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Improvement of Gas Utilization Ratio in the Gaseous Reduction of Iron Oxide and Suppression of Dioxins Formation in Combustion Processes by the Enhancement of Carbon Deposition

机译:通过增加碳的沉积来提高燃烧过程中氧化铁的气体利用率和抑制燃烧过程中二恶英的形成

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Carbon deposition from CO-CO2 mixture is examined on metallic iron at temperatures ranging from 650 to 950K The CO-CO2 mixture was introduced in an alumina tube, in which the high purity electrolytic iron powder was packed, and the ingoing and the outgoing gas compositions were measured by a quadrupole mass spectrometer The lowering limit of the partial pressure of CO (Pcc/(Pco+Pco2)), at which the carbon deposition substantially occurs, is investigated The condition, under which carbon deposition occurs, is clarified in Fe-CO-CO2 system The improvement of the gas utilization ratio in the reduction of iron oxide and the suppression of dioxins formation in combustion processes by the enhancement of carbon deposition are discussed From the present thermodynamic calculation, it is concluded that dioxins formation can be suppressed by lowering the Pco/(Pco+Pco2) value under 0 2 to 0 3 according to the enhancement of the carbon deposition at 700 to 750K.
机译:在650至950K的温度下在金属铁上检查从CO-CO2混合物沉积的碳。将CO-CO2混合物引入氧化铝管中,在氧化铝管中填充高纯电解铁粉,流入和流出的气体组成。用四极杆质谱仪测量。研究了基本上发生碳沉积的CO分压的下限(Pcc /(Pco + Pco2))。在Fe-中明确了发生碳沉积的条件。 CO-CO2系统讨论了通过增加碳的沉积来提高燃烧过程中氧化铁还原中的气体利用率和抑制二恶英的形成。从目前的热力学计算可以得出结论:根据700至750K处碳沉积的增加,在0 2至0 3下降低Pco /(Pco + Pco2)值。

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