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Extracting the core indicators of pulverized coal for blast furnace injection based on principal component analysis 被引量:4
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作者 Hong-wei Guo Bu-xin Su +2 位作者 Jian-liang Zhang Meng-yi Zhu Jian Chang 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2013年第3期246-252,共7页
An updated approach to refining the core indicators of pulverized coal used for blast furnace injection based on principal component analysis is proposed in view of the disadvantages of the existing performance indica... An updated approach to refining the core indicators of pulverized coal used for blast furnace injection based on principal component analysis is proposed in view of the disadvantages of the existing performance indicator system of pulverized coal used in blast furnaces. This presented method takes into account all the performance indicators of pulverized coal injection, including calorific value, igniting point, combustibility, reactivity, flowability, grindability, etc. Four core indicators of pulverized coal injection are selected and studied by using principal component analysis, namely, comprehensive combustibility, comprehensive reactivity, comprehensive flowability, and comprehensive grindability. The newly established core index system is not only beneficial to narrowing down current evaluation indices but also effective to avoid previous overlapping problems among indicators by mutually independent index design. Furthermore, a comprehensive property indicator is introduced on the basis of the four core indicators, and the injection properties of pulverized coal can be overall evaluated. 展开更多
关键词 blast furnaces pulverized coal fuel injection principal component analysis INDICATORS
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A novel model for cost performance evaluation of pulverized coal injected into blast furnace based on effective calorific value 被引量:4
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作者 徐润生 张建良 +3 位作者 左海滨 李克江 宋腾飞 邵久刚 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第10期3990-3998,共9页
The combustion process of pulverized coal injected into blast furnace involves a lot of physical and chemical reactions. Based on the combustion behaviors of pulverized coal, the conception of coal effective calorific... The combustion process of pulverized coal injected into blast furnace involves a lot of physical and chemical reactions. Based on the combustion behaviors of pulverized coal, the conception of coal effective calorific value representing the actual thermal energy provided for blast furnace was proposed. A cost performance evaluation model of coal injection was built up for the optimal selection of various kinds of coal based on effective calorific value. The model contains two indicators: coal effective calorific value which has eight sub-indicators and coal injection cost which includes four sub-indicators. In addition, the calculation principle and application of cost performance evaluation model in a Chinese large-scale iron and steel company were comprehensively introduced. The evaluation results finally confirm that this novel model is of great significance to the optimal selection of blast furnace pulverized coal. 展开更多
关键词 高炉喷吹煤粉 效益评价模型 燃烧热值 成本效益 物理化学反应 大型钢铁企业 燃烧过程 燃烧特性
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Combustion performance of pulverized coal and corresponding kinetics study after adding the additives of Fe_(2)O_(3) and CaO 被引量:3
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作者 Qiangjian Gao Guopeng Zhang +2 位作者 Haiyan Zheng Xin Jiang Fengman Shen 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2023年第2期314-323,共10页
