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Effect of basicity on sintering behavior of low-titanium vanadium-titanium magnetite 被引量:11
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作者 杨松陶 周密 +2 位作者 姜涛 王艳军 薛向欣 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2015年第6期2087-2094,共8页
Basicity has an important effect on the sinter quality, especially for low-titanium vanadium-titanium sinter. The effect of basieity on sintering behavior of low-titanium vanadium-titanium mixture, and the transferenc... Basicity has an important effect on the sinter quality, especially for low-titanium vanadium-titanium sinter. The effect of basieity on sintering behavior of low-titanium vanadium-titanium mixture, and the transference and distribution of element in sintering process were researched by sinter pot test, mineralogical analysis, scanning electron microscopy (SEM) and energy dispersive spectroscopy (EDS) analysis. The results show that CaO preferentially reacts with TiO2, generating pervoskite, so that the total liquid phase content of the sinter is low. There is an increase in the perovskite concentration of the sinter with the basicity ranging from 1.9:1 to 2.7:1. With increasing the basicity, the calcium ferrite content increases slightly and then rises rapidly, while the silicate content decreases and the metallurgical property of the sinter is improved. As for the distribution of these elements in the sinter, Ti occurs mainly in perovskite, V occurs mainly in silicate, and Fe occurs mainly in magnetite and hematite. The most abundant occurrence of Ca and Si occurs in silicate and perovskite. With increasing the basicity, the contents of A1 and Mg increase in calcium ferrite, while they decrease in other minerals. 展开更多
关键词 low-titanium vanadium-titanium magnetite SINTER BASICITY MINERALOGY TiO2 CAO
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Solid-state reduction kinetics and mechanism of pre-oxidized vanadium-titanium magnetite concentrate 被引量:13
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作者 刘水石 郭宇峰 +2 位作者 邱冠周 姜涛 陈凤 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第10期3372-3377,共6页
The solid-state reduction kinetics of pre-oxidized vanadium-titanium magnetite concentrate was studied. The phase and microstructure of the reduction product were characterized by XRD, SEM and EDS methods, based on wh... The solid-state reduction kinetics of pre-oxidized vanadium-titanium magnetite concentrate was studied. The phase and microstructure of the reduction product were characterized by XRD, SEM and EDS methods, based on which the mechanism of the solid-state reduction was investigated. The results showed that using coal as reductant at 950-1100 °C, the solid-state reduction of the pre-oxidized vanadium-titanium magnetite concentrate was controlled by interface chemical reaction and the apparent activation energy was 67.719 k J/mol. The mineral phase transformation during the reduction process can be described as follows: pre-oxidized vanadium-titanium magnetite concentrate → ulvospinel → ilmenite → Fe Ti2O5 →(FenTi1-n)Ti2O5. M3O5-type(M can be Fe, Ti, Mg, Mn, etc) solid solutions would be formed during the reduction process of the pre-oxidized vanadium-titanium magnetite concentrate at 1050 °C for 60 min. The poor reducibility of iron in M3O5 solid solutions is the main reason to limit the reduction property of pre-oxidized vanadium-titanium magnetite concentrate. 展开更多
关键词 vanadium-titanium magnetite solid-state reduction reduction kinetics reduction process
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Optimization of BF Slag for High Cr_2O_3 Vanadium-titanium Magnetite 被引量:6
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作者 Yong ZHANG Jue TANG +3 位作者 Man-sheng CHU Yang LIU Shuang-yin CHEN Xiang-xin XUE 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2014年第2期144-150,共7页
