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STUDY OF SMELTING REDUCTION RATE FOR VANADIUM TITANIUM MAGNETITE
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作者 ZHANG Binghuai ZOU Deyu JIN Kehe LIU Qingcai Chongqing University,Chongqing,China 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 1992年第10期229-234,共6页
A comparative study was made of the reduction kinetics for high temperature smelting of vadium-titanium-containing magnetite,together with Hainan iron ore,using iron bath method.Three peaks were revealed on the reduct... A comparative study was made of the reduction kinetics for high temperature smelting of vadium-titanium-containing magnetite,together with Hainan iron ore,using iron bath method.Three peaks were revealed on the reduction rate curves for the magnetite,while one peak only for Hainan ore.Under the same conditions,the smelting reduction rate of the magnetite was found to be lower than that of Hainan ore.The rate increases evidently with the increase of the bath volume.The expressions of smelting reduction rate were suggested for the reduction with and without iron bath respectively. 展开更多
关键词 vanadium-titanium-containing magnetite smelting reduction KINETICS ironbath
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Enhancing iron and titanium recovery efficiency via coal-based direct reduction of vanadium−titanium magnetite raw ore
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作者 Zheng-hao WANG Si-yu CHEN +2 位作者 Liang CHEN Bin LIANG Dong-mei LUO 《Transactions of Nonferrous Metals Society of China》 2025年第10期3480-3492,共13页
An approach for coal-based direct reduction of vanadium−titanium magnetite(VTM)raw ore was proposed.Under the optimal reduction conditions with reduction temperature of 1140℃,reduction time of 3 h,C-to-Fe molar ratio... An approach for coal-based direct reduction of vanadium−titanium magnetite(VTM)raw ore was proposed.Under the optimal reduction conditions with reduction temperature of 1140℃,reduction time of 3 h,C-to-Fe molar ratio of 1.2꞉1,and pre-oxidation temperature of 900℃,the iron metallization degree is 97.8%.Ultimately,magnetic separation yields an iron concentrate with an Fe content of 76.78 wt.%and efficiency of 93.41%,while the magnetic separation slag has a Ti grade and recovery of 9.36 wt.%and 87.07%,respectively,with a titanium loss of 12.93%.This new strategy eliminates the beneficiation process of VTM raw ore,effectively reduces the Ti content in the iron concentrate,and improves the comprehensive utilization of valuable metals. 展开更多
关键词 vanadiumtitanium magnetite raw ore reduction PRE-OXIDATION metallic iron
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Removal of rhodamine B from aqueous solutions using vanadium pentoxide/titanium butyl oxide hybrid xerogels
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作者 Surayya Mukhtar 《Chinese Physics B》 SCIE EI CAS CSCD 2017年第5期407-413,共7页
A stable and insoluble V2O5·n H2O/tetra-n-butyl titanate(TBO) hybrid xerogel was synthesized by the sol–gel method. This novel material proved to be an efficient absorbent with an absorption capacity of 179 mg... A stable and insoluble V2O5·n H2O/tetra-n-butyl titanate(TBO) hybrid xerogel was synthesized by the sol–gel method. This novel material proved to be an efficient absorbent with an absorption capacity of 179 mg·g^-1for Rhodamine B(Rh B) in water due to its unique layered structure, which can effectively accommodate Rh B molecules between its layers as demonstrated by XRD and FTIR spectroscopic analyses. 展开更多
关键词 vanadium titanium titanate layered accommodate rhodamine insoluble tetra spacing interlayer
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High-Temperature Oxidation Behavior of Vanadium,Titanium-Bearing Magnetite Pellet 被引量:25
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作者 HAN Gui-hong JIANG Tao ZHANG Yuan-bo HUANG Yan-fang LI Guang-hui 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2011年第8期14-19,共6页
By means of isothermal oxidation and chemical analysis, great importance was attached to the parameters that made effects on the oxidation degree of vanadium, titanium-bearing magnetite pellet in high-temperature proc... By means of isothermal oxidation and chemical analysis, great importance was attached to the parameters that made effects on the oxidation degree of vanadium, titanium-bearing magnetite pellet in high-temperature processing (1 073- 1 323 K). Based on the experimental data, oxidation kinetics of pellet was analyzed according to shrinking unreacted-core model subsequently. Experiment results display that the oxidation degree of pellet increases with increasing of oxidation time, oxidation temperature and oxygen content, as well as shrinking of pellet diameter. Under the condition of oxidation time 20 min, oxidation temperature 1223 K, oxygen content 15%, and pellet diameter 12 mm, oxidation degree of pellet reaches 92.92%. The analysis of oxidation kinetics indicates that oxidation process of pellet is controlled by chemical reaction with activation energy 68.64 kJ/mol at a relatively lower temperature (1073-1 173 K). Oxidation process of pellet is mixed-controlled by chemistry reaction and diffusion with activation energy 39.66 kJ/mol in the temperature range of 1 173-1 273 K. When oxidation temperature is higher than 1 273 K, the limited link of oxidation reaction is the diffusion control with the activation energy 20.85 kJ/mol. These results can serve as a reference to the production of vanadium, titanium-hearing magnetite pellet. 展开更多
