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加热不燃烧卷烟烟草材料的热分析研究 被引量:88
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作者 杨继 杨帅 +7 位作者 段沅杏 田永峰 赵伟 杨柳 汤建国 朱东来 陈永宽 缪明明 《中国烟草学报》 EI CAS CSCD 北大核心 2015年第6期7-13,共7页
利用热重/差示扫描量热法和热裂解分析研究了空气氛围下典型电加热和炭加热新型卷烟烟草材料热行为。结果表明:1两种典型的加热不燃烧卷烟烟草材料的热失重都分为四个阶段,碳加热型卷烟A主失重阶段发生在133-270℃,电加热型卷烟B主失重... 利用热重/差示扫描量热法和热裂解分析研究了空气氛围下典型电加热和炭加热新型卷烟烟草材料热行为。结果表明:1两种典型的加热不燃烧卷烟烟草材料的热失重都分为四个阶段,碳加热型卷烟A主失重阶段发生在133-270℃,电加热型卷烟B主失重阶段发生在232-347℃;2两种烟草材料在前两个阶段失重量均要明显高于传统卷烟,主要是相对高比例的料香及烟雾生成剂的使用及较高的含水量;3两种典型的烟草材料在350℃热裂解,主要检出物质均为甘油、丙二醇和烟碱,其他主要物质还有乙酸、酮、醛和长链烷烃。 展开更多
关键词 不燃烧卷烟 热重/差示扫描量热 裂解 烟草材料
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Apparent activation energy for spontaneous combustion of sulfide concentrates in storage yard 被引量:5
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作者 阳富强 吴超 +1 位作者 崔燕 陆广 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2011年第2期395-401,共7页
In order to evaluate the spontaneous combustion hazard of sulfide concentrates in storage, three different kinds of sulfide concentrates (sulfur-rich sulfide concentrate, iron sulfide concentrate and copper sulfide c... In order to evaluate the spontaneous combustion hazard of sulfide concentrates in storage, three different kinds of sulfide concentrates (sulfur-rich sulfide concentrate, iron sulfide concentrate and copper sulfide concentrate) were obtained from a storage yard in Dongguashan Copper Mine, China. The reaction processes at different heating rates of 5, 10, 15, 20, and 25 ℃/min in air flow from ambient temperature to 1 000 ℃ were studied by TG-DTG-DSC analysis. By the peak temperatures of DTG curves, the whole reaction process for each sample was divided into different stages, and the corresponding apparent activation energies were calculated by the Ozawa-Flynn-Wall method. It is found that the reaction process of each sample is considerably complex; the apparent activation energy values change from 36 to 160 kJ/mol in different temperature ranges; sulfur-rich sulfide and iron sulfide concentrates have lower apparent activation energy than copper sulfide concentrate below 150 ℃; so they are more inclined to cause spontaneous combustion at ambient temperature. 展开更多
关键词 apparent activation energy sulfide concentrates spontaneous combustion thermogravimetry (TG) analysis differential scanning calorimetry (DSC)
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