In order to clarify the slag system of high Cr2O3 vanadium-titanium magnetite smelting in BF (blast furnace), the melting properties of slag samples prepared by analytically pure reagents were measured. By means of ... In order to clarify the slag system of high Cr2O3 vanadium-titanium magnetite smelting in BF (blast furnace), the melting properties of slag samples prepared by analytically pure reagents were measured. By means of orthogonal test synthetic weighted score method, the optimal slag for high Cr2O3 vanadium-titanium magnetite was obtained, which contained 10% MgO, 8% TiO2 and 15% Al2O3, with the binary basicity being 1.15. In addition, the effects of basicity, MgO, TiO2 and A12 03 on slag melting properties were investigated by single factor test, and the results showed that, with increasing the basicity or TiO2 content, melting temperature (Tin) increased, whereas initial vis- cosity (r/0) and high temperature viscosity (r/h) decreased. With increasing the MgO content, Tm decreased firstly and then increased. With increasing the Al2 O3 content, Tm increased, and η0 and r/h decreased firstly and then increased. 展开更多
关键词 high Cr2 03 vanadium-titanium magnetite melting property slag optimization synthetic weighted scoremethod
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Density functional theory(DFT) studies of vanadium-titanium based selective catalytic reduction(SCR) catalysts 被引量:5
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作者 Ziwei Zhao Erwei Li +4 位作者 Yu Qin Xiaolong Liu Yang Zou Heng Wu Tingyu Zhu 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2020年第4期119-137,共19页
Based on density functional theory(DFT)and basic structure models,the chemical reactions on the surface of vanadium-titanium based selective catalytic reduction(SCR)denitrification catalysts were summarized.Reasonable... Based on density functional theory(DFT)and basic structure models,the chemical reactions on the surface of vanadium-titanium based selective catalytic reduction(SCR)denitrification catalysts were summarized.Reasonable structural models(non-periodic and periodic structural models)are the basis of density functional calculations.A periodic structure model was more appropriate to represent the catalyst surface,and its theoretical calculation results were more comparable with the experimental results than a nonperiodic model.It is generally believed that the SCR mechanism where NH3 and NO react to produce N2 and H2 O follows an Eley-Rideal type mechanism.NH2 NO was found to be an important intermediate in the SCR reaction,with multiple production routes.Simultaneously,the effects of H2 O,SO2 and metal on SCR catalysts were also summarized. 展开更多
关键词 Selective catalytic reduction(SCR) Structure model vanadium-titanium based catalyst Density functional theory(DFT) Adsorption
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Oxidation Kinetics,Structural Changes and Element Migration during Oxidation Process of Vanadium-titanium Magnetite Ore 被引量:2
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作者 Feng PAN Qing-shan ZHU +1 位作者 Zhan DU Hao-yan SUN 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2016年第11期1160-1167,共8页
The oxidation kinetics, structural changes, and elements migration during the oxidation process of the va- nadium-titanium magnetite (VTM) ore were analyzed. Kinetics analysis indicated that the oxidation process wa... The oxidation kinetics, structural changes, and elements migration during the oxidation process of the va- nadium-titanium magnetite (VTM) ore were analyzed. Kinetics analysis indicated that the oxidation process was con- trolled by diffusion control and could be divided into interface diffusion and lattice diffusion with apparent activation energy of 99.69 kJ/mol and 144.08 kJ/mol in the range of 800--1000℃, respectively. The surface structure changed with the oxidization temperature as follows: dense surface→nano sized sheets→submicron particles→molten particles. The compact structure changed into porous one because of the elements migration and enrichment. Both Fe and Ti elements migrated in the opposite direction during the oxidation process. The V etement in the raw ore stably existed in the form of V^5+ state, some vanadium migrated and occupied the tetrahedral sites of the hematite during the oxidation process. 展开更多