关键词 vanadium titanium-bearing magnetite oxidation degree PELLET shrinking unreaeted-core model oxidation kinetics
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Effect of diboron trioxide on the crushing strength and smelting mechanism of high-chromium vanadium–titanium magnetite pellets 被引量:5
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作者 Gong-jin Cheng Zi-xian Gao +1 位作者 He Yang Xiang-xin Xue 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2017年第11期1228-1240,共13页
The effect of diboron trioxide(B_2O_3) on the crushing strength and smelting mechanism of high-chromium vanadium–titanium magnetite pellets was investigated in this work. The main characterization methods were X-ray ... The effect of diboron trioxide(B_2O_3) on the crushing strength and smelting mechanism of high-chromium vanadium–titanium magnetite pellets was investigated in this work. The main characterization methods were X-ray fluorescence, inductively coupled plasma–atomic emission spectroscopy, mercury injection porosimetry, X-ray diffraction, metallographic microscopy, and scanning electron microscopy–energy-dispersive X-ray spectroscopy. The results showed that the crushing strength increased greatly with increasing B_2O_3 content and that the increase in crushing strength was strongly correlated with a decrease in porosity, the formation of liquid phases, and the growth and recrystallization consolidation of hematite crystalline grains. The smelting properties were measured under simulated blast furnace conditions; the results showed that the smelting properties within a certain B_2O_3 content range were improved and optimized except in the softening stage. The valuable element B was easily transformed to the slag, and this phenomenon became increasingly evident with increasing B_2O_3 content. The formation of Ti(C,N) was mostly avoided, and the slag and melted iron were separated well during smelting with the addition of B_2O_3. The size increase of the melted iron was consistent with the gradual optimization of the dripping characteristics with increasing B_2O_3 content. 展开更多
关键词 high-chromium vanadiumtitanium MAGNETITE PELLETS diboron TRIOXIDE crushing strength SMELTING mechanism
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Review on the latest developments in modified vanadium-titanium-based SCR catalysts 被引量:38
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作者 Chuanmin Chen Yue Cao +2 位作者 Songtao Liu Jianmeng Chen Wenbo Jia 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2018年第8期1347-1365,共19页
Vanadium-titanium-based catalysts are the most widely used industrial materials for NO_x removal from coal-fired power plants. Owing to their relatively poor low-temperature deNO_x activity, low thermal stability, ins... Vanadium-titanium-based catalysts are the most widely used industrial materials for NO_x removal from coal-fired power plants. Owing to their relatively poor low-temperature deNO_x activity, low thermal stability, insufficient Hg^0 oxidation activity, SO_2 oxidation, ammonia slip, and other disadvantages,modifications to traditional vanadium-titanium-based selective catalytic reduction(SCR)catalysts have been attempted by many researchers to promote their relevant performance. This article reviewed the research progress of modified vanadium-titanium-based SCR catalysts from seven aspects, namely,(1) improving low-temperature deNO_x efficiency,(2) enhancing thermal stability,(3) improving Hg^0 oxidation efficiency,(4) oxidizing slip ammonia,(5) reducing SO_2 oxidation,(6) increasing alkali resistance, and(7) others. Their catalytic performance and the influence mechanisms have been discussed in detail. These catalysts were also divided into different categories according to their modified components such as noble metals(e.g., silver, ruthenium), transition metals(e.g., manganese, iron, copper, zirconium, etc.), rare earth metals(e.g., cerium, praseodymium),and other metal chlorides(e.g., calcium chloride, copper chloride) and non-metals(fluorine,sulfur, silicon, nitrogen, etc.). The advantages and disadvantages of these catalysts were summarized.Based on previous studies and the author's point of view, doping the appropriate modified components is beneficial to further improve the overall performance of vanadium-titanium-based SCR catalysts. This has enormous development potential and is a promising way to realize the control of multiple pollutants on the basis of the existing flue gas treatment system. 展开更多
关键词 vanadiumtitanium‐based catalyst Selectivecataly ticreductionLow‐temperature denitration Hg 0oxidation Slipammonia SO2 oxidation
