PEARL

Process Engineering
Advanced Research Lab

Books and Reports

19

J. Shabanian and J. Chaouki, “Fluidized Beds for Gas-Solid Reactions”, Essential of Fluidization Technology (2020).

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18

Habibzadeh, S., Rahmani, E., Saeb, M. R., Ganjali, M. R., & Chaouki, J. (2020). Multilayer Thin Films on Fine Particles. Multilayer Thin Films: Versatile Applications for Materials Engineering, 241.

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17

Samih, S., Farag, S., & Chaouki, J. (2018). Innovative Microreactors for Low-grade Feedstock Gasification. Gasification for Low-grade Feedstock, 237.

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16

Foroughi-Dahr, M., Mostoufi, N., Sotudeh-Gharebagh, R., & Chaouki, J. (2017). Particle coating in fluidized beds. Reference Module in Chemistry, Molecular Sciences and Chemical Engineering.

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15

Vekemans, O., & Chaouki, J. (2016). Municipal solid waste Co-firing in coal power plants: combustion performance. Dev. Combust. Technol, 118-142.

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14

Farag, S., & Chaouki, J. (2015). Microwave heating assisted biorefinery of biomass. In Innovative Solutions in Fluid-Particle Systems and Renewable Energy Management (pp. 131-166): IGI Global.

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13

Lanteigne, J.-R., Laviolette, J.-P., & Chaouki, J. (2013). Biomass pre-treatments for biorefinery applications: pyrolysis. In Pretreatment Techniques for Biofuels and Biorefineries (pp. 229-260): Springer.

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12

Abdollahi-Neisiani, M., Laviolette, J.-P., Jafari, R., & Chaouki, J. (2013). Biomass Pretreatments for Biorefinery Applications: Gasification. Pretreatment Techniques for Biofuels and Biorefineries, 197-227.

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11

Sajjad Habibzadeh, Jamal Chaouki, et al. (2019). Multilayer thin films on fine particles. Multilayer Thin Films-Versatile Applications for Materials Engineering. : 1-20

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10

Grandjean, B.P.A. & Chaouki, J., Application of a Monte Carlo Method to the Solid Flow Pattern Visualization in CFB. in Chemical Reactor Technology for Environmentally Safe Reactors and Products (Vol. 225). 1992, p. 537-546.

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9

Klvana, D. and J. Chaouki, Développement de catalyseurs de combustion. 1995.

8

Chaouki, J., D. Klvana, and C. Guy, Développement de technologies de combustion catalytique du gaz naturel. 1996.

7

Patience, G.S., Chaouki, J. & Berruti, F., Gas phase hydrodynamics in circulating fluidized bed risers, in Multiphase Reactor and Polymerization System HydrodynamicsN. P. Cheremisinoff (edit.) 1996, p. 255-296.

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6

Pagé, T., et al., Éole: logiciel pédagogique de simulation de la dispersion atmosphérique des contaminants. version 5.0 ed. 1999

5

Laviolette, J.P., G.S. Gregroy, and J. Chaouki, Hydrocarbons combustion in fluidized beds, in Handbook of combustion. 2009.

4

Sotudeh-Gharebagh, R. and J. Chaouki, Combustion of natural gas in turbulent fluidized beds: experiments and simulation. 2009: Lap Lambert Academic Publishing. 180

3

Laviolette, J.-P., Sotudeh-Gharebagh, R., Mabrouk, R., Patience, G.S. & Chaouki, J., Homogeneous combustion in the freeboard of a fluidized bed, in Handbook of combustion. 2010, Wiley-VCH: Weinheim.

2

Laviolette, J.-P., et al., Fluidized bed combustion of natural gas and other hydrocarbons, in Handbook of Combustion (Vol. 5). 2010. p. 209-235.

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1

Sherif, F. and C. Jamal, Microwave Heating Assisted Biorefinery of Biomass, in Innovative Solutions in Fluid-Particle Systems and Renewable Energy Management, T. Katia, Editor. 2015, IGI Global: Hershey, PA, USA. p. 131-166.

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