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Effect of Co2O3 on Oxidation Induration and Reduction Swelling of Chromium-Bearing Vanadium Titanomagnetite Pellets with Simulated Coke Oven Gas

机译:CO2O3对氧化铬钒镁石粒子氧化性氧化氧化钴罐的氧化硬化和还原溶胀的影响

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摘要

This study discusses the oxidation induration and swelling behavior of chromium-bearing vanadium titanomagnetite pellets (CVTP) with Co2O3 additions. The reduction swelling index (RSI) and compressive strength of reduced CVTP (CSRC) were investigated with simulated coke oven gas (COG). The results show that the compressive strength (CS) of CVTP decreases from 2448 to 1983 N and the porosity of CVTP increases from 14.86 to 22.49% with increasing Co2O3 additions. The Co2O3 mainly exists in the form of CoFe2O4 in both of CVTP and reduced CVTP, and the CoFe2O4 is hard to be reduced by thermodynamic calculation. The Co-bearing phase mainly distributes on gap edges and among adjacent hematite grains. Many cracks and pores distribute along the grain boundaries and damage the connection of hematite grains. The CSRC decreases from 901 to 376 N, and RSI of reduced CVTP increases from 5.87 to 9.05% with increasing Co2O3 additions. The Co2O3 addition facilitates the aggregation and diffusion of metallic iron particles, and the aggregations of metallic iron thicken the lamellar crystals. The pores and interval of grains enlarge with increasing Co2O3 additions. This study can supply the theoretical and technical basis for the utilization of CVTP and waste residue-bearing cobalt with COG recyclable technology.
机译:本研究讨论了含铬钒钛磁丸颗粒(CVTP)的氧化硬化和溶胀行为用CO2O3添加。用模拟焦炭烤箱气体(COG)研究了减少CVTP(CSRC)的减少溶胀指数(RSI)和抗压强度。结果表明,CVTP的压缩强度(CS)从2448〜1983N降低,CVTP的孔隙率从14.86增加到22.49%随着CO 2 O 3增加而增加。 CO 2 O 3主要以CVTP和降低的CVTP中的COFE2O4的形式存在,并且通过热力学计算难以减少COFE2O4。共轴承阶段主要分布在间隙边缘和相邻的赤铁矿颗粒上。许多裂缝和毛孔沿着晶粒边界分布并损坏赤铁矿颗粒的连接。 CSRC从901到376 n降低,随着CO2O3的增加,CVTP的RSI从5.87增加到9.05%。 CO2O3加成促进金属铁颗粒的聚集和扩散,并且金属铁的聚集增稠了层状晶体。随着CO2O3添加增加,晶粒的孔和间隔扩大。本研究可以为利用CVTP和废物残留钴的理论和技术基础,与COG可回收技术。

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