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Sintering behaviors and consolidation mechanism of high-chromium vanadium and titanium magnetite fines 被引量:6
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作者 Mi Zhou Tao Jiang +1 位作者 Song-tao Yang Xiang-xin Xue 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2015年第9期917-925,共9页
To achieve high efficiency utilization of high-chromium vanadium-titanium magnetite (V-Ti-Cr) fines, an investigation of V Ti42r fines was conducted using a sinter pot. The chemical composition, particle parameters,... To achieve high efficiency utilization of high-chromium vanadium-titanium magnetite (V-Ti-Cr) fines, an investigation of V Ti42r fines was conducted using a sinter pot. The chemical composition, particle parameters, and granulation of V-Ti-Cr mixtures were analyzed, and the effects of sintering parameters on the sintering behaviors were investigated. The results indicated that the optimum quicklime dosage, mixture moisture, wetting time, and granulation time for V-Ti-Cr fines are 5wt%, 7.5wt%, 10 min, and 5-8 min, respectively. Meanwhile, the vertical sintering speed, yield, tumbler strength, and productivity gains were shown to be 21.28 mm/min, 60.50wt% , 58.26wt%, and 1.36 t·m^-2·h^-1, respectively. Furthermore, the consolidation mechanism of V-Ti-Cr fines was clarified, revealing that the consolidation of a V-Ti-Cr sinter requires an approximately 14vo1% calcium ferrite liquid-state, an approximately 15vo1% silicate liq- uid-state, a solid-state reaction, and the recrystallization of magnetite. Compared to an ordinary sinter, calcium ferrite content in a V-Ti-Cr sinter is lower, while the perovskite content is higher, possibly resulting in unsatisfactory sinter outcomes. 展开更多
关键词 MAGNETITE CHROMIUM vanadium titanium ore sintering CONSOLIDATION mineralogy
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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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Pressure leaching of converter vanadium slag with waste titanium dioxide 被引量:4
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作者 Guo-Quan Zhang Ting-An Zhang +3 位作者 Ying Zhang Guo-Zhi Lv Yan Liu Zhuo-Lin Liu 《Rare Metals》 SCIE EI CAS CSCD 2016年第7期576-580,共5页
The process of pressure leaching the converter vanadium slag with waste titanium dioxide without roasting was studied. Mineralogy analysis indicates that the con- verter vanadium slag contains mainly three mineral pha... The process of pressure leaching the converter vanadium slag with waste titanium dioxide without roasting was studied. Mineralogy analysis indicates that the con- verter vanadium slag contains mainly three mineral phases: magnetite, titanium magnetite, and silicate phase. Vana- dium is in combination with iron, titanium, manganese, aluminum, and silicon. The impacts of leaching tempera- ture, leaching time, stirring speed, liquid-to-solid ratio, and initial leaching agent concentration were investigated on the waste titanium dioxide leaching process. The results indi- cate that under the optimal conditions, the vanadium and the iron leaching rates are 96.85 % and 93.50 %, respectively, and the content of titanium is 12.6 % in the residue. The main mineral phases for the residues under the optimal operation conditions are quartz, ilmenite, anatase, and sili- cate phase, and the residues can be reused as the extraction of titanium raw materials for titanium dioxide production technology by the sulfate method. 展开更多
关键词 vanadium Waste titanium dioxide Pressure leaching Resource utilization
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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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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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A novel process for the recovery of iron,titanium,and vanadium from vanadium-bearing titanomagnetite:sodium modification–direct reduction coupled process 被引量:15
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作者 Yi-min Zhang Ling-yun Yi +5 位作者 Li-na Wang De-sheng Chen Wei-jing Wang Ya-hui Liu Hong-xin Zhao Tao Qi 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2017年第5期504-511,共8页
A sodium modification–direct reduction coupled process was proposed for the simultaneous extraction of V and Fe from vanadium- bearing titanomagnetite. The sodium oxidation of vanadium oxides to water-soluble sodium ... A sodium modification–direct reduction coupled process was proposed for the simultaneous extraction of V and Fe from vanadium- bearing titanomagnetite. The sodium oxidation of vanadium oxides to water-soluble sodium vanadate and the transformation of iron oxides to metallic iron were accomplished in a single-step high-temperature process. The increase in roasting temperature favors the reduction of iron oxides but disfavors the oxidation of vanadium oxides. The recoveries of vanadium, iron, and titanium reached 84.52%, 89.37%, and 95.59%, respectively. Moreover, the acid decomposition efficiency of titanium slag reached 96.45%. Compared with traditional processes, the novel process provides several advantages, including a shorter flow, a lower energy consumption, and a higher utilization efficiency of vanadium-bearing titanomagnetite resources. © 2017, University of Science and Technology Beijing and Springer-Verlag Berlin Heidelberg. 展开更多