Combustion performance of pulverized coal(PC)in blast furnace(BF)process is regarded as a criteria parameter to assess the prop-er injection dosage of PC.In this paper,effects of two kinds of additives,Fe_(2)O_(3) and... Combustion performance of pulverized coal(PC)in blast furnace(BF)process is regarded as a criteria parameter to assess the prop-er injection dosage of PC.In this paper,effects of two kinds of additives,Fe_(2)O_(3) and CaO,on PC combustion were studied using the thermo-gravimetric method.The results demonstrate that both the Fe_(2)O_(3) and CaO can promote combustion performance index of PC including igni-tion index(C_(i)),burnout index(D_(b)),as well as comprehensive combustibility index(S_(n)).The S_(n) increases from 1.37×10^(−6) to 2.16×10^(−6)%2·min^(−2)·℃^(−3) as the Fe_(2)O_(3) proportion increases from 0 to 5.0wt%.Additionally,the combustion kinetics of PC was clarified using the Coats-Redfern method.The results show that the activation energy(E)of PC combustion decreases after adding the above additives.For instance,the E decreases from 56.54 to 35.75 kJ/mol when the Fe_(2)O_(3) proportion increases from 0 to 5.0wt%,which supports the improved combustion per-formance.Moreover,it is uneconomic to utilize pure Fe_(2)O_(3) and CaO in production.Based on economy analysis,we selected the iron-bearing dust(IBD)which contains much Fe_(2)O_(3) and CaO component to investigate,and got the same effects.Therefore,the IBD is a potential option for catalytic PC combustion in BF process. 展开更多
关键词 pulverized coal combustion performance blast furnace KINETICS ADDITIVES
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Properties and Structural Optimization of Pulverized Coal for Blast Furnace Injection 被引量:10
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作者 JIANG Hai-bing CHANG Jian LI Jing 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2011年第3期6-12,共7页
The properties of mixed coals were studied on the basis of known various properties of the injecting coals in the treatise.The structure of the injecting coals was optimized and put into practical application.It was f... The properties of mixed coals were studied on the basis of known various properties of the injecting coals in the treatise.The structure of the injecting coals was optimized and put into practical application.It was found that the ignition point was lowered with mixed coals,however,both combustibility and grindability were improved,and explosibility of the mixed coals were decreased as well.Hence,mixed coals injection not only can improve the amount of the injecting coals greatly,but also improve the economical and technical indexes of the blast furnace. 展开更多
关键词 blast furnace pulverized coal PROPERTY INJECTION
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3D model study of coal/coke combustion in a blast furnace effects of coal properties
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作者 Peter AUSTIN Paul ZULLli 《Baosteel Technical Research》 CAS 2010年第S1期14-,共1页
A three-dimensional mathematical model of the combustion of pulverized coal and coke has been developed.The model is applied to the blowpipe-tuyere-raceway-coke bed region in an ironmaking blast furnace in one computa... A three-dimensional mathematical model of the combustion of pulverized coal and coke has been developed.The model is applied to the blowpipe-tuyere-raceway-coke bed region in an ironmaking blast furnace in one computational domain,which includes two parts:pulverized coal combustion model in the blowpipe-tuyere-raceway cavity and the coal/coke combustion model in the surrounding coke bed.The effects of coal properties are examined comprehensively,in terms of coal burnout and gas species distributions.The results indicate that using a coal of fine particle size or high VM content could improve burnout and would affect the gas composition considerably.The burnout is examined in two ways:compared with burnout along tuyere axis,burnout over the raceway surface is a more sensitive and sensible parameter to describe the amount of unburnt char entering the coke bed.The model is useful for examining the flow-thermo-chemical characteristics of the pulverized coal injection (PCI) process under various conditions in a blast furnace. 展开更多
