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Reduction of CO2 Emissions by Use of Pre-reduced Iron Ore as Sinter Raw Material

机译:通过使用预还原铁矿石作为烧结原料减少CO 2 排放

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In order to reduce CO_(2) emissions at an ironmaking process, it is an effective measure to decrease a bonding agent rate at an iron ore sinter plant. In this study, effect of using a pre-reduced iron ore as a part of a sinter raw material on a sintering process was investigated mainly from a viewpoint of decreasing a bonding agent rate.Two brands of pisolitic iron ores were reduced up to wustite at 1173 K with reducing gas of which an oxidation degree was 55%. The pre-reduced iron ore was stable against reoxidation in the atmosphere and through a cyclic wet and dry treatment.Two brands of pisolitic iron ores and a Marra Mamba iron ore were pre-reduced and then used in a sinter pot test. A use of the pre-reduced iron ore was effective in decreasing a bonding agent rate at a given productivity. The reoxidation heat of the pre-reduced iron ore was estimated to be less than the combustion heat of the bonding agent being saved by use of the pre-reduced iron ore. The reoxidation heat is more effective in the sintering process than the combustion heat. The decrease of the bonding agent resulted in reduction of NOx emissions.A mass and heat balance shows that a use of a pre-reduced iron ore as a sinter raw material enables reduction of CO_(2) emissions not only at an ironmaking process but also at a whole integrated steel works.
机译:为了减少炼铁过程中的CO_(2)排放,降低铁矿石烧结厂中的粘结剂率是一种有效的措施。在这项研究中,主要是从降低粘合剂率的角度出发,研究了将预还原铁矿石用作烧结原料的一部分对烧结过程的影响。氧化度为55%的还原性气体为1173K。预先还原的铁矿石在大气中以及经过循环的湿法和干法处理后对稳定的抗氧化作用是稳定的。两个牌号的斜硅铁矿石和Marra Mamba铁矿石被预先还原,然后用于烧结罐测试。在给定的生产率下,使用预还原的铁矿石可有效降低粘合剂的比率。估计该预还原铁矿石的再氧化热小于通过使用该预还原铁矿石而节省的粘结剂的燃烧热。在烧结过程中,再氧化热比燃烧热更有效。粘结剂的减少导致NOx排放的减少。质量和热平衡表明,使用预还原的铁矿石作为烧结原料不仅可以减少炼铁过程中的CO_(2)排放,在整体上整合钢铁厂。

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