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1.
本文系统研究铬铁矿球团的焙烧固结特性.结果表明:预热时间对于预热球强度影响不大,在预热时间为10 min时,随着预热温度的提高,预热球强度和氧化率呈直线型增加,适宜温度为1050益,此时预热球强度可达每个400 N以上;与传统铁矿球团相比,铬铁矿球团焙烧所需的温度高,焙烧时间为10 min时,焙烧温度从1250益提高到1350益,球团强度从每个1078 N提高到1973 N.在铬铁矿球团预热和焙烧过程中,铬尖晶石( Fe,Mg)( Cr,Fe,Al)2 O4氧化生成富镁的( Fe,Mg)( Cr, Fe,Al)2O4和铬铁铝复合氧化物(Cr,Fe,Al)2O3,当温度高于1000益时,(Cr,Fe,Al)2O3新相生成,其主要以环状分布在颗粒外层,颗粒内部为针状与(Fe,Mg)(Cr,Fe,Al)2O4形成交织结构,降低Cr/Fe比或升高焙烧温度均有助于(Cr,Fe,Al)2O3向颗粒外层富集和再结晶长大,有利于球团的固结,提高球团强度.  相似文献   

2.
在实验室条件下,研究了含硼铁精矿对巴润精矿氧化球团制备工艺及冶金性能的影响.研究表明:球团原料中外配5.0%的含硼铁精矿,可将混合料中的巴润精矿配比(质量分数)提高到40%,制备的氧化球团满足高炉冶炼要求;含硼铁精矿可增加巴润精矿氧化球团的抗压强度和降低还原膨胀率,并可降低球团的焙烧温度;当含硼铁精矿配加量(质量分数)从0增加到7.5%时,球团抗压强度从2 630 N·个-1上升到3 709 N·个-1,还原膨胀率从25.69%降低到15.53%;外配质量分数为7.5%的含硼铁精矿时,球团的焙烧温度可从1 200℃降低至1 150℃,巴润精矿氧化球团满足高炉生产要求.  相似文献   

3.
In the ironmaking process, the addition of an organic binder to replace a portion of bentonite has the potential to improve the performance of pellets. The interaction between original bentonite (OB) and organic binder was investigated. Results indicated that the micromorphology of organic composite bentonite (OCB) became porous and the infrared difference spectrum exhibited a curved shape. In addition, the residual burning rates of OB and organic binder were determined to be 82.72% and 2.30%, respectively. Finally, the influence of OCB on the properties of pellets was investigated. The compressive strength of OCB-added green pellets (14.7 N per pellet) was better than that of OB-added pellets (10.3 N per pellet). Moreover, the range of melting temperature of OCB-added green pellets (173°C) was narrower than that of OB-added pellets (198°C). The compressive strength of OCB-added green pellets increased from 2156 to 3156 N per pellet with the increase in roasting temperature from 1200 to 1250°C.  相似文献   

4.
高炉炼铁工艺中炼焦、球团、烧结工序是主要污染源,本实验模拟转底炉工艺采用煤粉为还原剂实现直接还原铁的清洁生产。实验以津布巴铁精矿为原料,对该铁精矿进行XRD分析、扫描电镜分析和热失重分析。实验采用含碳球团焙烧还原工艺,通过四因素三水平正交实验研究各因素对焙烧球团的金属化率的影响。结果表明:在含碳球团焙烧还原过程中,对金属化率的影响程度从大到小的因素分别为焙烧温度、碱度、焙烧时间和配碳量,其中,当配碳量为1.0,温度为1 150℃,碱度为0.37,焙烧时间为25 min是得到高金属化率焙烧球团的最佳条件,球团焙烧后的残炭量与焙烧温度和碱度也有较大关系,最终球团金属化率均在80%以上。  相似文献   