关键词 vanadium-titanium magnetite ore OXIDATION KINETICS structural change element migration
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A promising method to recover spent V_(2)O_(5)-WO_(3)/TiO_(2) catalyst: treatment by vanadium-titanium magnetite sintering process 被引量:3
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作者 Hong-ming Long Yu-dong Zhang +2 位作者 Tao Yang Li-xin Qian Zheng-wei Yu 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2022年第8期1176-1184,共9页
A large number of spent selective catalytic reduction(SCR)denitration catalysts are produced after the ultra-low emission transformation of coal-fired power plants in China.According to the China’s“Directory of Nati... A large number of spent selective catalytic reduction(SCR)denitration catalysts are produced after the ultra-low emission transformation of coal-fired power plants in China.According to the China’s“Directory of National Hazardous Wastes(Version 2021)”,these spent vanadium-tungsten-titanium catalysts are classified as“HW50”hazardous waste,and their disposal and utilization processes have been strictly controlled.Thus,an effective and low-cost technique was developed to treat and utilize these spent SCR catalysts by the vanadium-titanium magnetite sintering process.Effects of adding spent SCR catalysts on the sintering production process and product quality indexes of sinter were studied.The results showed that adding spent SCR catalysts can improve the sintering granulation and green feed permeability,thereby increasing the productivity and flame front speed.When the addition proportion of spent SCR catalysts is less than 1 wt.%,the performance indexes of the finished sinter are basically equal to those of the finished sinter without adding spent SCR catalysts.Further increasing the proportion of spent SCR catalysts to 2.0 wt.%results in a decrease in product quality indexes,which could be attributed to the increase in perovskite content in the finished sinter. 展开更多
关键词 Spent selective catalytic reduction catalyst Hazardous waste vanadium-titanium magnetite sintering Recovery Utilization
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High-chromium vanadium-titanium magnetite all-pellet integrated burden optimization and softening-melting behavior based on flux pellets 被引量:3
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作者 Bojian Chen Tao Jiang +4 位作者 Jing Wen Guangdong Yang Tangxia Yu Fengxiang Zhu Peng Hu 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2024年第3期498-507,共10页
High-chromium vanadium-titanium magnetite(HVTM)is a crucial polymetallic-associated resource to be developed.The allpellet operation is a blast furnace trend that aims to reduce carbon dioxide emissions in the future.... High-chromium vanadium-titanium magnetite(HVTM)is a crucial polymetallic-associated resource to be developed.The allpellet operation is a blast furnace trend that aims to reduce carbon dioxide emissions in the future.By referencing the production data of vanadium-titanium magnetite blast furnaces,this study explored the softening-melting behavior of high-chromium vanadium-titanium magnetite and obtained the optimal integrated burden based on flux pellets.The results show that the burden with a composition of 70wt%flux pellets and 30wt%acid pellets exhibits the best softening-melting properties.In comparison to that of the single burden,the softening-melting characteristic temperature of this burden composition was higher.The melting interval first increased from 307 to 362℃and then decreased to 282℃.The maximum pressure drop(ΔPmax)decreased from 26.76 to 19.01 