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Influence of filler characteristics on particle removal in fluid catalytic cracking slurry under an alternating electric field

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The characteristics of the packing material under an alternating electric field are an important factor in the removal of FCCS particles.In this study,the electric field distribution of a separation unit consisting of packed spheres under an alternating electric field is simulated,and the movement mechanism of catalyst particles is analysed.An"effective contact point"model is derived to predict the adsorption of filler contact points on catalyst particles under the alternating electric field,and the model is validated by simulations and experiments.The numerical calculation and experimental results indicate that the electrical properties of the filler spheres,the filler angle θ,and the frequency f of the alternating electric field affect the adsorption of catalyst particles.As the frequency of the electric field increases,the particle removal efficiency of the high-conductivity filler(silicon carbide)increases and then settles,and the separation efficiency of the low-conductivity filler(glass,zirconia)is not sensitive to the change in electric field frequency.

Fluid catalytic cracking slurry(FCCS)ParticleAC electric fieldFillersRemoval

Qiang Li、Hui-Zhen Yang、Can Yang、Qing-Zhu Qiu、Wei-Wei Xu、Zhao-Zeng Liu

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College of New Energy,China University of Petroleum(East China),Qingdao 266580,Shandong China

Natural Science Foundation Project of Shandong Province,China

ZR2019MEE033

2024

石油科学(英文版)
中国石油大学(北京)

石油科学(英文版)

EI
影响因子:0.88
ISSN:1672-5107
年,卷(期):2024.21(3)