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Innovative microreactor for low-grade feedstock gasification

Said Samih, Sherif Farag and Jamal Chaouki

Book Section (2018)

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Abstract

The first fluidized bed thermogravimetric analyzer (FBTGA) has been developed. The proof of concept of the FBTGA has been carried out on the thermal decomposition of calcium hydroxide. The kinetics and modeling of coal pyrolysis and gasification were investigated in the FBTGA. The obtained activation energies for the individual gases that are produced from coal pyrolysis are 19 to 21% lower than those found for similar coals in the literature. This decrease in the activation energies is explained by a temperature gradient of 185 to 209°C. For the CO shift reaction, the resulting activation energy is 46.6 kcal/mol, increasing by 20% from the one used in the literature. The second reactor presented in this work is a TGA powered by electromagnetic irradiation. As an application for this reactor, a novel kinetic model based on a dual attempt to predict not only the yield but also the composition of bio-oil is presented. The validation of the developed models demonstrated an excellent capability of predicting the yield and quality of the produced oil. The third reactor is a saddle reactor, which consists of two V-shaped pairs of arms and minimizes the impact of the heat and mass transfer limitation on chemical reactions.

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Department: Department of Chemical Engineering
Research Center: PEARL - Process Engineering Advanced Research Lab
ISBN: 9781838814212
PolyPublie URL: https://publications.polymtl.ca/40276/
Editors: Yongseung Yun
Publisher: IntechOpen
DOI: 10.5772/intechopen.74602
Official URL: https://doi.org/10.5772/intechopen.74602
Date Deposited: 18 Apr 2023 15:03
Last Modified: 06 Dec 2024 13:53
Cite in APA 7: Samih, S., Farag, S., & Chaouki, J. (2018). Innovative microreactor for low-grade feedstock gasification. In Yun, Y. (ed.), Gasification for low-grade feedstock (pp. 237-253). https://doi.org/10.5772/intechopen.74602

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