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- 2015
空气气氛中滑石的热分解动力学实验研究
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Abstract:
摘要 含水矿物的热分解动力学研究对于了解俯冲带中-深源地震的成因机制具有重要意义.本文用综合热分析仪(TG-DSC)研究滑石在动态空气气氛下的热分解过程,利用热重(TG)数据对滑石的热分解动力学进行分析.利用Friedman法和FWO法,分别计算滑石热分解过程中的表观活化能Ea和指前因子A,并以Friedman法求得的活化能为初始值,通过非线性回归拟合得到热分解过程最可能的反应机理和动力学参数.研究结果表明,滑石在830~1 050 ℃内发生热分解,此过程为n级反应,表观活化能Ea为344.2 kJ/mol,指前因子A为4.9E12 s-1.
[1] | Green H W, Houston H. The mechanics of deep earthquakes[J]. Annual Review of Earth and Planetary Sciences, 1995, 23: 169-214. |
[2] | Brudzinski M R, Thurber C H, Hacker B R, et al. Global prevalence of double Benioff zones[J]. Science,2007,316(5 830): 1 472-1 474. |
[3] | Perrillat J P, Daniel I, Koga K T, et al.Kinetics of antigorite dehydration: a real-time X-ray diffraction study[J]. Earth and Planetary Science Letters,2005,236(3): 899-913. |
[4] | Hasegawa A, Umino N, Takagi A. Double-planed deep seismic zone and upper-mantle structure in the Northeastern Japan Arc[J]. Geophysical Journal of the Royal Astronomical Society,1978,54(2): 281-296. |
[5] | Hacker B R, Peacock S M, Abers G A, et al.Subduction factory 2. Are intermediate-depth earthquakes in subducting slabs linked to metamorphic dehydration reactions?[J]. Journal of Geophysical Research: Solid Earth (1978-2012),2003,108(B1):ESE 11-1 to ESE 11-15. |
[6] | Yamasaki T, Seno T. Double seismic zone and dehydration embrittlement of the subducting slab[J]. Journal of Geophysical Research: Solid Earth (1978-2012),2003,108(B4): ESE 9-1 to ESE 9-21. |
[7] | Schmidt M W, Poli S. Experimentally based water budgets for dehydrating slabs and consequences for arc magma generation[J]. Earth and Planetary Science Letters, 1998, 163(1): 361-379. |
[8] | 关春秀, 陈栋华. 一水合草酸铵脱水的热分析动力学[J]. 中南民族大学学报:自然科学版, 2004, 23 (1): 14-17. |
[9] | Bose K, Ganguly J. Thermogr-avimetric study of the dehydration kinetics of talc[J]. American Mineralogist,1994,79(7/8): 692-699.</p> |
[10] | <p> Frohlich C. The nature of deep-focus earthquakes[J]. Annual Review of Earth and Planetary Sciences, 1989, 17: 227. |
[11] | 胡荣祖, 史启祯. 热分析动力学[M]. 北京: 科学出版社, 2001:127-131. |
[12] | Wang D J, Karato S.Electrical conductivity of talc aggregates at 0.5 GPa: influence of dehydration[J]. Physics and Chemistry of Minerals,2013,40(1): 11-17. |
[13] | Zhan D, Cong C J, Diakite K, et al.Kinetics of thermal decomposition of nickel oxalate dihydrate in air[J]. Thermochimica Acta, 2005, 430(1): 101-105. |
[14] | Hong J H, Guo G H, Zhang K L. Kinetics and mechanism of non-isothermal dehydration of nickel acetate tetrahydrate in air[J]. Journal of Analytical and Applied Pyrolysis, 2006, 77(2): 111-115. |