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Rate of Iron Carburization by Carbon in Slags through Carbon/Slag and Slag/Metal Reactions at 1723 K

机译:1723 K下通过碳/渣和渣/金属反应使渣中的碳渗碳的速率

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The carbide capacity of CaO–SiO_(2)–Al_(2)O_(3) slags and the rate of iron carburization through successive phases of carbon, slag, and metal are measured at 1723 K. The carbide capacity of high-basicity slag is higher than that of simulated blast-furnace (BF) slag. The iron carburization rate through CaO–SiO_(2)–Al_(2)O_(3) slags is much smaller than the rate of direct carburization or that through slags including iron oxide. It is found that the rate of carburization of iron through slags increases with increasing slag basicity. The apparent rate constant of the carburization reaction is derived to be k = 2.71 × 10~(–5) mol/(m~(2) s) for the simulated BF slag and k = 8.00 × 10~(–5) mol/(m~(2) s) for the high-basicity slag. The rate increases with increasing slag basicity, increasing carbide capacity, and decreasing oxygen partial pressure.
机译:CaO–SiO_(2)–Al_(2)O_(3)炉渣的碳化物容量以及通过碳,炉渣和金属的连续相的铁渗碳速率在1723 K下进行测量。高于模拟高炉炉渣。通过CaO–SiO_(2)–Al_(2)O_(3)炉渣产生的铁的渗碳速率远小于直接渗碳速率或通过包括氧化铁的炉渣的渗碳速率。发现通过渣的铁的渗碳速率随渣碱度的增加而增加。对于模拟的高炉渣,渗碳反应的表观速率常数推导为 k = 2.71×10〜(–5)mol /(m〜(2)s),而 k = 8.00×10〜高碱度渣为(–5)mol /(m〜(2)s)。该速率随着炉渣碱度的增加,碳化物容量的增加和氧气分压的降低而增加。

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