5.
The effects of SiO2 content on the preparation process and metallurgical properties of acid oxidized pellets, including compressive strength, reduction, and softening–melting behaviors, were systematically investigated.Mineralogical structures, elemental distribution, and pore size distribution were varied to analyze the mechanism of the effects.The results show that with an increase in SiO2 content from 3.51 wt%to 7.18 wt%, compressive strength decreases from 3150 N/pellet to 2100 N/pellet and reducibility decreases from 76.5% to 71.4%.The microstructure showed that pellets with high SiO2 content contained more magnetite in the mineralogical structures.Additionally, some liquid phases appeared, which hindered the continuous crystallization of hematite.Also, the softening–melting properties of the pellets clearly deteriorated as the SiO2 content increased.With increasing SiO2 content, the temperature range of the softening–melting zone decreased, and the maximum differential pressure and the comprehensive permeability index increased significantly.When acid oxidized pellets are used as the raw materials for blast furnace smelting, it should be combined with high basicity sinters to improve the softening–melting behaviors of the comprehensive charge.  相似文献   

6.
进行了西澳超细粒磁铁精矿分别配加国产磁铁精矿和巴西赤铁精矿制备氧化球团矿的实验研究.结果表明,以100%西澳超细磁铁精矿为原料制备氧化球团矿时,球团预热及焙烧性能较差,在预热温度为1050℃、预热时间20 min及焙烧温度1300℃、焙烧时间40 min的条件下,预热球团和焙烧球团矿抗压强度分别为每个502和2313 N.西澳超细粒磁铁精矿配加40%国产磁铁精矿或20%巴西赤铁精矿时,球团适宜预热温度由1050℃分别降低到950和975℃,适宜的焙烧温度由1300℃分别降低到1250和1280℃;而且焙烧球团矿的抗压强度分别提高到每个2746 N和每个2630 N.焙烧球团矿的微观结构研究表明:配加国产磁铁精矿后,焙烧球团矿中Fe2 O3晶粒发育优良,晶粒间互联程度提高,晶粒粗大,孔隙率低,固结更加紧密.配加20%巴西赤铁精矿时,焙烧球团矿中Fe2 O3晶粒基本连接成片,Fe2 O3晶体发育良好.优化配矿是改善西澳超细粒磁铁精矿球团矿预热及焙烧性能的有效途径.  相似文献   

7.
以南非铬铁矿为原料,以潞安煤粉为还原剂,进行了铬铁矿粉还原焙烧与磁选分离实验。借助扫描电镜、能谱分析和X射线衍射分析,对碳热还原和磁选分离过程中的物相变化进行了系统研究。实验发现,当温度低于1 200℃时,铬铁矿仅发生少量铁氧化物的还原,当温度高于1 300℃时,铬铁矿中铬氧化物开始被还原成碳化铬。随着还原反应的不断进行,铬铁尖晶石结构逐渐发生转变并被破坏。在本实验条件下,铬铁矿较为适宜的预处理温度为1 200℃,此温度下的还原产物磁选后,磁选产物几乎全部为金属铁,磁选所得尾渣的除铁率为46%,铬的收得率为80%,w(Cr2O3)/w(ΣFe O)值高达3.75。研究工作对于铬铁矿预处理工艺的设计开发及低品位铬铁矿的综合利用具有理论指导意义。  相似文献   

