmal, Martin. Chemical Reaction Engineering: Essentials, Exercises and Examples. Taylor & Francis Group, 2014.

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19

Pinto, José Carlos, and Martin Schmal. Chemical Reaction Engineering: Parameter Estimation, Exercises and Examples. Taylor & Francis Group, 2021.

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20

Pinto, José Carlos, and Martin Schmal. Chemical Reaction Engineering: Parameter Estimation, Exercises and Examples. Taylor & Francis Group, 2021.

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21

Pinto, José Carlos, and Martin Schmal. Chemical Reaction Engineering: Parameter Estimation, Exercises and Examples. Taylor & Francis Group, 2021.

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