kPa.The permeability index(S)dropped from 4643.5 to 2446.8 kPa·℃.The softening-melting properties of the integrated burden were apparently improved.The acid pellets played a role in withstanding load during the softening process.The flux pellets in the integrated burden exhibited a higher slag melting point,which increased the melting temperature during the melting process.The slag homogeneity and the TiC produced by over-reduction led to the gas permeability deterioration of the single burden.The segregation of the flux and acid pellets in the HVTM proportion and basicity mainly led to the better softening-melting properties of the integrated burden. 展开更多
关键词 high-chromium vanadium-titanium magnetite softening-melting properties all pellets integrated burden flux pellets
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Influence of Coke Content on Sintering Process of Chromium-containing Vanadium-titanium Magnetite 被引量:2
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作者 周密 杨松陶 +1 位作者 JIANG Tao XUE Xiangxin 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2018年第1期68-72,共5页
The sintering of chromium-containing vanadium-titanium magnetite using different coke contents was studied through the sintering pot tests, X-ray diffraction analysis and mineralogical phase analysis. Results showed t... The sintering of chromium-containing vanadium-titanium magnetite using different coke contents was studied through the sintering pot tests, X-ray diffraction analysis and mineralogical phase analysis. Results showed that, as the coke content increased from 3.2% to 4.4%, the liquid phase and combustion zone thickness increased while the vertical sintering rate and ratio of sintered product decreased. In addition, the combustion ratio of exhaust gas also increased with increasing the coke content, indicating that combustion zone temperature also increased, and the excessive the coke content in the sintering process of vanadiumtitanium magnetite is harmful. As the coke content increased, the magnetite, silicates, and perovskite contents of the sintered ore increased while the contents of hematite and calcium ferrite of sintered ore decreased; drum strength decreased, and reduction degradation properties increased while reduction ability decreased. We found that the appropriate coke content for the sintering process is 3.6 wt%. 展开更多
关键词 chromium-containing vanadium-titanium magnetite sintered ore coke content mineralogical phases
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Carbothermic Reduction Mechanism of Vanadium-titanium Magnetite 被引量:7
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作者 Shuang-yin CHEN Xiao-jiao FU +3 位作者 Man-sheng CHU Xi-zhe LI Zheng-gen LIU Jue TANG 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2016年第5期409-414,共6页
To achieve the high-efficiency utilization of vanadium-titanium magnetite( VTM),reduction experiments were conducted to determine the carbothermic reduction mechanism of VTM. Effects of volatile matter,temperature,t... To achieve the high-efficiency utilization of vanadium-titanium magnetite( VTM),reduction experiments were conducted to determine the carbothermic reduction mechanism of VTM. Effects of volatile matter,temperature,time,and carbon ratio( molar ratio of fixed carbon in coal to oxygen in iron oxides of VTM) on reduction degree were investigated.Results show that reduction degree increases with increasing volatile matter in coal,temperature,time,and carbon ratio.Phase transformation,microstructure,and reduction path were analyzed by X-ray diffraction,scanning electron microscopy,energy-dispersive X-ray spectroscopy,and Fact Sage 6. 0. The thermoravimetry-differential scanning calorimetry-quadrupole mass spectrometer method was used for kinetic analysis of the main reduction process. Results indicate that the kinetic mechanism follows the principle of random nucleation and growth( n = 4),and the activation energy values at 600-900 and 900-1 350 ℃ are 88. 7 and 295. 5 kJ / mol,respectively. 展开更多
