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Development of quantitative techniques to characterize mineral matter transformations in a pulverized coal fired boiler

机译:在粉煤锅炉中表征矿物质转化的定量技术的发展

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Slagging costs the global utility industry several billion dollars annually in reduced power generation and equipment maintenance. The efficiency of removing the slag deposits by sootblowing is affected by the growth, shedding and thermal resistance of the deposit. The purpose of this paper is to describe the development of techniques that can be used to quantitatively measure slagging. These techniques were developed at the 350 MWe opposed-fired boilers of Callide 'B' Power Station, Biloela, QLD, Australia. Characterisation of the mineral matter transformations was determined by isokinetically sampling pulverised coal (PC) from the pulverised fuel (PF) pipes; measuring the temperature profile in the boundary layer of the furnace; retrieving quenched particulate ash from the thermal boundary layer; and collecting deposits formed on disposable air-cooled mild steel slagging probes inserted in the furnace port. The differences in deposit growth and strength might be correlated with fundamental variations in the mineral matter composition and distribution in the pulverised coal. Preliminary analyses of molten regions of deposits have revealed the primary phase field of iron cordierite (2FeO.2Al{sub}2O{sub}3.5SiO), with melting points ranging from 1088 to 1208 °C, to be responsible for slag formation at the Callide boiler
机译:在减少发电和设备维护下,每年冻结全球公用事业行业数十亿美元。通过截取沉积物去除炉渣沉积物的效率受到沉积物的生长,脱落和热阻的影响。本文的目的是描述可用于定量测量粘液的技术的发展。这些技术是在澳大利亚Biloela,澳大利亚QLD Biloela的350 MWE相对的燃烧锅炉中开发的。通过从粉碎的燃料(PF)管道的正式采样粉煤(PC)确定矿物质转化的表征;测量炉子边界层中的温度曲线;从热边界层检索淬火颗粒灰;在插入炉端口的一次性风冷温和钢粘合探针上形成的沉积物。沉积物生长和强度的差异可能与煤粉组合物的基本变化相关,粉煤中的分布。沉积物熔融区域的初步分析揭示了铁堇青石(2Feo.2AL {Sub} 2×3.5sio)的初级相场,熔点从1088到1208°C的熔点,负责在炉渣形成LOALIPE锅炉

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