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THE EFFECT OF CALCIUM-BEARING MINERAL ON ASH MELTING BEHAVIOR DURING ZHUNDONG COAL COMBUSTION

机译:煤矿煤矿钙矿物钙煤矿煤燃烧灰熔化的影响

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Two typical pulverized Zhundong coal with different calcium oxide contents in ash were selected to use in this work. The liquid nitrogen was used to cool ash rapidly at different temperatures, in order to avoid changes in mineral condition. The ash melting behavior and mineral transition mechanism, especially calcium-bearing minerals was studied by ash melting point test platform, XRD, XRF, SEM and EDS. The results showed that the different states of calcium are the dominant reasons for different sintering behaviors of coal ash. The calcium-bearing minerals in ash, such as calcium oxide (CaO), calcium silicate (CaSiO_3), gehlenite (2CaO·Al_2O_3·SiO_2), and anorthite (CaO·Al_2O_3·2SiO_2), etc., are the most important factors influencing the initial sintering behavior of coal ash in the temperature range from 1373K to 1473K under oxidizing atmosphere during coal combustion. That is the reason why ash starts to melt at relatively high temperature during ash melting behavior in laboratory, but has severe slagging and contamination characteristic at low temperature during coal combustion in boilers. The research achievments have important guiding significance for the design of partially or completely burning Zhundong coal boiler as well as its long-term safe and efficient operation. (CSPE)
机译:选择两种典型的粉碎抗氧化钙氧化物含量的灰烬灰烬中的两种工作。液氮用于在不同温度下快速冷却灰分,以避免矿物质的变化。通过灰熔点测试平台,XRD,XRF,SEM和EDS研究了灰熔化的行为和矿物过渡机制,尤其是钙含钙矿物。结果表明,钙的不同状态是煤灰的不同烧结行为的主导原因。灰烬中的钙矿物质,如氧化钙(CaO),硅酸钙(CasiO_3),Gehlenite(2CaO·Al_2O_3·SiO_2)和钙酸盐(CaO·Al_2O_3·2SiO_2)等是影响最重要的因素煤燃烧过程中氧化气氛下温度范围为1373K至1473K的粉煤灰的初始烧结行为。这就是灰烬在实验室中灰熔化行为期间灰烬在灰度熔化行为期间开始融化的原因,但在锅炉中的煤燃烧期间具有严重的粘溅射和污染特性。该研究成果对部分或完全燃烧的促燃煤锅炉的设计具有重要的指导意义,以及其长期安全有效的操作。 (CSPE)

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