NOx emission control in total burn FCC units

Author:

Roncolatto Rodolfo Eugenio

Publisher

Instituto Brasileiro de Petroleo e Gas

Subject

Metals and Alloys,Mechanical Engineering,Mechanics of Materials

Reference7 articles.

1. Béraud-Dufour, P., Bilinska, K., Buchsbaum, A, Chaput, G, Chetkowski, P, & Chetkowski, P. (2009). Refining BREF review – air emissions: Vol. report n°4/09. CONCAWE Air Quality Management Group’s Special Task Force on Integrated Pollution Prevention and Control.

2. Genc, M., Gul, A., Dalgiç, E. B., Avcilar, S., & Ventham, T. (2018). Taking steps to reduce FCC NOx emissions. Hydrocarbon Engineerign, 23(07), 51–56. www.hydrocarbonengineering.com/magazine

3. Hindle, K., Sargenti, M. L, & Vargas, J. (2012). FCC catalysts and additives for cost and emissions control. Digital Refining, PTQ Q4, 1–5. www.digitalrefining.com/article/1000540

4. Ju, F., Zhao, X., Luan, H., LIn, J., Xiu, G., & Ling, H. (2020). Effect of regeneration conditions on the emission of HCN in FCC regeneration process. Chemical Engineering Journal, 389(1), 124484. https://doi.org/10.1016

5. Pereira, H., Sandes, E., Gilbert, W., Roncolatto, R., Casavechia, L., Candido, W., & Bridi, P. (2012). Impact of FCC regenerator design in the NOx emissions. 1, 1. www.riooilgas.com.br

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