关键词 pulverized coal injection mathematical modelling blast furnace
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Evaluation of Four Coals for Blast Furnace Pulverized Coal Injection 被引量:13
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作者 Sh Raygan H Abdizadeh A Eskandari Rizi 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2010年第3期8-12,20,共6页
One of the effective methods of reducing coke consumption is pulverized coal injection. The most important problems encountered in this method are reduced permeability, unburned and high ash content. To select the bes... One of the effective methods of reducing coke consumption is pulverized coal injection. The most important problems encountered in this method are reduced permeability, unburned and high ash content. To select the best coal for injection, suitable tests can be used. Therefore, experiments such as proximate and ultimate analysis, Rock- Eval and combustion tests were performed on four kinds of coals from different mines, including Sarakhs, Sangrood, Karmozd, and Tabas. The results of proximate and ultimate analysis indicated that although the sulfur content and ash content of selected coals were a little high, they were suitable for coal injection. The results of combustion experiments and Rock-Eval tests showed that Karmozd coal was the best one to be injected into blast furnace. The result indicated that the mixing of coals could improve the combustion properties of pulverized coals. 展开更多
关键词 pulverized coal blast furnace non-coking coal
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Gas-Particle Flow and Combustion Characteristics of Pulverized Coal Injection in Blast Furnace Raceway 被引量:11
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作者 ZHANG Sheng-fu BAI Chen-guang WEN Liang-ying QIU Gui-bao LU Xue-wei 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2010年第10期8-12,共5页
The two-dimensional steady-state discrete phase mathematical model is developed to analyze gas-particle flow and combustion characteristics of coal particles, as well as components concentration and temperature distri... The two-dimensional steady-state discrete phase mathematical model is developed to analyze gas-particle flow and combustion characteristics of coal particles, as well as components concentration and temperature distribu- tion of coal gas in the process of pulverized coal injection of blast furnace raceway. The results show that a great deal of coal gas discharges on the top of raceway away from the tuyere, and the residence time of coal particles in the re- gion of blowpipe and tuyere is 20 ms or so and 50 ms when it reaches raceway boundary. The pressure is the highest at the bottom of raceway and the maximal temperature is about 2 423 K. The char combustion is mainly carried out in the raceway and the maximum of char burn-out rate attains 3× 10-4 kg/s. 展开更多
关键词 blast furnaces raceway pulverized coal injection gas-particle flow COMBUSTION
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The Advancement in Intensified Smelting Technology of Baosteel Blast Furnace
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作者 LinChengcheng ZhangLonglai 《工程科学(英文版)》 2005年第2期52-56,共5页
Baosteel always aims at becoming one of the most profitable enterprises in the world, enjoying international competence, benchmarking with the world advanced level,pursuing innovation sustainable development. Recent y... Baosteel always aims at becoming one of the most profitable enterprises in the world, enjoying international competence, benchmarking with the world advanced level,pursuing innovation sustainable development. Recent years, Baosteel Iron-making Department has caught the opportunity of increasing steel demand; conquering disadvantages such as changeable up-stream market, fuel and raw material’s tight supplies and lower quality, etc. In our department, Major technical problems have been overcome, blast furnace intensified smelting technology improved, the cost of molten iron under control, blast furnace long-life span control technology made breakthrough, and Baosteel’s ironmaking capacity improved further. 展开更多
