Influence of coke rate on thermal treatment of waste selective catalytic reduction (SCR) catalyst during iron ore sintering
Regular|Updated:2026-01-06
|
Influence of coke rate on thermal treatment of waste selective catalytic reduction (SCR) catalyst during iron ore sintering
Influence of coke rate on thermal treatment of waste selective catalytic reduction (SCR) catalyst during iron ore sintering
中国化学工程学报(英文版)2022年42卷第2期 页码:415-423
Affiliations:
State Key Laboratory of Clean Energy Utilization, Institute for Thermal Power Engineering, Zhejiang University,Hangzhou,China,310027
Author bio:
Funds:
DOI:
中图分类号:
纸质出版:2022
Accepted:
Scan QR Code
Pengnan Ma, Jiankang Wang, Hanxiao Meng, 等. Influence of coke rate on thermal treatment of waste selective catalytic reduction (SCR) catalyst during iron ore sintering[J]. 中国化学工程学报(英文版), 2022,42(2):415-423.
Pengnan Ma, Jiankang Wang, Hanxiao Meng, Laiquan Lv, Hao Fang, Kefa Cen, Hao Zhou. Influence of coke rate on thermal treatment of waste selective catalytic reduction (SCR) catalyst during iron ore sintering[J]. Chinese Journal of Chemical Engineering, 2022, 42(2): 415-423.
Pengnan Ma, Jiankang Wang, Hanxiao Meng, 等. Influence of coke rate on thermal treatment of waste selective catalytic reduction (SCR) catalyst during iron ore sintering[J]. 中国化学工程学报(英文版), 2022,42(2):415-423.DOI:
Pengnan Ma, Jiankang Wang, Hanxiao Meng, Laiquan Lv, Hao Fang, Kefa Cen, Hao Zhou. Influence of coke rate on thermal treatment of waste selective catalytic reduction (SCR) catalyst during iron ore sintering[J]. Chinese Journal of Chemical Engineering, 2022, 42(2): 415-423.DOI:
Influence of coke rate on thermal treatment of waste selective catalytic reduction (SCR) catalyst during iron ore sintering
Waste selective catalytic reduction (SCR) catalyst as a hazardous waste has a significant impact on the environment and human health. In present study
a novel technology for thermal treatment of waste SCR catalyst was proposed by adding it to sinter mix for iron ore sintering. The influences of coke rate on the flame front propagation
sinter microstructure
and sinter quality during sintering co-processing the waste SCR catalyst process were studied. In situ tests results indicated the maximum sintering bed temperature increased at higher coke rate
indicating more liquid phase generated and higher airflow resistance. The sintering time was longer and the calculated flame front speed dropped at higher coke rate. Sinter microstructure results found the coalescence and reshaping of bubbles were more fully with increasing coke rate. The porosity dropped from 35.28% to 25.66%
the pore average diameter of large pores decreased from 383.76 μm to 311.43 μm. With increasing coke rate
the sinter indexes of tumbler index
productivity
and yield
increased from 33.2%
9.2 t·m
-2
·d
-1
28.9% to 58.0%
36.0 t·m
-2
·d
-1
68.9%
respectively. Finally
a comprehensive index was introduced t
o systematically assess the influence of coke rate on sinter quality
which rose from 100 to 200 when coke rate was increased from 3.5% (mass) to 5.5% (mass).
关键词
Keywords
references
The trial reading is over, you can activate your VIP account to continue reading.
Biodiesel production from green seaweed Ulva fasciata catalyzed by novel waste catalysts from Pakistan Steel Industry
COS generation behavior during desulfurization for H2S over zeolite in simulated blast furnace gas
Dynamic behavior of a single bubble in cavity flow driven by a turbulent channel
CFD-PBM simulation of liquid-liquid dispersions in an industrial pulsed disc and doughnut column with directly measured breakup and coalescence kernels
Synergistically coupling of vertically oriented Ru/Co co-doped MoS2 with interfacial engineering for efficient electrochemical hydrogen evolution
相关作者
Abdul Majeed Khan
Noureen Fatima
Muhammad Shoukat Hussain
Kousar Yasmeen
相关机构
Research Laboratory of Bioenergy(RLB), Department of Chemistry, Federal Urdu University of Arts, Science and Technology, Gulshan-e-Iqbal Campus, University Road