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The evaluation of waste tyre pulverised fuel for NO_x reduction by reburning

机译:废轮胎粉状燃料通过再燃烧减少NO_x的评估

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The combustion of coal for power generation will continue to play a major role in the future, however, this must be achieved using cleaner technologies than we use at present. Scrap tyre arisings in the UK are 400,000 tonnes per year amounting to 30 million tyres and in the EU as a whole, more than 2.5 million tonnes of tyres per year are scrapped. The recent EC Waste Landfill Directive (1999) sets a deadline for the banning of whole and shredded tyres from landfill sites by 2006. Consequently, there is an urgent need to find a mass disposal route for tyres. We describe, in this paper, a novel use for tyre rubber pulverised fuel in a NO_x reburning process which may have an application in power station boilers. This method of disposal could represent a way of combining waste disposal, energy recovery and pollution control within one process. A preliminary study of micronised tyre combustion was undertaken to identify the suitable size ranges for application in NO_x reduction by reburning. Tests were performed in a down-fired, pulverised fuel combustor (PFC) operating at about 80 kW. Superior combustion characteristics, i.e. burnout were achieved with particle sizes less than 250 μm. A South African coal was used as the primary fuel in the reburn tests and the tyre was fed pneumatically via a separate feed system. Parameters studied, were, reburn zone stoichiometry and reburn fuel fraction. Additionally, the carbon content of the ash was carefully monitored for any effect on burnout at the fuel rich reburn stoichiom-etries. The NO_x reductions achieved with tyres are compared with reburning with coal. NO_x reductions up to 80% were achieved with tyres at half of the reburn fuel feed rate required to achieve the same reductions by coal. The results have been evaluated within the context of other studies available in the literature on NO_x reburning by bituminous coal, brown coal, gas and biomass.
机译:燃煤用于发电将在未来继续发挥重要作用,但是,这必须使用比我们目前使用的更清洁的技术来实现。在英国,废旧轮胎的年产量为40万吨,共计3000万条轮胎;在整个欧盟,每年废弃的轮胎超过250万吨。最近的EC垃圾填埋指令(1999)为在2006年之前禁止从垃圾填埋场禁止使用完整轮胎和切碎轮胎的最后期限。因此,迫切需要找到轮胎的大规模处置途径。我们在本文中描述了一种在NO_x再燃过程中用于轮胎橡胶粉状燃料的新型用途,该用途可能在电站锅炉中得到应用。这种处理方法可以代表一种将废物处理,能量回收和污染控制结合在一个过程中的方法。进行了微粉化轮胎燃烧的初步研究,以确定适合通过再燃烧减少NO_x的尺寸范围。测试是在功率约80 kW的向下燃烧的粉状燃料燃烧器(PFC)中进行的。小于250μm的颗粒具有出色的燃烧特性,即燃尽。在再燃测试中,使用了南非煤炭作为主要燃料,并通过单独的进料系统对轮胎进行了充气。研究的参数是重燃区化学计量和重燃燃料分数。此外,在富含燃料的重燃化学计量试验中,仔细监测了灰分中的碳含量是否对燃尽有任何影响。将轮胎实现的NO_x减少量与煤的再燃烧进行比较。使用轮胎以达到同样的减少煤量所需的再燃燃料进给速度的一半,可以实现高达80%的NO_x减少。在其他有关烟煤,褐煤,天然气和生物质再燃NO_x的文献研究中,对结果进行了评估。

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