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Information Journal Paper

Title

SYNTHESIS OF SPECIFIC IONIC LIQUIDS BY HALIDE ANION METATHESIS AND COMPARISON WITH ACID-BASE NEUTRALIZATION METHOD

Pages

  59-66

Abstract

 Mg1-xZrxNiO3 PEROVSKITE NANOCATALYSTs were synthesized by citrate sol-gel method.The synthesized samples were characterized by using X-ray diffraction (XRD), temperature programmed reduction (TPR), and inductively coupled plasma (ICP) techniques. Surface areas of the samples were measured by BET method. Morphology study of the NANOCATALYSTs was performed using scanning and transmission electron microscopy (SEM and TEM). The XRD patterns of the samples showed that Zr doping level was 0.4 for Mg1-xZrxNiO3. The SEM images showed that the synthesized particles were in nanoscale. The TPR analysis revealed that by increasing the amount of Zr up to x=0.3 in the prepared samples, the hydrogen consumption was increased and reduction process became easy. The catalytic activity of the NANOCATALYSTs was investigated in dry reforming of methane (DRM) with CO2 and the obtained results indicated that in the presence of synthesized NANOCATALYSTs, decreasing trend of H2/CO ratio was as below: Mg0.7Zr0.3NiO3>Mg0.9Zr0.1NiO3>MgNiO3

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    APA: Copy

    TALAIE, N., AGHABOZORG, H.R., HOSSAINI SADR, M., & ZARE, K.. (2017). SYNTHESIS OF SPECIFIC IONIC LIQUIDS BY HALIDE ANION METATHESIS AND COMPARISON WITH ACID-BASE NEUTRALIZATION METHOD. JOURNAL OF APPLIED RESEARCHES IN CHEMISTRY (JARC), 11(1), 59-66. SID. https://sid.ir/paper/180197/en

    Vancouver: Copy

    TALAIE N., AGHABOZORG H.R., HOSSAINI SADR M., ZARE K.. SYNTHESIS OF SPECIFIC IONIC LIQUIDS BY HALIDE ANION METATHESIS AND COMPARISON WITH ACID-BASE NEUTRALIZATION METHOD. JOURNAL OF APPLIED RESEARCHES IN CHEMISTRY (JARC)[Internet]. 2017;11(1):59-66. Available from: https://sid.ir/paper/180197/en

    IEEE: Copy

    N. TALAIE, H.R. AGHABOZORG, M. HOSSAINI SADR, and K. ZARE, “SYNTHESIS OF SPECIFIC IONIC LIQUIDS BY HALIDE ANION METATHESIS AND COMPARISON WITH ACID-BASE NEUTRALIZATION METHOD,” JOURNAL OF APPLIED RESEARCHES IN CHEMISTRY (JARC), vol. 11, no. 1, pp. 59–66, 2017, [Online]. Available: https://sid.ir/paper/180197/en

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