Towards a Mechanistic Understanding of the Slagging Propensities of Petroleum Coke: Lessons Learned from Its Co-Combustion with Natural Gas in Oxygen-Enriched Atmospheres

Author:

Nguyen Nghia Duc Tin1ORCID,Krishnamoorthy Gautham1ORCID

Affiliation:

1. Department of Chemical Engineering, University of North Dakota, UPSON II Room 365, 241 Centennial Drive, Grand Forks, ND 58202-7101, USA

Abstract

A Computational Fluid Dynamic study was carried out to match the measured outer ash deposition rates associated with the combustion of petroleum coke (PC)–natural gas in AIR and O2/CO2 (70/30 vol%, OXY70). The fly ash PSD associated with high-fixed-carbon, non-porous fuel was estimated using a shrinking sphere burnout model and employed in conjunction with particle kinetic energy (PKE), particle viscosity (µP), and a critical Weber-number-based capture criterion. Deposition rate predictions were sensitive to the fly ash composition employed for estimating µP due to the significant enrichment of Fe in the deposits. Predictions were insensitive to the specific µP model formulation employed or whether the V2O5 in the ash was assumed to play the role of a glass former or a glass modifier. OXY70 scenario impaction rates were significantly lower than the measured deposition rates when the fly ash PSD associated with the AIR scenario was employed in the calculations. This necessitated an ad hoc modification of the OXY70 fly ash PSD to a coarser range to match the measurements and attributing it to agglomeration resulting from longer residence times and higher temperatures. This shift in PSD was in line with AIR and OXY70 fly ash PSD measurements reported previously.

Publisher

MDPI AG

Subject

General Earth and Planetary Sciences,General Environmental Science

Reference39 articles.

1. Utilization of petroleum coke and petroleum coke/coal blends as a means of steam raising;Bryers;Fuel Process. Technol.,1995

2. Pisa, G.D., and Bondi, G. SNOX™ Flue Gas Treatment Technology for Boilers Burning Petcoke, Giandomenico Bondi-Raffineria di Gela, Rio De Janeiro, 28–30 May 2008.

3. Innovative Technologies in the Repowering of the Nizhnekamsk CHPP by Upgrading the TGME-464 Boiler to Combust Pulverized Petroleum Coke;Pak;Power Technol. Eng.,2019

4. Operation results of power station with petroleum coke firing boiler;Hirayama;Mitsubishi Heavy Ind. Tech. Rev.,2007

5. Clean and efficient use of petroleum coke for combustion and power generation;Wang;Fuel,2004

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