关键词 vanadium-titanium magnetite carbothermic reduction mechanism phase transformation kinetics
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Effects of basicity and temperature on mineralogy and reduction behaviors of high-chromium vanadium-titanium magnetite sinters 被引量:2
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作者 TANG Wei-dong YANG Song-tao +3 位作者 ZHANG Li-heng HUANG Zhuang YANG He XUE Xiang-xin 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第1期132-145,共14页
The effects of basicity and temperature on the reduction process of Hongge high-chromium vanadium-titanium magnetite(HCVTM)sinter were investigated in this work.The main characterization methods of X-ray fluorescence(... The effects of basicity and temperature on the reduction process of Hongge high-chromium vanadium-titanium magnetite(HCVTM)sinter were investigated in this work.The main characterization methods of X-ray fluorescence(XRF),X-ray diffraction(XRD),scanning electron microscope(SEM),and metallographic microscope were employed in this study.In this work,the reduction of HCVTM sinter with different temperature and basicity were experimented.The Fe,FeO,and TiO in reductive samples increase with increasing basicity and temperatures.The increase of basicity and temperature is favorable to the reduction of HCVTM sinter.The Fe phase has out-migration tendency to the surface of sinter while the perovskite and silicate phases have in-migration tendency to the inside of sinter.The reduction degradation index(RDI)decreases while the reduction index(RI)increases with increasing basicity.The RI increases from 67.14%to 82.09%with increasing temperature from 1073 K to 1373 K. 展开更多
关键词 BASICITY high-chromium vanadium-titanium magnetite sintering pot test MINERALOGY reduction behavior
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Wettability and corrosion behavior between alkaline slag from sodium smelting of vanadium-titanium magnetite and refractory substrates 被引量:1
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作者 Fei Zhao Zhi-wei Bian +5 位作者 Hong-xin Zhao De-sheng Chen Zhang-fu Yuan Yu-lan Zhen Li-na Wang Tao Qi 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2024年第6期1399-1410,共12页
The sodium smelting of vanadium-titanium magnetite can achieve the comprehensive utilization of Fe,V,and Ti.However,the generation of alkaline slag during this process may cause damage to refractory materials.The wett... The sodium smelting of vanadium-titanium magnetite can achieve the comprehensive utilization of Fe,V,and Ti.However,the generation of alkaline slag during this process may cause damage to refractory materials.The wettability and corrosion behavior of alkaline slag on three types of refractory(MgO-C,SiC,and high alumina refractory)substrates were investigated at temperatures up to 1200℃.The effects of duration on the wettability of molten slag on SiC substrates were also investigated.Results showed that the high alumina refractory exhibited better wettability with the molten slag than the others,and thus,it is easier to be corroded.The results of scanning electron microscopy coupled with energy dispersive spectroscopy showed that MgO-C and high alumina refractory substrates were severely eroded.There was a visible and regular interfacial reaction layer between the slag and SiC refractory substrate,which was produced by the redox reaction between the metal oxides in the slag and the SiC refractory substrate.With the increase in holding time,the interface layer expands and silico-ferrite phases are generated at the interface.The redox reaction between Fe_(2)O_(3) and SiC substrate is the main reason for the corrosion.By comparing the differences in wettability and corrosion behavior between the alkaline slag from sodium smelting of vanadium-titanium magnetite and MgO-C,SiC and high alumina refractories,it is concluded that SiC refractory has good corrosion resistance to the slag.Iron oxides in the slag accelerate the oxidation rate of SiC refractory. 展开更多
