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Efficiency of Biomass Use for Blast Furnace Injection

机译:高炉注入生物质的效率

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Numerous studies and available experience proved the feasibility and benefits of the biomass usage in various metallurgical applications, particularly, by its injection into the blast furnace (BF). This contribution focuses on three aspects, which could increase the economic efficiency of this technology. The first one is related to the thermal treatment of biomass. Woody biomass were pyrolysed using a laboratory pyrolysis plant under different conditions resulting in various amounts and properties of solid, liquid and gaseous constituents. Co-injection of the produced charcoal and biogas into the BF was proposed. Mathematical modelling using the experimental data of mentioned biomass product characteristics was undertaken to examine the effect of this technology on the BF operation results. The second aspect is related to the optimisation of grain size and size distribution of injected solid biomass products. Tests using a laboratory injection rig allowed for recommendation of the coarser grinding of charcoal than that for fossil coal applied for the BF injection. This could lead to the additional energy and cost saving. The third aspect concerns the improvement of the BF control. It is proposed a new BASE1 method for the BF thermal state control by adaption of the pyrolysis parameters while injecting pyrolysed biomass and coupling the blast furnace with a pyrolysis reactor.
机译:大量研究和现有经验证明了在各种冶金应用中使用生物质的可行性和益处,特别是通过将其注入高炉(BF)中。该贡献集中在三个方面,可以提高该技术的经济效率。第一个与生物质的热处理有关。使用实验室热解设备在不同条件下将木质生物质热解,从而产生各种数量和性质的固体,液体和气体成分。有人建议将生产的木炭和沼气共同注入高炉。使用提到的生物质产物特性的实验数据进行数学建模,以检验该技术对高炉操作结果的影响。第二方面涉及对所注入的固体生物质产品的粒度和粒度分布的优化。与使用高炉喷吹的化石煤相比,使用实验室喷吹机进行的试验建议推荐使用木炭粗磨。这可能导致额外的能源和成本节省。第三方面涉及BF控制的改进。提出了一种新的BASE1方法,该方法通过在注入热解生物质并将高炉与热解反应器耦合的同时,通过调整热解参数来控制高炉热态。

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