8.
Calcification roasting–acid leaching of high-chromium vanadium slag (HCVS) was conducted to elucidate the roasting and leaching behaviors of vanadium and chromium. The effects of the purity of CaO, molar ratio between CaO and V2O5 (n(CaO)/n(V2O5)), roasting temperature, holding time, and the heating rate used in the oxidation–calcification processes were investigated. The roasting process and mechanism were analyzed by X-ray diffraction (XRD), scanning electron microscopy (SEM), and thermogravimetry–differential scanning calorimetry (TG–DSC). The results show that most of vanadium reacted with CaO to generate calcium vanadates and transferred into the leaching liquid, whereas almost all of the chromium remained in the leaching residue in the form of (Fe0.6Cr0.4)2O3. Variation trends of the vanadium and chromium leaching ratios were always opposite because of the competitive reactions of oxidation and calcification between vanadium and chromium with CaO. Moreover, CaO was more likely to combine with vanadium, as further confirmed by thermodynamic analysis. When the HCVS with CaO added in an n(CaO)/n(V2O5) ratio of 0.5 was roasted in an air atmosphere at a heating rate of 10℃/min from room temperature to 950℃ and maintained at this temperature for 60 min, the leaching ratios of vanadium and chromium reached 91.14% and 0.49%, respectively; thus, efficient extraction of vanadium from HCVS was achieved and the leaching residue could be used as a new raw material for the extraction of chromium. Furthermore, the oxidation and calcification reactions of the spinel phases occurred at 592 and 630℃ for n(CaO)/n(V2O5) ratios of 0.5 and 5, respectively.  相似文献   

9.
含锌电炉粉尘配碳球团的冶金特性   总被引:3,自引:0,他引:3  
以某钢铁公司含锌电炉粉尘为原料,配入适当的无烟煤制成含碳球团,焙烧球团通过还原煤保护冷却至室温后进行化学分析·研究了1150℃~1300℃的范围内,温度、时间和内配煤量对锌、铁的还原速率以及球团抗压强度的影响·研究结果表明:锌、铁的还原率均随焙烧温度、焙烧时间以及内配煤量的增加而提高;抗压强度随焙烧温度、焙烧时间的增加而增高,但随内配煤量的增加出现极值点·焙烧球团最佳的工艺参数:焙烧时间为15min,内配煤量为13 04%,焙烧温度为1250℃·此时锌的还原率为98 43%,金属化率为94 51%,抗压强度为800 6N/球·  相似文献   

10.
The method of producing ferronickel at low temperature(1250–1400℃)has been applied since the 1950s at Nippon Yakin Kogyo,Oheyama Works,Japan.Limestone was used as an additive to adjust the slag composition for lowering the slag melting point.The ferronickel product was recovered by means of a magnetic separator from semi-molten slag and metal after water quenching.To increase the efficiency of magnetic separation,a large particle size of ferronickel is desired.Therefore,in this study,the influences of CaO,CaF2,and H3BO3 additives on the evolution of ferronickel particle at≤1250℃were investigated.The experiments were conducted at 900–1250℃with the addition of CaO,CaF2,and H3BO3.The reduction processes were carried out in a horizontal tube furnace for 2 h under argon atmosphere.At 1250℃,with the CaO addition of 10 wt%of the ore weight,ferronickel particles with size of 20μm were obtained.The ferronickel particle size increased to 165μm by adding 10 wt%CaO and 10 wt%CaF2.The addition of boric acid further increased the ferronickel particle size to 376μm,as shown by the experiments with the addition of 10 wt%CaO,10 wt%CaF2,and 10 wt%H3BO3.  相似文献   

11.
不同还原度铁氧化物球团在微波场中的升温及还原行为   总被引:2,自引:0,他引:2  
为深入了解氧化球团在微波竖炉中的升温以及煤基直接还原行为,实验采用铁精矿氧化球团作为基础原料,在气体还原剂条件下进行预还原,通过控制还原时间得到不同还原度铁氧化物球团,并从不同还原度铁氧化物球团的结构以及性能出发,研究它们在微波场中的升温性能及其还原变化.电磁性能测试结果表明,球团中的铁及其氧化物在微波场中的升温速度从快到慢依次为:Fe3O4,Fe2O3,Fe,FeO.微波加热还原结果分析及矿相结构观察显示,Fe2O3的深还原时间较长,物相多重转变,造成过程温度和还原气氛跟不上氧化物的还原反应速度;Fe3O4阶段升温速度快,结构松散,有助于进一步的还原,但进入浮士体(FeO的固溶体)阶段后孔隙率降低,升温速度骤降,造成还原的困难;在还原度达到66.90%时,表层以金属铁相为主,孔洞发达,吸波性能强,在气化反应有效进行的条件下,球团将会实现快速还原.  相似文献   

