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Information Journal Paper

Title

SYNTHESIS OF 4A NANO ZEOLITE FOR DEHYDRATION OF 2-DIMETHYLAMINOETHYLAZIDE LIQUID FUEL AND THE FEASIBILITY OF ITS PENETRATING IN THE PORES OF ZEOLITE

Pages

  61-69

Abstract

 Liquid fuel dimethyl amino ethyl azide (DMAZ) is a novel and carcinogenic fuel in space industries. To satisfy the space standards in the fuel production, the water from the process should be removed by adsorption. In this research, 4A nano-zeolite was synthesized using hydrothermal method for DEHYDRATION of liquid fuel DIMETHYLAMINOETHYLAZIDE (DMAZ). In order to calculate the adsorption capacity, the experimental data were collected and fitted with various ISOTHERMs. The obtained results showed that the Langmuir ISOTHERM describes well the adsorption behavior of 4A zeolite. Also, to investigate the PENETRATING of DMAZ molecules into pores of zeolite, firstly, the penetration was evaluated by Koresh-Soffer theory, and then, validated using the thermal analysis. The results reveal that the DMAZ molecules cannot penetrate into zeolite pores and the zeolite is perfectly suited for DEHYDRATION. This leads to no losses of the fuel during purification process in industrial scale.

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  • Cite

    APA: Copy

    GHANBARI, SH., BABAEI, S., & AZIZI, H.R.. (2018). SYNTHESIS OF 4A NANO ZEOLITE FOR DEHYDRATION OF 2-DIMETHYLAMINOETHYLAZIDE LIQUID FUEL AND THE FEASIBILITY OF ITS PENETRATING IN THE PORES OF ZEOLITE. JOURNAL OF APPLIED RESEARCHES IN CHEMISTRY (JARC), 11(4 ), 61-69. SID. https://sid.ir/paper/179996/en

    Vancouver: Copy

    GHANBARI SH., BABAEI S., AZIZI H.R.. SYNTHESIS OF 4A NANO ZEOLITE FOR DEHYDRATION OF 2-DIMETHYLAMINOETHYLAZIDE LIQUID FUEL AND THE FEASIBILITY OF ITS PENETRATING IN THE PORES OF ZEOLITE. JOURNAL OF APPLIED RESEARCHES IN CHEMISTRY (JARC)[Internet]. 2018;11(4 ):61-69. Available from: https://sid.ir/paper/179996/en

    IEEE: Copy

    SH. GHANBARI, S. BABAEI, and H.R. AZIZI, “SYNTHESIS OF 4A NANO ZEOLITE FOR DEHYDRATION OF 2-DIMETHYLAMINOETHYLAZIDE LIQUID FUEL AND THE FEASIBILITY OF ITS PENETRATING IN THE PORES OF ZEOLITE,” JOURNAL OF APPLIED RESEARCHES IN CHEMISTRY (JARC), vol. 11, no. 4 , pp. 61–69, 2018, [Online]. Available: https://sid.ir/paper/179996/en

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