关键词 WETTABILITY Corrosion Alkaline slag-Contact angle vanadium-titanium magnetite REFRACTORY
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Kinetics and mechanism of coal-based direct reduction of highchromium vanadium-titanium magnetite
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作者 Jian Yang Tao Jiang +2 位作者 Shi-hong Ma Song-tao Yang Mi Zhou 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2022年第11期1723-1733,共11页
High-chromium vanadium-titanium magnetite(HCVTM)is a valuable resource containing metal elements such as iron,vanadium,titanium,and chromium.To recycle these elements,direct reduction is an efficient way.The mechanism... High-chromium vanadium-titanium magnetite(HCVTM)is a valuable resource containing metal elements such as iron,vanadium,titanium,and chromium.To recycle these elements,direct reduction is an efficient way.The mechanism and reaction kinetic parameters for the direct reduction of HCVTM were studied.Experimental results show that the reduction degree increases obviously when the C/O ratio and temperature increase.Thermodynamic analysis showed a dramatic mass loss in the direct reduction of HCVTM in the temperature range of 985-1160℃.From 1200 to 1350℃,the reduction curves for the isothermal reduction of HCVTM followed the same trend,with a sharp increase in the initial reaction zone and a slight increase in the reduction rate with increasing time,and finally,the isothermal reduction process of HCVTM was divided into several limiting stages with varying degrees,with inconsistent limiting factors for the reaction rate at different stages.The results also show that the activation energy decreases slightly at larger degrees of reduction.Also,the apparent rate constant k(T)increased with increasing reduction temperature,with lnk(T)showing a good linear relationship with temperature. 展开更多
关键词 High-chromium vanadium-titanium magnetite Direct reduction Reduction rate KINETIC Thermodynamic Analysis
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Effect of oxygen enrichment on sintering behavior of high proportion vanadium-titanium magnesite concentrates
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作者 Shi-hong Peng Hao Liu +4 位作者 Ze-zheng Sun Chang-wei Li Yue-lin Qin Wei-qiang Liu Guang Wang 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2023年第11期2122-2132,共11页
To achieve high-efficiency utilization of complex and unmanageable iron-containing minerals,the effects of oxygen enrichment on productivity,yield,flame front speed,exhaust gas peak temperature,and desulphurization re... To achieve high-efficiency utilization of complex and unmanageable iron-containing minerals,the effects of oxygen enrichment on productivity,yield,flame front speed,exhaust gas peak temperature,and desulphurization reaction of the vanadium-titanium magnetite sintering process as well as sinter tumble index and mineralogy were clarified,with oxygen enrichment concentrations ranging from 21 to 29 vol.%.Results indicated that with increasing the oxygen enrichment concentration from 21 to 27 vol.%,the flame front speed increased from 30.3 to 40.0 mm min^(-1),the yield enhanced from 72%to 77%,and the productivity augmented from 1.83 to 2.67t m^(-2)h^(-1);in the meantime,the tumble index was improved from 73.7%to 77.9%,and the exhaust gas peak temperature rose from 376.4 to 484.8℃.The main reason for the improvement in sintering properties was the increased combustibility of fuels and the generation of proper liquid phase that improved the permeability of the packed bed.The improved sinter strength is mainly due to the increase in the phase fraction of silico-ferrites of calcium and aluminium.In addition,oxygen enrichment sintering could significantly increase the desulphurization level of vanadium-titanium magnetite sinter and the rate of desulphurization reaction during sintering process. 展开更多
