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纳米分子筛ZSM-5的热稳定性研究 被引量:10

Study on Thermostability of Nanosized ZSM-5 Zeolite
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摘要 Nanosized ZSM 5 zeolite was synthesized by hydrothermal method and characterized by XRD and TEM techniques. The specific heat of the nanosized ZSM 5 zeolite was measured in the temperature range from 79 to 370 K, and its enhancement in specific heat was observed as compared with the corresponding microsized zeolite, indicating that the nanosized ZSM 5 zeolite possesses higher surface activity. The thermostability of the samples was determined by differential scanning calorimetric (DSC) and thermogravimetric (TG) techniques. The DSC results showed that, for the nanosized ZSM 5, a broad exothermic peak is observed from 1?300 K; for the microsized ZSM 5, the corresponding exothermic peak begins at 1?400 K, and a distinct phase transition can be observed at 1?620 K. The TG results showed that, for the nanozised ZSM 5, the maximum mass loss ratio is 6 9%, and two mass loss stages can be observed in the temperature ranges of 298~663 K and 923~ 1?273 K, respectively; for the microsized ZSM 5, the maximum mass loss ratio is 6 5% and it is more stable than the nanosized ZSM 5. Nanosized ZSM 5 zeolite was synthesized by hydrothermal method and characterized by XRD and TEM techniques. The specific heat of the nanosized ZSM 5 zeolite was measured in the temperature range from 79 to 370 K, and its enhancement in specific heat was observed as compared with the corresponding microsized zeolite, indicating that the nanosized ZSM 5 zeolite possesses higher surface activity. The thermostability of the samples was determined by differential scanning calorimetric (DSC) and thermogravimetric (TG) techniques. The DSC results showed that, for the nanosized ZSM 5, a broad exothermic peak is observed from 1?300 K; for the microsized ZSM 5, the corresponding exothermic peak begins at 1?400 K, and a distinct phase transition can be observed at 1?620 K. The TG results showed that, for the nanozised ZSM 5, the maximum mass loss ratio is 6 9%, and two mass loss stages can be observed in the temperature ranges of 298~663 K and 923~ 1?273 K, respectively; for the microsized ZSM 5, the maximum mass loss ratio is 6 5% and it is more stable than the nanosized ZSM 5.
出处 《催化学报》 SCIE CAS CSCD 北大核心 2001年第5期491-493,共3页
基金 国家自然科学基金资助项目 ( 2 97730 48)
关键词 纳米分子筛 微米分子筛 ZSM-5沸石 热稳定性 比热 催化剂 nanosized zeolite, microsized zeolite, ZSM 5 zeolite, thermostability, specific heat
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参考文献5

  • 1王中南 殷行知 等.-[J].石油化工,1983,12(12):744-744.
  • 2Zhang W P Han X W.-[J].催化学报,2000,21(3):195-195.
  • 3Zhang W P,催化学报,2000年,21卷,3期,195页
  • 4Tan Zhch,J Therm Anal,1995年,45卷,1/2期,59页
  • 5王中南,石油化工,1983年,12卷,12期,744页

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