关键词 高炉 强化冶炼 生产率 粉煤 注射速率
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Pulverized Coal Combustion of Nitrogen Free Blast Furnace 被引量:6
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作者 ZHANG Jian-liang WANG Guang-wei +2 位作者 SHAO Jiu-gang CHEN Yong-xing YANG Tian-jun 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2013年第3期1-5,共5页
The efficiency of coal combustion is an important factor for the blast furnace process.The influence of low xO/xC on coal combustion performance under nitrogen free blast furnace condition was researched through the s... The efficiency of coal combustion is an important factor for the blast furnace process.The influence of low xO/xC on coal combustion performance under nitrogen free blast furnace condition was researched through the self-developed pulverized coal burning device.The results show that the coal combustion rate reduces with xO/xC decreasing,and the combustion rate of bituminous coal is higher than that of anthracite.The coal combustion rate ascends with the rise of volatile matter,but when volatile matter of pulverized coal is more than 18%,the combustion rates will not increase correspondingly.Small amount of CaCO3 and CO2 additions can promote coal combustion,and the effect of CaCO3 is more apparent,which can increase the pulverized coal combustion rate by 15%-18% or so. 展开更多
关键词 nitrogen free blast furnace xO/xC pulverized coal combustion
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Interaction mechanism between coal combustion products and coke in raceway of blast furnaces 被引量:1
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作者 Chong Zou Liang-ying Wen +1 位作者 Jun-xue Zhao Rui-meng Shi 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2017年第1期8-17,共10页
The interaction mechanism between the combustion products of pulverized coal injected and coke in the raceway of blast furnace was studied through thermodynamic calculation and experiments.The results indicated that a... The interaction mechanism between the combustion products of pulverized coal injected and coke in the raceway of blast furnace was studied through thermodynamic calculation and experiments.The results indicated that additives significantly affected the melting property of coal ash in high temperature zone.Although the unburnt char,raw coal ash,and catalyzed coal ash failed to wet the coke surface,the wettability of the catalyzed coal ash on the coke was greater than that of the raw coal ash.Since the unburnt char had weak reaction with the coke surface,it showed little influence on the surface morphology of the coke.The interaction between the raw coal ash and the coke gave rise to the increase in the pore size on the coke surface.However,the raw coal ash only affected the coke surface and the entrances of the pores owing to its poor fluidity.After being melted,the catalyzed coal ash was expected to immerge into the inside part of the coke and then react with the coke,resulting in an expansion and increase of coke cavities.The raw coal ash and the unburnt char reduced the coke reactivity,while the catalyzed coal ash improved the coke reactivity.Thereinto,the coal ash containing Fe2O3 exhibited a larger influence on the reactivity than that containing CaO. 展开更多
关键词 coal COKE Tuyere raceway blast furnace pulverized coal injection Interaction mechanism
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Comparison of semi-coke with traditional pulverized coal injection and iron ore sintering fuels based on chemical structure and combustion behavior 被引量:1
