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Effect of Nut Coke-sinter Mixture on the Blast Furnace Performance

机译:坚果焦-烧结混合物对高炉性能的影响

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Among different ways to reduce the coke consumption in the blast furnace, not so much attention was paid for decreasing the coke losses through finding suitable application of small size coke called “nut coke”. In meantime modern blast furnaces use nut coke with different amount (10–140 kg/t hot metal) and different grain size (10–40 mm) in the sinter layer to reduce the coke losses. The objective of this paper is to clarify the influence of nut coke on the shaft permeability and sinter reducibility under blast furnace simulating conditions. The effect of various factors such as nut coke rate, gas flow rate, and layer thickness on the shaft permeability was estimated using cold model rig. The influence of nut coke on the isothermal and non-isothermal reduction of sinter was estimated under different gas compositions and temperatures using muffle reduction furnaces. The isothermal reduction of sinter with 30%CO–70%N_(2) exhibited reduction retardation at elevated temperatures (>1373 K). The reduction retardation increased by the presence of CO_(2) gas in the reducing atmosphere while decreased by participation of H_(2) gas. Mixing nut coke in the sinter bed improves the sinter reducibility and inhibits the reduction retardation phenomenon.
机译:在减少高炉中焦炭消耗的不同方法中,并没有过多关注通过找到合适的小尺寸焦炭(称为“坚果焦炭”)来减少焦炭损失的方法。同时,现代高炉在烧结层中使用不同数量(10–140 kg / t铁水)和不同粒度(10–40 mm)的坚果焦以减少焦炭损失。本文的目的是阐明在模拟高炉条件下,焦炭对竖井渗透性和烧结矿还原性的影响。使用冷模型钻机估算了各种因素,例如螺母焦炭率,气体流速和层厚对轴渗透性的影响。使用马弗还原炉在不同的气体组成和温度下,估计了焦炭对烧结矿的等温和非等温还原的影响。用30%CO–70%N_(2)进行的烧结等温还原在高温(> 1373 K)下显示出还原延迟。由于还原气氛中存在CO_(2)气体,还原延迟增加,而由于H_(2)气体的参与而减小。在烧结床中混合坚果焦炭可提高烧结矿的还原性并抑制还原延迟现象。

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