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日本环保炼铁工艺COURSE50新技术 被引量:17
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作者 魏侦凯 郭瑞 谢全安 《华北理工大学学报(自然科学版)》 CAS 2018年第3期26-30,共5页
简介了COURSE50技术研发的背景和内容,以及与其配套的支持技术,其中包括氢气还原炼铁技术、高反应性焦炭的生产技术、CCS技术等。这些项目技术的研发对钢铁业的发展以及全球气候的改善具有重要的意义。
关键词 course50 氢气还原 CO2的分离回收 试验高炉
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Effect of FeO concentration in sinter iron ore on reduction behavior in a hydrogen-enriched blast furnace 被引量:2
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作者 Ko-ichiro Ohno Takayuki Maeda +1 位作者 Kazuya Kunitomo Masashi Hara 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2022年第10期1820-1829,共10页
Japan started the national project“COURSE 50”for CO_(2) reduction in the 2000s.This project aimed to establish novel technologies to reduce CO_(2) emissions with partially utilization of hydrogen in blast furnace-ba... Japan started the national project“COURSE 50”for CO_(2) reduction in the 2000s.This project aimed to establish novel technologies to reduce CO_(2) emissions with partially utilization of hydrogen in blast furnace-based ironmaking by 30%by around 2030 and use it for practical applications by 2050.The idea is that instead of coke,hydrogen is used as the reducing agent,leading to lower fossil fuel consumption in the process.It has been reported that the reduction behavior of hematite,magnetite,calcium ferrite,and slag in the sinter is different,and it is also considerably influenced by the sinter morphology.This study aimed to investigate the reduction behavior of sinters in hydrogen enriched blast furnace with different mineral morphologies in CO-CO_(2)-H2 mixed gas.As an experimental sample,two sinter samples with significantly different hematite and magnetite ratios were prepared to compare their reduction behaviors.The reduction of wustite to iron was carried out at 1000,900,and 800℃ in a CO-CO_(2)-H2 atmosphere for the mineral morphology-controlled sinter,and the following findings were obtained.The reduction rate of smaller amount of FeO led to faster increase of the reduction rate curve at the initial stage of reduction.Macro-observations of reduced samples showed that the reaction proceeded from the outer periphery of the sample toward the inside,and a reaction interface was observed where reduced iron and wustite coexisted.Micro-observations revealed three layers,namely,wustite single phase in the center zone of the sample,iron single phase in the outer periphery zone of the sample,and iron oxide-derived wustite FeO and iron,or calcium ferritederived wustite'FeO'and iron in the reaction interface zone.A two-interface unreacted core model was successfully applied for the kinetic analysis of the reduction reaction,and obtained temperature dependent expressions of the chemical reaction coefficients from each mineral phases. 展开更多
关键词 HYDROGEN reduction WUSTITE HEMATITE MAGNETITE calcium ferrite two-interface unreacted core model course50
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