关键词 Energy utilization IRON Leaching Magnetic separation Metal recovery Metallic compounds Oxides SLAGS SODIUM titanium vanadium
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Reduction behavior and kinetics of vanadium–titanium sinters under high potential oxygen enriched pulverized coal injection 被引量:1
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作者 Jin-fang Ma Guang-wei Wang +4 位作者 Jian-liang Zhang Xin-yu Li Zheng-jian Liu Ke-xin Jiao Jian Guo 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2017年第5期493-503,共11页
In this work, the reduction behavior of vanadium–titanium sinters was studied under five different sets of conditions of pulverized coal injection with oxygen enrichment. The modified random pore model was establishe... In this work, the reduction behavior of vanadium–titanium sinters was studied under five different sets of conditions of pulverized coal injection with oxygen enrichment. The modified random pore model was established to analyze the reduction kinetics. The results show that the reduction rate of sinters was accelerated by an increase of CO and H2contents. Meanwhile, with the increase in CO and H2contents, the increasing range of the medium reduction index (MRE) of sinters decreased. The increasing oxygen enrichment ratio played a diminishing role in improving the reduction behavior of the sinters. The reducing process kinetic parameters were solved using the modified random role model. The results indicated that, with increasing oxygen enrichment, the contents of CO and H2in the reducing gas increased. The reduction activation energy of the sinters decreased to between 20.4 and 23.2 kJ/mol. © 2017, The Author(s). 展开更多
关键词 Activation energy COAL Injection (oil wells) Kinetic parameters KINETICS OXYGEN Pulverized fuel SINTERING titanium vanadium
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COPOLYMERIZATION OF ETHYLENE AND PROPYLENE CATALYZED BY MAGNESIUM CHLORIDE SUPPORTED VANADIUM/TITANIUM BIMETALLIC ZIEGLER-NATTA CATALYSTS
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作者 姜涛 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2011年第4期475-482,共8页
Magnesium chloride supported vanadium/titanium bimetallic Ziegler-Natta catalysts with di-i-butyl phthalate as internal donor for copolymerization of ethylene and propylene were prepared. The effects of reaction tempe... Magnesium chloride supported vanadium/titanium bimetallic Ziegler-Natta catalysts with di-i-butyl phthalate as internal donor for copolymerization of ethylene and propylene were prepared. The effects of reaction temperature, ethylene/propylene molar ratio, aluminium/vanadium (Al/V) molar ratio and titanium/vanadium molar ratio on the catalytic activity were investigated. The molecular weight, molecular weight distribution, sequence composition and crystallinity of the products were measured by gel permeation chromatography, ^13C-NMR and differential scanning calorimetry analysis, respectively. In comparison to the vanadium and titanium catalysts, the bimetallic catalyst showed higher catalytic activity and better copolymerization performance. The obtained ethylene/propylene copolymers have high molecular weight (105), broad molecular weight distribution, high propylene content with random or short blocked sequence structures (rErp = 1.919), low melting temperatures and low crystallinities (Xc 〈 20%). 展开更多
关键词 Ziegler-Natta polymerization vanadium/titanium catalyst Ethylene-propylene copolymer.
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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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基于机器学习的角闪石温压计及其地质应用 被引量:1
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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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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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添加剂促进钒钛磁铁矿碳热还原-分离研究进展
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作者 平晓东 孔令兵 +3 位作者 王磊 周牧 阎钰川 郭培民 《中国冶金》 北大核心 2026年第1期1-15,77,共16页
钒钛磁铁矿是以铁、钒和钛为主的复合矿产,具有极高的综合回收利用价值。非高炉冶炼钒钛磁铁矿工艺具有流程短、碳排放低、钛回收率高等优势。由于钒钛磁铁矿具有复杂的矿物组成和结构,非高炉冶炼时存在反应效率低、金属化率不足、元素... 钒钛磁铁矿是以铁、钒和钛为主的复合矿产,具有极高的综合回收利用价值。非高炉冶炼钒钛磁铁矿工艺具有流程短、碳排放低、钛回收率高等优势。由于钒钛磁铁矿具有复杂的矿物组成和结构,非高炉冶炼时存在反应效率低、金属化率不足、元素分离困难等问题。此外,当还原温度大于1200℃时,加热装备维持还原气氛存在技术难题,因此目前非高炉冶炼钒钛磁铁矿工艺尚未实现产业化应用。使用添加剂可以显著改善这些问题。各种添加剂由于自身特性和作用机理不同,使用后对钒钛磁铁矿还原-分离效果也存在较大差异。本文梳理了不同添加剂对钒钛磁铁矿还原-分离影响的研究进展,包括钠基、钙基、镁基、硼砂等其他添加剂以及复合添加剂,总结了不同添加剂的强化还原机理和工艺路线,分析了各自的优势、问题和发展前景。研究认为,钠基低温还原-熔分工艺和B2O3复合添加剂低温还原-磁选工艺具有较好的发展前景,符合低碳发展要求,但仍需要更多研究验证。未来需要聚焦复合添加剂的设计,注重还原-分离协同优化以及环境友好。 展开更多
关键词 钒钛磁铁矿 添加剂 碳热还原 有价金属分离 还原机理
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