12.
研究了高钛球团的焙烧特征和固结行为.随着TiO2含量的增加,球团焙烧难度增大,当TiO2质量分数由10%增加至21%时,高钛球团所需预热时间由12 min延长至26 min以上,焙烧球强度由每个2486 N降低至每个1728 N.高钛球团由于FeTiO3含量高,导致氧化速度慢、预热球氧化程度低,不利于焙烧固结时钛赤铁矿固溶体晶粒的长大,使得球团固结强度差.通过添加NaOH结合润磨工艺增大颗粒表面能和反应活性,促进了固相扩散,并生成少量低熔点化合物,有利于再结晶过程的扩散迁移,使Ti富集在Fe2 TiO5中并促进钛赤铁矿晶粒长大,强化了高钛球团焙烧固结,可使预热时间缩短至16 min,球团强度提高至每个2141 N.  相似文献   

13.
The present investigation examines the viability of dolochar, a sponge iron industry waste material, as a reductant in the reduction roasting of iron ore slimes, which are another waste generated by iron ore beneficiation plants. Under statistically determined optimum conditions, which include a temperature of 900℃, a reductant-to-feed mass ratio of 0.35, and a reduction time of 30-45 min, the roasted mass, after being subjected to low-intensity magnetic separation, yielded an iron ore concentrate of approximately 64wt% Fe at a mass recovery of approximately 71% from the feed iron ore slime assaying 56.2wt% Fe. X-ray diffraction analyses indicated that the magnetic products contain magnetite and hematite as the major phases, whereas the nonmagnetic fractions contain quartz and hematite.  相似文献   

14.
Smelting separations of Hongge vanadium-bearing titanomagnetite metallized pellets (HVTMP) prepared by gas-based direct reduction were investigated, and the effects of smelting parameters on the slag/metal separation behaviors were analyzed. Relevant mechanisms were elucidated using X-ray diffraction analysis, FACTSAGE 7.0 calculations, and scanning electron microscopy observations. The results show that, when the smelting temperature, time, and C/O ratio are increased, the recoveries of V and Cr of HVTMP in pig iron are improved, the recovery of Fe initially increases and subsequently decreases, and the recovery of TiO2 in slag decreases. When the smelting CaO/SiO2 ratio is increased, the recoveries of Fe, V, and Cr in pig iron increase and the recovery of TiO2 in slag initially increases and subsequently decreases. The appropriate smelting separation parameters for HVTMP are as follows: smelting temperature of 1873 K; smelting time of 30–50 min; C/O ratio of 1.25; and CaO/SiO2 ratio of 0.50. With these optimized parameters (smelting time: 30 min), the recoveries of Fe, V, Cr, and TiO2 are 99.5%, 91.24%, 92.41%, and 94.86%, respectively.  相似文献   

15.
An innovative method for recovering valuable elements from vanadium-bearing titanomagnetite is proposed. This method involves two procedures:low-temperature roasting of vanadium-bearing titanomagnetite and water leaching of roasting slag. During the roasting process, the reduction of iron oxides to metallic iron, the sodium oxidation of vanadium oxides to water-soluble sodium vanadate, and the smelting separation of metallic iron and slag were accomplished simultaneously. Optimal roasting conditions for iron/slag separation were achieved with a mixture thickness of 42.5 mm, a roasting temperature of 1200℃, a residence time of 2 h, a molar ratio of C/O of 1.7, and a sodium carbonate addition of 70wt%, as well as with the use of anthracite as a reductant. Under the optimal conditions, 93.67% iron from the raw ore was recovered in the form of iron nugget with 95.44% iron grade. After a water leaching process, 85.61% of the vanadium from the roasting slag was leached, confirming the sodium oxidation of most of the vanadium oxides to water-soluble sodium vanadate during the roasting process. The total recoveries of iron, vanadium, and titanium were 93.67%, 72.68%, and 99.72%, respectively.  相似文献   

