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磷酸铝分子筛的热稳定性研究 被引量:1

Study on Examination of Molecular Sieves Thermal Stability
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摘要 应用动态高温X射线衍射技术 ,研究了AlPO4 分子筛的热稳定性及随温度变化的X射线衍射峰强度 ,常温下考察了不同吸附时间下X射线衍射谱峰强度的变化。结果表明 ,A1PO4 分子筛作为催化剂载体的原始样品 ,在经高温预处理后 ,分解了残留在孔道内的有机物质和经脱附消除了水汽的影响 ,其结晶性能趋于最佳。在 90 0℃时骨架仍没有明显破坏 ,在 10 0 0℃时转化为磷铝致密相。AlPO4 分子筛吸附水汽并没有改变其基本的化学结构 ,此吸附过程是可逆的。此外 ,AlPO4 By using the dynamic method, the thermal stability of molecular sieves AlPO_4 and the change of their X-ray diffraction peaks were examined at different temperatures. At room temperature the change of the adsorption subject to different time period was also performed. The experimental results show that as the original sample of the supporting material through pretreatment at high temperature, the organic materials in the holes in the AlPO_4 are destroyed and the water vapor is also removed from the holes in AlPO_4. The crystalline characteristics of AlPO_4 are optimarized. At 900 ℃, the frame of it is not destroyed apparently. But at 1 000 ℃, it changed into the another phase. That molecular sieve AlPO_4 absorbs water vapor does hot change their basic chemical structure, and the adsorption process is reversible. In addition, their intensities of low angle X-ray diffraction peaks are sensitive to adsorption of water vapor.
出处 《抚顺石油学院学报》 2002年第3期36-38,共3页 Journal of Fushun Petroleum Institute
关键词 磷酸铝 分子筛 热稳定性 研究 动态高温X射线衍射 吸附 High temperature X-ray diffraction Molecular sieves AlPO_4 Thermal stability Adsorp
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  • 1陈忠明,陶克毅.固体碱催化剂的研究进展[J].化工进展,1994,13(2):18-25. 被引量:20
  • 2须沁华.SAPO分子筛[J].石油化工,1988,(17):186-186.
  • 3董家禄,催化学报,1989年,10卷,2期,208页
  • 4Xu Wenyang,J Incl Phenom,1986年,4卷,4期,325页
  • 5何长青,天然气化工,1993年,18卷,6期,14页
  • 6徐如人,沸石分子筛的结构与合成,1987年,345页
  • 7蔡启瑞,碳.化学中的催化作用,1995年,1页
  • 8Liang J,Appl Catal,1990年,64卷,1期,31页
  • 9须沁华,石油化工,1988年,17卷,17期,186页
  • 10冯益庆,陈连璋.骨架和非骨架含硼的ZSM-5沸石催化剂的催化性能[J].Chinese Journal of Catalysis,1991,12(1):65-69. 被引量:3

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