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Switching Coal-Fired Thermal Power Plant to Composite Fuel for Recovering Industrial and Municipal Waste: Combustion Characteristics, Emissions, and Economic Effect

机译:将燃煤热电厂转换为复合燃料,用于回收工业和市政浪费:燃烧特征,排放和经济效益

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摘要

Combustion characteristics were studied experimentally for single droplets of fuel slurries based on wet coal processing waste with municipal solid waste components (cardboard, plastic, rubber, and wood) and used turbine oil. We established the ignition delay time for three various groups of fuel compositions in motionless air at 600−1000 °C. The minimum values are 3 s, and the maximum ones are 25 s. The maximum temperatures in the droplet vicinity reach 1300 °C during fuel combustion for compositions with 10% of used oil. The combustion temperatures of fuel compositions without oil are 200−300 °C lower. The concentrations of anthropogenic emissions in flue gases do not exceed those from dry coal combustion. Adding used oils to composite fuels reduces the concentrations of dioxins and furans in flue gases when municipal solid waste in the fuel burns out due to high combustion temperatures. Based on the experimental research findings, we have elaborated a strategy of combined industrial and municipal waste recovery by burning it as part of composite fuels, as illustrated by three neighboring regions of the Russian Federation with different industrial structures and levels of social development. This strategy suggests switching three typical coal-fired thermal power plants (one in each of the regions) to composite liquid fuel. It will reduce the hazard of waste to the environment and decrease the consumption of high-quality coals for power generation. Implementing the developed strategy for 25 years will save 145 Mt of coal and recover 190−260 Mt of waste. The positive economic effect, considering the modernization of fuel handling systems at thermal power plants and the construction of a fuel preparation plant, will make up 5.7 to 6.9 billion dollars, or 65−78%, respectively, of the main costs of three thermal power plants operating on coal within the identical period.
机译:基于湿煤加工废物的燃料浆料进行实验研究了燃烧特性,用市政固体废物组分(纸板,塑料,橡胶和木材)和二手汽轮机油。我们在600-1000℃下在一动不动空气中建立了三种各种燃料组合物的点火延迟时间。最小值是3秒,最大值是25秒。液滴附近的最大温度在燃料燃烧期间达到1300°C,用于10%使用的油的组合物。没有油的燃料组合物的燃烧温度为200-300℃。烟道气中的人为排放的浓度不超过干煤燃烧的排放。当燃料中的城市固体废物由于高燃烧温度燃烧时,将二手油添加到复合燃料中减少了烟气中的二恶英和呋喃的浓度。基于实验研究结果,通过将其作为综合燃料的一部分燃烧,详细阐述了合并的工业和市政废物恢复策略,如俄罗斯联邦的三个邻近地区,具有不同的产业结构和社会发展水平。该策略表明,将三个典型的燃煤热发电厂(每个区域中的一个)切换到复合液体燃料。它将减少对环境的危害,降低发电的高质量煤的消耗。实施25年的发达战略将节省145吨煤炭,恢复190-260吨浪费。考虑到热电厂的燃料处理系统现代化和燃料制备厂的建设的阳性经济效益,将分别占三种热力的主要成本为5.7〜69亿美元,分别为65-78%植物在相同时期内运行煤炭。

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