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Thermal distributive blast furnace gas characterisation, a steelworks case study

机译:热分布高炉煤气表征,钢铁厂案例研究

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Blast furnace gas (BFG) is a dynamic by-product gas produced in large quantities with a composition comprising typically 18-23% CO, 1-5% H_2 and balance of N_2 and CO_2. Industrial operations lead to fluctuations in gas characteristics over short time periods. This can dissuade engineers from using the gas in increasingly complex technologies with perceived efficiency improvements such as gas turbines, a trait exacerbated by the 'dirty' nature synonymous with industrial process gases. This body of work used the Tata Port Talbot integrated steelworks as a case study to analyse variation in gaseous composition, as a foundation for evaluation of the combustion dynamics associated with BFG. Varying levels of compositional fluctuation were observed, with H_2 providing the most significant contributing factor to fuel characteristic. Particulate contamination was also studied as the gas cools and is distributed around the works, utilising condensate analyses at multiple distances from source. Particulate loading analyses yielded values of 0.04-0.1 mg Nm~(-3) at a distance of over 1.5 km from source, with results implying BFG is thermally scrubbed of contaminant matter through a mechanism of gas cooling and the amalgamation of condensate. The work performed therefore suggests the location of any installed equipment offers a significant contributory factor to performance.
机译:高炉气体(BFG)是一种动态产生的副产物气体,其组成通常包含18-23%的CO,1-5%的H_2和余量的N_2和CO_2。工业操作会导致气体特性在短时间内波动。这可以阻止工程师将气体用于日益复杂的技术中,以提高效率,例如燃气轮机,这种特性因“肮脏”性质而加剧,该性质与工业过程气体同义。这项工作以塔塔港塔尔伯特综合钢铁厂为例,分析了气体成分的变化,为评估与高炉煤气相关的燃烧动力学奠定了基础。观察到变化的组分波动水平,其中H_2对燃料特性提供了最重要的贡献因素。还利用气体在距源头多个距离处进行冷凝物分析的过程中,研究了随着气体冷却并在工厂周围分布的颗粒污染物。颗粒物负载分析在距源头超过1.5 km的距离处得出0.04-0.1 mg Nm〜(-3)的值,结果表明BFG通过气体冷却和冷凝水合并的机制被热洗净了污染物。因此,所执行的工作表明,任何已安装设备的位置都会对性能产生重大影响。

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