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首页> 外文期刊>Journal of Materials Research and Technology >Injection of H 2-rich carbonaceous materials into the blast furnace: devolatilization, gasification and combustion characteristics and effect of increased H 2–H 2O on iron ore pellets reducibility
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Injection of H 2-rich carbonaceous materials into the blast furnace: devolatilization, gasification and combustion characteristics and effect of increased H 2–H 2O on iron ore pellets reducibility

机译:注射H 2 -RICH碳质材料进入高炉:脱挥发化,气化和燃烧特性和增加H 2 -H 2 O.在铁矿石颗粒上还原性

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Increasing the share of hydrogen in reduction of iron oxide in the blast furnace iron making will directly reduce the share of blast furnace greenhouse gas emissions. In the present study, injection of H2-rich biomass and plastic materials was studied in terms of its devolatilization, gasification and combustion characteristics. The released gases were identified using mass spectroscopy attached to a thermogravimetric analyzer and the corresponding kinetics parameters were estimated.The devolatilization was found to occur through two or more steps. The first step is always associated with the release of CO2, CO, H2, H2O and hydrocarbons while only CO and H2were detected during the later steps. Combustion and gasification starting temperatures of char of H2-rich carbonaceous materials were lower than that of pulverized coal char by?≥?100?°C. The estimated activation energies suggested that, under the present conditions, devolatilization, gasification and combustion were chemically controlled. Carbon reactivity of the char of the studied H2-rich carbonaceous materials were higher than that of pulverized coal. Moreover, increased H2–H2O content in the blast furnace gas, due to injected H2-rich carbonaceous materials, was found to improve the iron ore pellets reduction kinetics.
机译:增加氢气在高炉炼铁中减少氧化铁的份额将直接降低高炉温室气体排放的份额。在本研究中,根据其脱挥发,气化和燃烧特性,研究了富含H2的生物质和塑料材料的注射。使用附着在热重分析仪附着的质谱鉴定释放的气体,估计相应的动力学参数。发现脱挥发化通过两个或更多个步骤发生。第一步总是与CO 2,CO,H 2,H 2 O和烃的释放相关联,而在后面的步骤期间仅检测到CO和H2。 H 2富含H 2富含碳质材料的燃烧和气化开始温度低于粉煤焦炭的燃烧,≥≤100Ω·℃。估计的活化能量表明,在目前的条件下,脱挥发化,气化和燃烧在化学控制。富含研究H2的碳质材料的炭的碳反应性高于粉煤的炭。此外,由于注射的H 2含碳质材料,在高炉气中增加了高炉气体中的H 2-H 2 O含量,以改善铁矿石颗粒减少动力学。

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