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作者 Jiang-yong He Chong Zou +3 位作者 Jun-xue Zhao Dong Liang Jia-le Xi Cheng Ma 《Journal of Iron and Steel Research(International)》 SCIE EI CSCD 2022年第5期725-740,共16页
Substantial semi-coke has been produced through the industrialized low-temperature pyrolysis process,which has great potential as an alternative fuel for pulverized coal injection(PCI)and iron ore sintering.X-ray diff... Substantial semi-coke has been produced through the industrialized low-temperature pyrolysis process,which has great potential as an alternative fuel for pulverized coal injection(PCI)and iron ore sintering.X-ray diffraction,Raman spectroscope,and thermal analysis were used to compare the carbon chemical structure and combustion reactivity of semi-coke,pulverized coal,and coke breeze.The results show that the average volatile matter content in 46 types of semi-cokes is 8.94 wt.%.The fluctuation range of the characteristic parameters of the semi-coke chemical structure is d_(002)=(0.352–0.379)nm and A_(D1)/A_(G)=(2.51–7.92),while the fluctuation range of the characteristic parameters of pulverized coal is d_(002)=(0.348–0.373)nm and A_(D1)/A_(G)=(1.71–9.03)(where d_(002)means the interlayer spacing between the aromatic planes,and A_(D1)/A_(G)is an index that characterizes the degree of disorder of the char structure through the area ratio of the defect peak band D1 to the perfect graphite peak band G);the overlap between these ranges is relatively high.Contrarily,the fluctuation range of the characteristic parameters of coke breeze is d_(002)=(0.343–0.350)nm and A_(D1)/A_(G)=(0.75–2.51),which is markedly different from that of semi-coke.Semi-coke combustion reactivity is close to that of pulverized coal,but considerably better than that of coke breeze.In terms of chemical structure and combustion reactivity,semi-coke can be used as an alternative fuel for PCI;however,when used for sintering alternative fuel,matching of the heat supply and demand in the later sintering stage must be scrupulously analyzed. 展开更多
关键词 SEMI-COKE COKE blast furnace pulverized coal injection COMBUSTION
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Kinetic study on co-combustion of pulverized anthracite and bituminite for blast furnace injection
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作者 Li-chun Yang Qing-hai Pang +3 位作者 Zhi-jun He Jun-hong Zhang Wen-long Zhan Nan Lü 《Journal of Iron and Steel Research(International)》 SCIE EI CSCD 2021年第8期949-964,共16页
Combustion behavior of single pulverized coals(PCs)and co-combustion characteristics of anthracite(AT)and bituminite(BT)blends with 20 wt.%volatile were studied by thermogravimetric experiments.The results indicated t... Combustion behavior of single pulverized coals(PCs)and co-combustion characteristics of anthracite(AT)and bituminite(BT)blends with 20 wt.%volatile were studied by thermogravimetric experiments.The results indicated that reaction characteristics of PCs were closely related to their functional group structure and consequently,the pyrolysis of PCs with highly active functional groups initiated at lower temperatures.It was also noticed that the discrepancy of functional group structures between AT and BT might impair their interaction during combustion.The early exhaust of BT at low temperatures would possibly lead to an independent combustion of volatile and residual carbon and eventually the inefficient combustion of their blend.However,the mixing of AT and BT with similar functional group structures was more likely to achieve blends with superior combustion property.Simultaneously,non-isothermal kinetic analysis mani-fested that the combustion of blends followed random pore model(RPM),and therefore,the parameters calculated by RPM were more accurate to describe their combustion behavior.The kinetic calculation results showed that the activation energy required for decomposition of blends in early combustion stage was much lower owing to the excellent activity of volatile,while residual carbon with stable aromatic hydrocarbon demanded more energy to initiate its combustion. 展开更多
