Computational Particle Fluid Dynamics Simulation on Combustion Characteristics of Blended Fuels of Coal, Biomass, and Oil Sludge in a 130 t h−1 Circulating Fluidized Bed Boiler

Author:

Wang Yang1,Chen Xiangyu1,Xu Liping1,Ma Mingwei1,Huang Xiaole2,Han Feng1,Zhou Yong1,Du Chen1,Da Yaodong23,Deng Lei2ORCID

Affiliation:

1. Engineering Technology Research Institute (Supervision Company), PetroChina Xinjiang Oilfield Company, Karamay 834000, China

2. State Key Laboratory of Multiphase Flow in Power Engineering, School of Energy and Power Engineering, Xi’an Jiaotong University, Xi’an 710049, China

3. China Special Equipment Inspection and Research Institute, Beijing 100029, China

Abstract

In this study, the co-combustion of coal and biomass, and the tri-combustion of coal, biomass, and oil sludge in a 130 t h−1 circulating fluidized bed (CFB) boiler are investigated via the computational particle fluid dynamics (CPFD) approach. Furthermore, the effect of biomass feeding position is also comprehensively evaluated. The results show that for the co-combustion of coal and biomass, the O2 mole fraction at the furnace outlet rises from 0.0541 to 0.0640 as the biomass blending ratio enhances from 40% to 100%, while the CO2 mole fraction reduces from 0.1357 to 0.1267. The mole fraction of NOx and SO2 at the furnace outlet decreases from 4.5867 × 10−5 to 3.9096 × 10−5 and 2.8253 × 10−4 to 4.6635 × 10−5, respectively. For the tri-combustion of three fuels, the average NOx mole fraction initially grows quickly and then declines gradually, ranging from 4.1173 × 10−5 to 4.2556 × 10−5. The mole fraction of SO2 at the furnace outlet increases from 3.5176 × 10−4 to 4.7043 × 10−4 when the ratio of oil sludge rises from 10% to 20%. The uniformity of temperature and gas components distribution is “new inlet > secondary air inlet > feed inlet”. As for the three inlet positions, the mole fractions of NOx at the furnace outlet are between 3.9096 × 10−5 and 5.1537 × 10−5, while those for SO2 are between 2.5978 × 10−4 and 2.5278 × 10−4.

Funder

Research on [key technologies of comprehensive development and utilization of renewable energy]

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction

Reference43 articles.

1. Research on regional differences of the impact of clean energy development on carbon dioxide emission and economic growth;Jia;Humanit. Soc. Sci. Commun.,2022

2. System dynamics modelling of urbanization under energy constraints in China;Gu;Sci. Rep.,2020

3. Earth energy evolution, human development and carbon neutral strategy;Zou;Pet. Explor. Dev.,2022

4. The Integrated Development Practices of Oil, Gas and New Energy in Tarim Oilfield Company toward Carbon Peaking and Carbon Neutrality Goals;Zhang;Xinjiang Oil Gas,2022

5. A review of renewable energy sources, sustainability issues and climate change mitigation;Owusu;Cogent Eng.,2016

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