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首页> 外文期刊>Journal of Energy Resources Technology >Feasible Experimental Study on the Utilization of a 300 MW CFB Boiler Desulfurizating Bottom Ash for Construction Applications
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Feasible Experimental Study on the Utilization of a 300 MW CFB Boiler Desulfurizating Bottom Ash for Construction Applications

机译:利用300 MW CFB锅炉脱硫底灰进行建筑应用的可行性实验研究。

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摘要

Circulating fluidized bed (CFB) boiler has entered electric power industry field because of burning a wide range of fuels, while still achieving strict air emissions requirements. This study focuses on a 300 MW CFB boiler, which will be one of the largest CFB boiler in the world. In a CFB boiler, fuels were burned with the addition of limestone to capture SO_2 in a solid form. Therefore, the volume of ashes, both bottom ash and fly ash, discharged from a CFB boiler is much higher than the ashes discharged from a pulverized coal-fired (PC) boiler at the same capacity of the boiler. CFB boiler ash cannot be used as a cement replacement in concrete due to its unacceptably high sulfur content. The disposal in landfills has been the most common means of handling ash in circulating fluidized bed boiler power plants. However, for a 300 MW CFB boiler power plant, there will be 600,000 tons of ash discharged per year and will result in great volumes and disposal cost of ash byproduct. It was very necessary to solve the utilization of CFB ash and to decrease the disposal cost of CFB ash. The feasible experimental study results on the utilization of the bottom ashes of a 300 MW CFB boiler in Baima power plant in China were reported in this paper. The bottom ashes used for test came from the discharged bottom ashes in a 100 MW CFB boiler in which the anthracite and limestone designed for the 300 MW CFB project was burned. The results of this study showed that the bottom ash could be used for cementitious material, road concrete, and road base material. The masonry cements, road concrete with 30 MPa compressive strength and 4.0 MPa flexural strength, and the road base material used for base courses of the expressway, the main road and the minor lane were all prepared with milled CFB bottom ashes in the lab. The better methods of utilization of the bottom ashes were discussed in this paper.
机译:循环流化床(CFB)锅炉由于燃烧各种各样的燃料而进入了电力工业领域,同时仍然达到了严格的空气排放要求。这项研究的重点是300 MW CFB锅炉,它将成为世界上最大的CFB锅炉之一。在CFB锅炉中,燃料与石灰石一起燃烧以捕获固体形式的SO_2。因此,CFB锅炉排出的灰烬(底灰和粉煤灰)的体积远高于相同容量的粉煤(PC)锅炉排出的灰烬。 CFB锅炉灰由于其硫含量过高而不能用作混凝土中的水泥替代品。垃圾掩埋是循环流化床锅炉电厂中处理灰烬的最常用方法。但是,对于一个300兆瓦CFB锅炉电厂,每年将排放60万吨的灰烬,这将导致大量的灰烬副产品和处置成本。解决CFB灰的利用和降低CFB灰的处置成本是非常必要的。报道了在中国白马电厂利用300 MW CFB锅炉底灰的可行性实验研究结果。用于测试的底灰来自一台100 MW CFB锅炉中排出的底灰,其中燃烧了专为300 MW CFB项目设计的无烟煤和石灰石。研究结果表明,底灰可用于胶凝材料,道路混凝土和道路基础材料。在实验室中,均使用碾磨的CFB底灰制备砖石水泥,抗压强度为30 MPa,抗弯强度为4.0 MPa的道路混凝土以及用于高速公路,主干道和次要道路的基层的道路基础材料。本文讨论了利用底灰的更好方法。

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