16.
研究了新型炉料酸性含钛护炉球团矿的焙烧工艺及固结机理,结果表明利用钒钛磁铁精矿和普通磁铁精矿的混合矿在预热和焙烧条件分别为950℃,15min和1200℃,15min时制取的酸性含钛护炉氧化球团矿,其品位为TFe58.56%、TiO  相似文献   

17.
利用自制的密闭氮化系统研究不同制备条件的锰球的氮化反应.考察锰粉粒度、成球压力和黏结剂添加量对氮化反应的影响,并测量锰球氮化过程中实时增重和温度曲线.实验结果表明:锰粉粒度由16 ~40目变成60 ~ 80目时,球心温度到达峰值的时间由164 s缩短为101s,球心最大温升由147℃增至233℃,氮化1h的转化率由90.81%增至93.64%;成球压力由266 MPa增至443 MPa,球心峰值温度将提前89 s到达,球心最大温升将提高22℃,氮化1h的转化率由91.59%增至94.92%;黏结剂添加量由1 g增至3 g,氮化1h的转化率由92.90%降至89.80%;正态对数分布的概率密度函数可用来近似拟合转化速率与时间的关系.  相似文献   

18.
将高铬型钒钛磁铁精矿、还原剂煤粉和黏结剂按一定比例配料、混匀、模压成型后进行直接还原,研究了煤种、碳氧摩尔比(COR)、还原温度、还原时间和添加剂等因素对高铬型钒钛磁铁精矿还原产物金属化率的影响,采用X射线衍射对还原产物进行物相分析.结果表明:以无烟煤为还原剂,碳氧摩尔比1.2、还原温度1 350℃、还原时间60 min的条件下,未采用添加剂时产物金属化率最高可达89.80%;在碳氧摩尔比1.2、还原温度1 250℃、保温时间30 min、添加质量分数为3%Ca F2条件下,还原产物金属化率达85.27%,有效降低了还原过程的能耗.还原温度低于1 250℃时,产物主要物相为金属铁,同时还有少量的Fe2O3,Fe3O4,Fe3C,Fe0.5M g0.5Ti2O5和Ti O2;1 300℃时,还原产物中出现Fe2VO4;高于1 350℃时,还原产物中出现了(Fe,Cr)和Ti3O5.  相似文献   

19.
MHA黏结剂在钒钛磁铁矿氧化球团制备中的应用   总被引:1,自引:0,他引:1  
应用已发明的MHA黏结剂替代膨润土制备钒钛磁铁矿氧化球团,获得质量优良的高炉冶炼原料。研究表明:当MHA用量为0.25%,在预热温度950℃,预热时间10 min,焙烧温度1 250℃,焙烧时间10 min的条件下,获得的预热球团抗压强度为522 N/个,焙烧球团抗压强度为3 702 N/个。与2.0%膨润土球团矿比较,MHA成品球团的抗压强度略低,而TFe品位明显提高1.11%。2种黏结剂球团矿的还原性能指标接近。MHA球团黏结剂在氧化球团矿生产中具有良好的应用前景。  相似文献   

20.
在相同还原焙烧条件和等量添加剂下,系统研究了煤基还原剂中的挥发分对鄂西高磷鲕状赤铁矿在直接还原焙烧过程中对含铁和磷矿物的影响.通过XRD及SEM分析对煤基中挥发分的作用机理进行初步阐述.研究结果表明,煤的挥发分有利于铁回收率的提高,对降低铁产品中磷不利.经过类高温干馏的两种煤种的原煤作为还原剂时,焙烧产品新生成脉石矿物不同,并且原矿中鲕绿泥石和石英等会与含铁矿物发生复杂的化学反应,原矿中含磷矿物大部分仍以氟磷灰石形式存在,但少部分含磷矿物仍会参与还原焙烧的反应.  相似文献   

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