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淮南煤灰中晶体矿物组成与煤灰流动温度关系的研究
引用本文:张琨,李寒旭,纪明俊,杨和彦,张冬梅.淮南煤灰中晶体矿物组成与煤灰流动温度关系的研究[J].燃料化学学报,2012,40(9):1044-1050.
作者姓名:张琨  李寒旭  纪明俊  杨和彦  张冬梅
作者单位:1. School of Chemical Engineering, Anhui University of Science and Technology, Huainan 232001, China; 2. Huadian Electric Power Science Research Institute, Hangzhou 310030, China
基金项目:安徽省自然科学基金(08040102003);淮南市科技计划项目(2010A03105);中国石油化工科技股份有限公司安庆分公司科技项目(G2502-10-ZS-0243*)
摘    要:选取10种不同灰熔融温度的淮南煤,利用典型煤灰化学组成预测煤灰熔融温度的经验公式,对其煤灰流动温度进行了研究,发现预测精度不高;借助X射线衍射K值法分析计算了淮南煤灰的晶体矿物组成,并对晶体矿物组成与淮南煤灰流动温度的关系进行了关联,提出了利用晶体矿物组成预测煤灰流动温度的回归公式,揭示了淮南煤灰中晶体矿物组成与煤灰流动温度的内在关系,利用该公式计算的煤灰流动温度与实测值之差的绝对值小于国标规定的误差值(再现性小于等于80℃)。

关 键 词:X射线衍射  煤灰  晶体矿物组成  流动温度  
收稿时间:2011-12-12

Relationship between crystal mineral composition of Huainan coal ash and its flow temperature
ZHANG Kun,LI Han-xu,JI Ming-jun,YANG He-yan,ZHANG Dong-mei.Relationship between crystal mineral composition of Huainan coal ash and its flow temperature[J].Journal of Fuel Chemistry and Technology,2012,40(9):1044-1050.
Authors:ZHANG Kun  LI Han-xu  JI Ming-jun  YANG He-yan  ZHANG Dong-mei
Institution:1(1.School of Chemical Engineering,Anhui University of Science and Technology,Huainan 232001,China; 2.Huadian Electric Power Science Research Institute,Hangzhou 310030,China)
Abstract:Ten Huainan coal ash samples with different ash fusion temperatures were selected. To calculate the flow temperature by using the typical empirical formulas based on ash chemical composition and the new approaching were conducted. The composition of crystal mineral in ashes was analyzed by using XRD combined with "Value K" method, and the relationship between crystal mineral composition and the flow temperature was determined. An available formula for predicting the coal ash flow temperatures based on the crystal mineral composition was proposed. It is found that the typical empirical formula has a big error for predicting, but the difference between experimental value and calculated value by proposed formula is less than 80℃ required by China National Standards.
Keywords:X-ray diffraction (XRD)  coal ash  crystal mineral composition  flow temperature  
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