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Ultrafast Iron-Making Method: Carbon Combustion Synthesisfrom Carbon-Infiltrated Goethite Ore

机译:超快制铁方法:碳燃烧合成来自渗碳针铁矿

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摘要

Carbon-infiltrated iron ores were prepared from a coal-tar solution and selected calcined iron sources (i.e., goethite (FeOOH) ore, high-grade hematite ore, and Fe2O3 reagent grain). A several hundred micrometer thick carbon layer was deposited on the surface of all iron sources. Because the tar solution successfully penetrated into its nanopores, only goethite ore possessed a significant amount of carbon in its interior nanopores. The carbon-infiltrated ores were heated rapidly in an oxygen atmosphere in the combustion synthesis experiments. Carbon combustion occurred at the ore surface, with the ore temperature increasing suddenly during the experiments. Fast reduction to metallic iron was observed only in the carbon-infiltrated goethite ore, regardless of the oxygen atmosphere. Close contact between the goethite ore and the carbon in its nanoporous interior facilitated the fast reduction. The apparent reduction reaction of goethite ore is akin to a direct reduction reaction (i.e., FeOx + C → FeOx–1 + CO).
机译:由煤焦油溶液和选定的煅烧铁源(即针铁矿(FeOOH)矿石,高级赤铁矿矿石和Fe2O3试剂颗粒)制备渗碳铁矿石。数百微米厚的碳层沉积在所有铁源的表面上。因为焦油溶液成功渗透到其纳米孔中,所以仅针铁矿矿石在其内部纳米孔中具有大量的碳。在燃烧合成实验中,将碳渗透的矿石在氧气气氛中快速加热。碳燃烧发生在矿石表面,实验过程中矿石温度突然升高。不论氧气气氛如何,仅在渗碳针铁矿中观察到快速还原为金属铁。针铁矿与纳米孔内部碳之间的紧密接触有助于快速还原。针铁矿矿石的表观还原反应类似于直接还原反应(即FeOx + C→FeOx–1 + CO)。

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