关键词 blast furnace pulverized coal coal blend Non-isothermal combustion Kinetic analysis
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Behavior of liquid passing through deadman:influence of slag/iron ratio and unburned pulverized coal 被引量:1
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作者 Lei Zhang Jian-liang Zhang +3 位作者 Xiang-yu Hu Zheng-jian Liu Heng-bao Ma Ke-xin Jiao 《Journal of Iron and Steel Research(International)》 SCIE EI CSCD 2021年第9期1095-1104,共10页
The ability of a blast furnace hearth liquid(iron and slag)passing through deadman characterizes the activity of the blast furnace hearth.To explore the influence of various factors on the static holdup rate of liquid... The ability of a blast furnace hearth liquid(iron and slag)passing through deadman characterizes the activity of the blast furnace hearth.To explore the influence of various factors on the static holdup rate of liquid in the process of passing through the deadman,a physical transport model of liquid passing through the deadman was firstly established.Then,a self-designed experimental device was used to simulate the process,and the influences of slag/iron ratios(250–450 kg/t)and unburned coal content(0%–9%)on the static holdup rate were studied.The experimental results indicate that with the slag/iron ratio increasing,the behavior of liquid passing through the coke packed bed gets much more difficult,and the static holdup rate increases.As the content of unburned pulverized coal(UPC)increases,the static holdup rate decreases first and then rises.This is caused by the dual effects of UPC.On the one hand,UPC can promote the carburizing reaction of unsaturated molten iron,thereby improving the fluidity of molten iron and reducing the static holdup rate.On the other hand,when the content of UPC rises to a certain level,it will be regarded as a kind of solid particle which will increase the liquid viscosity,causing an increase in the static holdup rate.Moreover,the liquid and coke will present interfacial chemical reactions when the liquid flows through the coke packed bed.And the Si-containing iron droplets at the slag–coke interface,generated by the reaction of SiO_(2)with C in the coke,can improve the interface wettability by reducing the interface wetting angle and increase the basicity of slag by consuming SiO_(2),thus improving the fluidity of the liquid and reducing the static holdup rate. 展开更多
关键词 blast furnace HEARTH Liquid holdup Slag/iron ratio Unburned pulverized coal
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Thermal analysis and kinetic modeling of pulverized coal combustion accompanied with coke breeze
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作者 Peng Han Wen-long Zhan +5 位作者 Hao-bin Zhu Lei Gao Ying-chang Yu Zhi-jun He Jun-hong Zhang Qing-hai Pang 《Journal of Iron and Steel Research(International)》 SCIE EI CSCD 2021年第7期809-817,共9页
Pulverized coal injection technique has been widely used as a means of reducing coke consumption during ironmaking process.Owing to the increasing shortage of fossil fuels,other substitutes such as biomass,plastic,and... Pulverized coal injection technique has been widely used as a means of reducing coke consumption during ironmaking process.Owing to the increasing shortage of fossil fuels,other substitutes such as biomass,plastic,and waste tires have been studied in recent years.Coke breeze as one of the by-products of coking industries has been investigated as a substitute for partial pulverized coals.The combustion characteristics of blended fuels were estimated based on the flammability index C and