Mineral phase characterization and thorough understanding of its transformation behavior during combustion are imperative to know the potential utilization of coal in the thermal industries. The primary objective of t...Mineral phase characterization and thorough understanding of its transformation behavior during combustion are imperative to know the potential utilization of coal in the thermal industries. The primary objective of this work is to analyze the quality of Indian Coals and obtain their mineral species-specific information at different depths. The samples were obtained from Talcher Coalfield, Odisha, India. Coal from four seam sections in the Talcher coalfield, India are mainly high ash coal (〉50 %) and volatile matter deceases along with the seam depth. XRD results show that the major mineral phases present in the coal are quartz and kaolinite. Siderite, illite, and anatase were found in minor quantities. It has been observed that the clay minerals (kaolinite, silimanite, illite) decompose at higher temperature and traces of dolomite, mullite, hematite etc. are formed during the process of combustion. Among the four seams (M2, M12, M24 and M43) studied, ash of M43 has high A1203%, TIO2% and K20% content and low SIO2%, CaO% and MgO% content. High acid- to-base ratios contributed to high ash fusion temperatures (IDT 〉 1500 ℃) and low slagging potential of the coals studied. Relatively low fouling index (〈0.3) was estimated for all the coal seams studied. Furthermore, thermodynamic modeling software, FactSage, have been used to envision the mineral phase transformations that take place between 800 and 1500℃ during coal combustion.展开更多
通过X射线衍射图谱分析结合灰熔融性测定,研究了准东煤燃烧过程中的矿物质赋存形态变化及添加NH4H2PO4对准东煤灰分特征和灰熔融特性的影响。试验结果表明,空气气氛下,随着准东煤燃烧温度从800℃升高至1100℃,灰中钠长石、钙铁辉石和蓝...通过X射线衍射图谱分析结合灰熔融性测定,研究了准东煤燃烧过程中的矿物质赋存形态变化及添加NH4H2PO4对准东煤灰分特征和灰熔融特性的影响。试验结果表明,空气气氛下,随着准东煤燃烧温度从800℃升高至1100℃,灰中钠长石、钙铁辉石和蓝方石等熔点较低且熔融性较强矿物质含量升高,灰中主要矿物质皆为助熔性矿物质。煤中添加比例PO4^(3-)/Na≥0.5、温度800℃以上,混煤灰中生成新的Ca(2.71)Mg(0.29)(PO4)2、 Al PO4、 Ca3(PO4)2、Ca9Fe(PO4)7、Ca9Al(PO4)7、Ca2P2O7和Mg2P2O7等高熔点物质。当PO4^(3-)/Na〉 1时,混煤灰熔融性温度明显升高,软化温度由1144℃增加至1418℃(PO4^(3-)/Na=4),煤改善为中等结渣倾向。可见添加NH4H2PO4能够有效抑制低熔点、助熔性含钠矿物生成,促进高熔点物质形成,提高灰熔融特性温度。展开更多
文摘Mineral phase characterization and thorough understanding of its transformation behavior during combustion are imperative to know the potential utilization of coal in the thermal industries. The primary objective of this work is to analyze the quality of Indian Coals and obtain their mineral species-specific information at different depths. The samples were obtained from Talcher Coalfield, Odisha, India. Coal from four seam sections in the Talcher coalfield, India are mainly high ash coal (〉50 %) and volatile matter deceases along with the seam depth. XRD results show that the major mineral phases present in the coal are quartz and kaolinite. Siderite, illite, and anatase were found in minor quantities. It has been observed that the clay minerals (kaolinite, silimanite, illite) decompose at higher temperature and traces of dolomite, mullite, hematite etc. are formed during the process of combustion. Among the four seams (M2, M12, M24 and M43) studied, ash of M43 has high A1203%, TIO2% and K20% content and low SIO2%, CaO% and MgO% content. High acid- to-base ratios contributed to high ash fusion temperatures (IDT 〉 1500 ℃) and low slagging potential of the coals studied. Relatively low fouling index (〈0.3) was estimated for all the coal seams studied. Furthermore, thermodynamic modeling software, FactSage, have been used to envision the mineral phase transformations that take place between 800 and 1500℃ during coal combustion.
文摘通过X射线衍射图谱分析结合灰熔融性测定,研究了准东煤燃烧过程中的矿物质赋存形态变化及添加NH4H2PO4对准东煤灰分特征和灰熔融特性的影响。试验结果表明,空气气氛下,随着准东煤燃烧温度从800℃升高至1100℃,灰中钠长石、钙铁辉石和蓝方石等熔点较低且熔融性较强矿物质含量升高,灰中主要矿物质皆为助熔性矿物质。煤中添加比例PO4^(3-)/Na≥0.5、温度800℃以上,混煤灰中生成新的Ca(2.71)Mg(0.29)(PO4)2、 Al PO4、 Ca3(PO4)2、Ca9Fe(PO4)7、Ca9Al(PO4)7、Ca2P2O7和Mg2P2O7等高熔点物质。当PO4^(3-)/Na〉 1时,混煤灰熔融性温度明显升高,软化温度由1144℃增加至1418℃(PO4^(3-)/Na=4),煤改善为中等结渣倾向。可见添加NH4H2PO4能够有效抑制低熔点、助熔性含钠矿物生成,促进高熔点物质形成,提高灰熔融特性温度。