关键词 SINTER Oxygen enrichment vanadium-titanium magnetite Sintering behavior
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Enrichment and reconfiguration of titanium-bearing phase in vortex smelting reduction process of vanadium-titanium magnetite
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作者 Yong-chao Han Zhi-he Dou +2 位作者 Rui Zhang Ting-an Zhang Shuai Fang 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2024年第7期1582-1589,共8页
To comprehensively utilize the low-iron high-vanadium-titanium magnetite,a new method of vortex smelting reduction of vanadium-titanium magnetite was proposed,and the enrichment and reconstitution regularity of Ti-bea... To comprehensively utilize the low-iron high-vanadium-titanium magnetite,a new method of vortex smelting reduction of vanadium-titanium magnetite was proposed,and the enrichment and reconstitution regularity of Ti-bearing phases in the slag was investigated through X-ray fluorescence spectrometry,X-ray photoelectron spectroscopy,X-ray diffraction analysis,and optical microscopy.The phase diagram revealed that the preferential crystallization of MgTi_(2)O_(5) can be achieved by adjusting the CaO,MgO,and TiO_(2) contents of slag.The predominant Ti-bearing phases in the slag obtained from the reduction process are MgxTi_(3_x)O_(5)(0≤x≤1)and CaTiO_(3).FeTiO_(3) is present at carbon-iron ratio(CR)=1.3,while MgTi_(2)O4 and TiC are formed at CR=1.3.The enrichment of TiO_(2) in the slag increases first and then decreases as the CR increases,and at CR=1.1,the enrichment of TiO_(2) in the slag reaches 51.3 wt.%.Additionally,the concentrations of MgxTi_(3_x)O_(5)(0≤x≤1)and CaTiO_(3) in the slag,along with the grain width of MgxTi_(3_x)O_(5)(0≤x≤1),decrease with the increase in CR. 展开更多
关键词 vanadium-titanium magnetite Vortex smelting reduction Phase reconfiguration TiO_(2)enrichment
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Oxidation consolidation of vanadium-titanium magnetite pellets strengthened by pretreatment of high-pressure grinding rolls
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作者 Huan Zhong Tie-Jun Chen +3 位作者 Xian-lin Zhou Jun-Ying Wan Xiang-Bo Jiang Yue Hu 《Journal of Iron and Steel Research International》 2026年第1期248-260,共13页
The production of vanadium-titanium magnetite(VTM)pellets has the problems of low consolidation strength and high energy consumption in the preheating and roasting process.High-pressure grinding roll(HPGR)pretreatment... The production of vanadium-titanium magnetite(VTM)pellets has the problems of low consolidation strength and high energy consumption in the preheating and roasting process.High-pressure grinding roll(HPGR)pretreatment process was used to increase the fine-grained content and specific surface area of VTM concentrates,to strengthen the oxidation consolidation process of VTM pellets,and oxidation kinetic experiments were carried out.The results showed that the specific surface area of VTM concentrates was increased from 872 to 1457 cm^(2)/g by HPGR and then pelletising and roasting.With preheating at 1000℃ for 10 min and roasting at 1260℃ for 10 min,the strengths of preheated pellets were increased from 329 to 535 N,and the strengths of roasted pellets were increased from 1010 to 2591 N.The limiting link in the early stage of VTM pellets oxidation was the control of chemical reaction,while the limiting link in the later stage of oxidation was the mixed control of chemical reaction and gas diffusion.The activation energies of VTM pellets before and after HPGR pretreatment were 53.07 and 40.03 kJ/mol in the early stage of oxidation reaction,while the activation energies in the later stage of oxidation were 29.24 and 22.75 kJ/mol,respectively. 展开更多
关键词 vanadium-titanium magnetite High-pressure grinding roll Pellet consolidation Microstructure Oxidation kinetics
