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首页> 外文期刊>Energy sources. Part A, Recovery, utilization, and environmental effects >Further Investigation of the Impact of the Co-combustion of Tire-derived Fuel and Petroleum Coke on the Petrology and Chemistry of Coal Combustion Products
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Further Investigation of the Impact of the Co-combustion of Tire-derived Fuel and Petroleum Coke on the Petrology and Chemistry of Coal Combustion Products

机译:轮胎衍生燃料与石油焦共燃对煤燃烧产物岩石化学的影响的进一步研究

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摘要

A Kentucky cyclone-fired unit burns coal and tire-derived fuel, sometimes in combination with petroleum coke. A parallel pulverized combustion (pc) unit at the same plant burns the same coal, without the added fuels. The petrology, chemistry, and sulfur isotope distribution in the fuel and resulting combustion products was investigated for several configurations of the fuel blend. Zinc and Cd in the combustion products are primarily contributed from the tire-derived fuel, the V and Ni are primarily from the petroleum coke, and the As and Hg are probably largely from the coal. The sulfur isotope distribution in the cyclone unit is complicated due to the varying fuel sources. The electrostatic precipitator (ESP) array in the pc unit shows a subtle trend towards heavier S isotopic ratios in the cooler end of the ESP.
机译:肯塔基州的一个旋风燃烧单元燃烧煤和轮胎衍生的燃料,有时与石油焦结合使用。同一工厂的并行粉煤燃烧(pc)单元燃烧相同的煤,而无需添加燃料。针对燃料混合物的几种构型,研究了燃料和所得燃烧产物中的岩石学,化学和硫同位素分布。燃烧产物中的锌和镉主要来自轮胎衍生的燃料,钒和镍主要来自石油焦炭,砷和汞很可能主要来自煤。由于燃料来源的变化,旋风分离器中硫同位素的分布非常复杂。 pc单元中的静电除尘器(ESP)阵列在ESP较冷的一端显示出向着更高的S同位素比的微妙趋势。

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