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Fundamental research on sintering technology with super deep bed achieving energy saving and reduction of emissions

机译:超深床烧结技术的基础研究,实现节能减排

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In the general frame of energy saving, environment protection and the concept of circular economy, the fundamental research on the sintering technology with super deep bed, achieving energy saving and emission reduction, was carried out. At first, the characteristics of the process and exhaust emission in the sintering with super deep bed was mastered through the study of the influence of different bed depths on the sintering process. Then, considering the bed permeability and the fuel combustion, their influence on the sinter yield and quality, their potential for energy saving and emission reduction was studied. The results show that the improvement of the bed permeability and of the fuel combustibility respectively and simultaneously, leads to an improvement of the sintering technical indices, to energy saving and emission reduction in the condition of super deep bed. At 1000 mm bed depth, and taking the appropriate countermeasure, it is possible to decrease the solid fuel consumption and the emission of CO_2, SO_2, NOx by 10.08%, 11.20%, 22.62% and 25.86% respectively; and at 700 mm bed depth, it is possible to reduce the solid fuel consumption and the emission of CO_2, SO_2, NOx by 20.71 %, 22.01 %, 58.86% and 13.13% respectively. This research provides the theoretical and technical basis for the new technology of sintering with super deep bed, achieving energy saving and reduction of emission.
机译:在节能,环保,循环经济的总体框架下,对超深床烧结技术实现节能减排进行了基础研究。首先,通过研究不同床层深度对烧结过程的影响,掌握了超深床烧结过程的过程和废气排放特性。然后,考虑了床的渗透性和燃料燃烧,它们对烧结矿产量和质量的影响,以及它们的节能减排潜力。结果表明,提高床层渗透率和提高燃料的可燃性同时提高烧结技术指标,在超深床条件下节能减排。在1000 mm的床深处,并采取适当的对策,可以分别减少固体燃料消耗和CO_2,SO_2,NOx排放10.08%,11.20%,22.62%和25.86%;在床深为700 mm时,固体燃料消耗和CO_2,SO_2,NOx的排放量分别减少了20.71%,22.01%,58.86%和13.13%。该研究为超深床烧结新技术的实现提供了理论和技术基础,实现了节能减排。

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