the combustion characteristic index S.For different coke breeze additions,the combustion was divided into two stages,and the apparent kinetic parameters of the two stages were estimated by fitting the experimental data to the shrinkage reaction model and shrinkage diffusion model,respectively.Results showed that with the increase in coke breeze addition from 15% to 60%,the indexes C and S decrease,and the activation energy of the first stage remains almost constant,while that of the last stage increases from 16.89 up to 67.18 kJ mol^(-1),which indicates that adding coke breeze decreases the combustion efficiency of pulverized coal.Comparing the combustion and kinetic parameters under different coke breeze addition conditions,the optimal addition amount is suggested to be within 15%. 展开更多
关键词 blast furnace pulverized coal injection Coke breeze COMBUSTION Kinetic model
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包钢高炉喷吹煤粉利用率的测定
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作者 杨帆 白晓光 +4 位作者 于恒亮 郑占斌 张建良 党晗 徐润生 《炼铁》 CAS 北大核心 2024年第1期63-67,共5页
利用透射光偏光显微镜,对包钢高炉重力除尘灰、旋风除尘灰和布袋除尘灰中的碳素种类进行定性和定量分析,以测定高炉喷吹煤粉利用率。测定结果表明,3号高炉喷吹煤粉利用率上下限分别为89.03%和79.46%,4号高炉的喷吹煤粉利用率上下限分别... 利用透射光偏光显微镜,对包钢高炉重力除尘灰、旋风除尘灰和布袋除尘灰中的碳素种类进行定性和定量分析,以测定高炉喷吹煤粉利用率。测定结果表明,3号高炉喷吹煤粉利用率上下限分别为89.03%和79.46%,4号高炉的喷吹煤粉利用率上下限分别为91.51%和84.14%。认为,3号高炉和4号高炉所使用喷吹煤粉来自同一系列,因此可以通过采取稳定煤粉粒度波动、优化富氧鼓风和提高入炉焦炭强度等措施,来提高喷吹煤粉利用率。 展开更多
关键词 高炉 煤比 喷吹煤粉利用率 除尘灰 未燃煤粉
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国内某高炉喷吹煤粉的性能评价
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作者 孙野 王鹏飞 +5 位作者 张作良 陈韧 刘研 孙瑜 李玲玲 李明 《辽宁科技学院学报》 2024年第1期18-20,共3页
高炉喷吹煤粉的优点主要包括显著降低炼铁焦比及生产成本、有效调节高炉热制度、喷吹煤粉反应过程中提高煤气的穿透扩散能力和还原能力、缓解焦煤需求量、减少炼焦投资和环境污染等。为进一步优化高炉喷吹燃料结构和降低炼铁成本,文章... 高炉喷吹煤粉的优点主要包括显著降低炼铁焦比及生产成本、有效调节高炉热制度、喷吹煤粉反应过程中提高煤气的穿透扩散能力和还原能力、缓解焦煤需求量、减少炼焦投资和环境污染等。为进一步优化高炉喷吹燃料结构和降低炼铁成本,文章对国内某高炉喷吹使用的煤粉的煤质特性进行了深入研究。结果表明:1#煤为烟煤,固定碳含量低、挥发分高,氢元素含量在所试验煤粉中最高,灰分中的CaO和MgO的含量之和最高,超过24%;其他煤种为无烟煤;4#煤的可磨性指数低于40;需要控制其在混煤中的配比。 展开更多
关键词 高炉 喷吹煤粉 合理配比
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唐钢2#高炉提煤降焦生产实践
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作者 客海滨 王丽丽 +2 位作者 梁为秋 董国强 陈永星 《甘肃冶金》 2024年第2期35-39,共5页
总结分析了2#高炉提高煤比的措施。通过采取稳定炉料结构、持续改善原燃料质量、碱金属、锌的控制和合理的高炉基本制度等措施,煤比大幅提升,2023年5月、6月煤比均达到170kg/t·Fe。
关键词 高炉 原燃料 煤比 炉料结构
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试论高炉燃料替代的降碳路径
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作者 周翔 白永强 《炼铁》 CAS 北大核心 2024年第1期12-15,共4页
为有效降低高炉工序的CO_(2)排放量,向高炉喷吹气体、液体或固体燃料来替代焦炭受到广泛的关注。以我国6家典型钢铁企业7座1800m^(3)级高炉2021年的主要技术经济指标为基础,重点分析了燃料比和煤比对高炉CO_(2)排放量的作用和影响。结... 为有效降低高炉工序的CO_(2)排放量,向高炉喷吹气体、液体或固体燃料来替代焦炭受到广泛的关注。以我国6家典型钢铁企业7座1800m^(3)级高炉2021年的主要技术经济指标为基础,重点分析了燃料比和煤比对高炉CO_(2)排放量的作用和影响。结果表明,6家典型钢铁企业高炉CO_(2)排放量约为1.419~1.595Vt,影响高炉CO_(2)排放量相关性最强的因素且最重要的指标是燃料比,而单纯提高喷煤比的技术手段并不是降低高炉CO_(2)排放量的决定性因素。因此,通过优化喷吹燃料的种类,以氢代碳,实现有效替代,才是降低高炉CO_(2)排放量的有效途径。 展开更多
关键词 高炉 CO_(2)排放量 燃料比 喷煤比 燃料替代
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核桃壳炭与煤粉混合燃烧特性及协同作用研究
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作者 左俊芳 付洋洋 +4 位作者 宋嘉琪 邓超 徐步征 田毅豪 高艳宏 《四川冶金》 CAS 2024年第3期27-30,45,共5页
在“双碳”目标积极推进背景下,节能减排已经成为当前钢铁工业绿色低碳发展的首要目标。生物质作为可再生碳源,应用于高炉冶炼可有效降低高炉冶炼过程的CO_(2)排放。本文选取农业生物质核桃壳为原料,深入研究高温条件下煤粉和核桃壳炭... 在“双碳”目标积极推进背景下,节能减排已经成为当前钢铁工业绿色低碳发展的首要目标。生物质作为可再生碳源,应用于高炉冶炼可有效降低高炉冶炼过程的CO_(2)排放。本文选取农业生物质核桃壳为原料,深入研究高温条件下煤粉和核桃壳炭的热化学行为,研究不同比例混合燃料的燃烧特性,探讨煤粉与核桃壳炭共燃的协同作用,确定最优混合比例范围。结果表明,核桃壳炭的加入可以改善高炉喷吹煤粉的燃烧性能,核桃壳炭与煤粉的最佳掺混比例为25%,此时混合燃料的综合燃烧性能指数为6.253×10^(-10)(min^(-1)·℃^(-3));可燃性指数为3.715×10^(-6)(min^(-1)·℃^(-2))。核桃壳炭的掺入,有利于高炉生产实现节能减排,推动废弃物资源化处理和钢铁行业绿色低碳发展。 展开更多
关键词 高炉 生物质 核桃壳炭 煤粉 燃烧性能
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新田煤矿选煤厂无烟煤加工优质冶金烧结煤的经济效益分析
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作者 申雷丹 聂丹 《煤炭加工与综合利用》 CAS 2024年第5期47-49,共3页
阐述了烧结用煤灰分增加对钢铁企业生产的影响,并对新田煤矿选煤厂利用现有选煤工艺,多出优质烧结用煤的经济效益进行了分析,提出多出烧结煤有利于无烟煤资源的更合理利用,同时可提高企业的经济效益。
关键词 选煤厂 无烟煤 末精煤 高炉喷吹 冶金烧结 洗选加工
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