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亚熔盐活性氧理论与钒铬提取研究进展
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作者 刘彪 杜浩 +4 位作者 李会泉 刘志强 吕页清 王晨晔 张懿 《有色金属(冶炼部分)》 北大核心 2026年第2期195-219,I0001,I0002,共27页
中国是全球最大的矿产资源生产国、消费国、进口国,矿产资源开发产业是我国经济发展的基础,但高速发展伴随资源消耗和环境负担的增加,资源需求与环境承载力之间的矛盾日益突出。发展循环经济,开发清洁生产技术,实现资源利用最大化和环... 中国是全球最大的矿产资源生产国、消费国、进口国,矿产资源开发产业是我国经济发展的基础,但高速发展伴随资源消耗和环境负担的增加,资源需求与环境承载力之间的矛盾日益突出。发展循环经济,开发清洁生产技术,实现资源利用最大化和环境影响最小化,是提升国家竞争力的必由之路。清洁工艺的核心是资源转化的绿色化学创新,在原子经济性反应温和转化条件下实现有价元素的绿色提取、高效分离,并最终实现废弃物的最小化排放。本团队面向矿产资源低碳清洁生产的国家重大战略需求,针对具有化学共性的难处理两性金属矿物,提出了亚熔盐非常规介质活化矿物资源化转化反应新概念,替代高能耗、高污染的氧化焙烧等传统生产技术,以提高资源转化效率,源头消减有害废弃物的产生。本文以铬铁矿和钒钛磁铁矿两种典型两性金属矿产资源的亚熔盐清洁提取技术为例,深入阐述亚熔盐活性氧理论,系统介绍钒铬清洁提取技术进展,并对亚熔盐铬盐和钒渣钒铬共提两项示范工程的运行情况进行概述,给出钒铬清洁生产未来发展方向和建议,为我国钒铬战略金属资源的清洁开发提供参考。 展开更多
关键词 亚熔盐 活性氧 铬铁矿 钒钛磁铁矿 钒渣 钒铬共提 清洁生产
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中国岩浆型铁矿的矿产地数量-规模-品位结构及时空分布
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作者 李厚民 李立兴 +2 位作者 李小赛 吴玄 孟洁 《地质学报》 北大核心 2026年第1期1-10,共10页
岩浆型铁矿赋存于镁铁—超镁铁质岩体中,是我国仅次于沉积变质型铁矿的重要铁矿床类型,并且共伴生有钛、钒、钴、镍、磷等资源。截至目前,我国已发现岩浆型铁矿产地231个,其中超大型铁矿床4个、大型铁矿床17个、中型铁矿床49个。统计表... 岩浆型铁矿赋存于镁铁—超镁铁质岩体中,是我国仅次于沉积变质型铁矿的重要铁矿床类型,并且共伴生有钛、钒、钴、镍、磷等资源。截至目前,我国已发现岩浆型铁矿产地231个,其中超大型铁矿床4个、大型铁矿床17个、中型铁矿床49个。统计表明,岩浆型铁矿的矿石品位总体较低:TFe(全铁)品位25%~45%的矿产地数量占比53%,铁矿石量占比64%;TFe品位25%~20%的铁矿产地占比16%,矿石量占比24%;TFe品位低于20%的铁矿产地占比27%,矿石量占比12%。岩浆型铁矿床中虽然超大型规模者仅有4个,但其铁矿石量占比却达72%;大型铁矿床数占比9%,铁矿石量占比19%,表明大型、超大型矿床在岩浆型铁矿中占有举足轻重的地位。在时间分布特征上,岩浆型铁矿从太古宙到中生代均有分布,但以二叠纪攀枝花式铁矿具有绝对优势地位,其次为中元古代的大庙式铁矿。在空间分布特征上,全国有22个省(区市)发现有岩浆型铁矿的矿产地,但数量及矿石量集中于四川攀西地区的Ⅲ-76康滇隆起Fe-Cu-V-Ti-Sn-Ni-REE-Au-蓝石棉-盐类成矿带,其次为河北承德地区的Ⅲ-57华北陆块北缘东段Fe-Cu-Mo-Pb-Zn-Ag-Mn-U-磷-煤-膨润土成矿带,另外陕西安康—汉中、山东沂水—莒县、新疆塔里木盆地及邻区也较重要。岩浆型铁矿成矿均与拉张背景下的重大构造-岩浆事件有关,如攀枝花式铁矿与二叠纪峨眉地幔柱有关,大庙式铁矿与1.8~1.7 Ga华北克拉通的超大陆裂解事件有关等。 展开更多
关键词 钒钛磁铁矿 岩浆型 矿产地数量 矿石品位 时空分布规律
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炉渣二元碱度对钒钛磁铁矿预还原团块熔分行为的影响
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作者 赵猛 田宏宇 +3 位作者 储满生 唐珏 周浩宇 王业峰 《材料与冶金学报》 北大核心 2026年第1期30-36,45,共8页
基于热力学、工艺矿物学和热态实验,系统研究了炉渣二元碱度R_(2)[即w(CaO)/w(SiO_(2))]对钒钛磁铁矿预还原团块熔分行为的影响.FactSage热力学计算结果表明,提高R_(2)能够降低熔分生铁中的Ti含量,而对Fe和V的生成温度及生成量影响较小... 基于热力学、工艺矿物学和热态实验,系统研究了炉渣二元碱度R_(2)[即w(CaO)/w(SiO_(2))]对钒钛磁铁矿预还原团块熔分行为的影响.FactSage热力学计算结果表明,提高R_(2)能够降低熔分生铁中的Ti含量,而对Fe和V的生成温度及生成量影响较小.综合热态实验结果和工艺矿物学理论可得:当R_(2)由0.43升至0.8时,熔分生铁中Fe和V的回收率分别由97.07%和82.31%升至98.89%和89.48%;熔分渣中TiO_(2)的回收率由93.67%升至95.21%.低熔点相的形成可降低铁合金相夹杂程度,促进有价元素的定向迁移,从而改善渣铁分离效果.当R_(2)高于0.8时,其对有价组元的回收率影响较小,高熔点物相钙钛矿的生成使熔分渣相的熔点升高,黏度和渣量增大,从而增加了电炉冶炼成本和能耗. 展开更多
关键词 钒钛磁铁矿 二元碱度 熔化分离 回收率 炉渣特性
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基于机器学习的角闪石温压计及其地质应用
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作者 黄明波 柏中杰 +3 位作者 高剑峰 汪光韶 马博骋 曾禹人 《岩石学报》 北大核心 2026年第3期1109-1121,共13页
角闪石是广泛存在于各类火成岩和岩浆-热液矿床中的常见造岩矿物,其化学成分对温度与压力变化敏感,能够有效记录岩浆结晶过程的物理条件,是构建温压计的理想对象。为更精确约束岩浆结晶条件并深化成矿过程研究,本文基于机器学习算法,建... 角闪石是广泛存在于各类火成岩和岩浆-热液矿床中的常见造岩矿物,其化学成分对温度与压力变化敏感,能够有效记录岩浆结晶过程的物理条件,是构建温压计的理想对象。为更精确约束岩浆结晶条件并深化成矿过程研究,本文基于机器学习算法,建立了一种基于角闪石成分的温度-压力预测模型,并对其性能进行了系统验证。该模型依托大规模实验数据训练,能够捕捉角闪石化学组成与P-T条件间复杂的非线性关系,显著提高了预测的精度与稳健性。为验证模型的实际效果,本文将其应用于四类典型地质样本:东天山铜镍硫化物矿床、峨眉山大火成岩省太和钒钛磁铁矿矿床、冈底斯弧及Kohistan弧新生下地壳,以及冈底斯带三叠纪弧火山岩。预测结果反映出不同区域岩浆结晶的深度和温度分布规律,表明该模型在大火成岩省和造山带等地质背景、不同侵位深度的岩浆体系中均具有良好的适用性与可靠性。相较于传统经验公式受限于特定条件的问题,本模型展现出更广泛的适用范围,可为不同构造环境下的岩浆过程解析与成矿作用研究提供有力支撑。 展开更多
关键词 角闪石 机器学习 温压计 铜镍硫化物矿床 新生下地壳 钒钛磁铁矿
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攀西某钒钛磁铁矿工艺矿物学研究
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作者 张召庆 王智扬 +3 位作者 陈天赐 孙梦希 王珏 王俊鹏 《有色矿冶》 2026年第1期15-18,共4页
为改进攀西某钒钛磁铁矿中有价元素的分选工艺,采用XRD、SEM和矿相显微镜等分析方法对矿石进行工艺矿物学研究。结果表明,矿石中钛磁铁矿占34.12%,钛铁矿占10.88%,钛赤(褐)铁矿和磁黄铁矿占1.88%,钛普通辉石占32.14%。钛磁铁矿中铁的分... 为改进攀西某钒钛磁铁矿中有价元素的分选工艺,采用XRD、SEM和矿相显微镜等分析方法对矿石进行工艺矿物学研究。结果表明,矿石中钛磁铁矿占34.12%,钛铁矿占10.88%,钛赤(褐)铁矿和磁黄铁矿占1.88%,钛普通辉石占32.14%。钛磁铁矿中铁的分配率为65.86%,钛铁矿中钛的分配率为58.93%。钛磁铁矿与钛铁矿主要呈共生、海绵陨铁和粒状镶嵌结构,主要硫化物磁黄铁矿大多分布在铁钛氧化物与硅酸盐矿物颗粒之间。测量矿石的嵌布粒度,当矿石粒级为+0.075 mm时,钛磁铁矿和钛铁矿的累计含量分别为81.47%和65.58%。 展开更多
关键词 钒钛磁铁矿 工艺矿物学 物质组成 产出形式 嵌布粒度
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