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Progress and recent utilization trends in combustion of Chinese oil shale

机译:中国油页岩燃烧研究进展及近期利用趋势

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The gradual decrease in conventional energy resources, and the growth of heavy industry, have placed great pressure on China's energy supplies. As a result of technological development, clean and diverse energy utilization facilities have become available in the energy market. Oil shale with combustible organic materials is widespread throughout the earth; many researchers have been motivated to investigate efficient means to use oil shale as an alternative energy as soon as possible. In China, the conventional utilization of oil shale is concentrated mainly on oil shale retorting, and burning oil shale in pulverized furnaces, or bubbling fluidized beds. To improve the availability of oil shale, many specialists have advocated burning oil shale in a circulating fluidized bed (CFB), which has a satisfactory combustion efficiency, low NO_x and SO_2 emission, adaptability to low-grade coal, etc. In Huadian, China, a plant incorporating three units of 65 th~(-1) oil shale-fired CFB began successful commercial operation in 1996, proving that burning oil shale in a CFB produces both high combustion efficiency and environmental protection. For effective utilization of oil shale, its pyrolysis and combustion characteristics, emission performance of gaseous pollutants from an oil shale-fired CFB pilot setup, co-combustion characteristics of oil shale and high sulfur coal—as well as the operating performance of the Huadian CFB boiler—were further studied. The resulting experimental data and theoretical analysis prove that oil shale resources have significant potential use in the combustion field. This paper introduces these fundamental characteristics and the industrial application of oil shale in combustion. Three projects are recommended for the future use of oil shale, based on the current status of energy and the characteristics of oil shale: (1) co-combustion of oil shale and high sulfur fuel for furnace desulfurization; (2) large-scale development of oil shale-fired CFBs; (3) a comprehensive oil shale utilization project to produce shale oil, burn oil-shale semicoke in a CFB boiler to generate electricity and supply heat, and produce building materials with oil shale ash.
机译:传统能源的逐步减少以及重工业的发展,给中国的能源供应带来了巨大压力。作为技术发展的结果,清洁和多样化的能源利用设施已在能源市场上获得。含有可燃有机物质的油页岩遍布全球。许多研究人员被激励去研究有效的手段,以尽快将油页岩用作替代能源。在中国,油页岩的常规利用主要集中在油页岩干馏,在粉炉或鼓泡流化床中燃烧油页岩。为了提高油页岩的利用率,许多专家提倡在循环流化床(CFB)中燃烧油页岩,该床具有令人满意的燃烧效率,低的NO_x和SO_2排放,对低品位煤的适应性等。 ,由三台由65th〜(-1)油页岩为燃料的CFB装置组成的工厂于1996年开始成功商业化运行,证明CFB中的油页岩燃烧不仅具有很高的燃烧效率,而且具有环保性。为了有效利用油页岩,其热解和燃烧特性,使用油页岩的CFB中试装置的气态污染物的排放性能,油页岩和高硫煤的共燃特性以及华电CFB的运行性能锅炉—进一步研究。所得的实验数据和理论分析证明,油页岩资源在燃烧领域具有巨大的潜在用途。本文介绍了这些基本特征以及油页岩在燃烧中的工业应用。根据当前的能源状况和油页岩的特点,建议三个项目供油页岩的未来使用:(1)将油页岩和高硫燃料一起燃烧以进行炉内脱硫; (2)大规模开发油页岩CFBs; (3)油页岩综合利用项目,生产页岩油,在循环流化床锅炉中燃烧油页岩半焦以发电和供热,并生产含油页岩灰的建筑材料。

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