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Synthesis and modification of SAPO-34 nanoparticles by incorporation of metal ions using rapid high temperature method

机译:快速高温法掺入金属离子的合成与改性纳米粒子

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Considering studies done on the result of methanol conversion over SAP-34 molecular sieve, it is understood that increase of selectivity is ascribed to the increase of acidity in acid sites which is a result of incorporation of metal in crystal structure and decrease of crystal size. In this study, metal incorporation in the SAPO-34 structure leaded to increase of acid sites concentration but did not affect the acid strength distribution. The catalytic performance of the SAPO-34 nanoparticles in the MTO reaction varied according to their crystallite size. Decreasing particle size results in larger increase of external surface area and shorter diffusion path, both cause reduction in mass and heat transfer resistances in catalysis and sorption. In this work a rapid high-temperature synthesis method was developed to synthesis uniform nanoparticles of SAPO 34 zeolite with high cryslallinity and metal was successfully incorporated in crystal structure. In order to investigate the effects of temperature and synthesis time on purity and crystallinity of the synthesized samples, the crystallization temperature was increased from 350 to 550 K while the synthesis time was decreased from 24 h to 45 min. The samples were characterized by XRD, BET and SEM analysis techniques. It was found that by using high temperature and short synthesis time the particle size decreased and the metal was properly incorporated into the crystal structure.
机译:考虑到在SAP-34分子筛上的甲醇转化率的结果上进行的研究,应当理解,选择性的增加归因于酸性位点中的酸度的增加,这是在晶体结构中掺入金属的结果并降低晶体尺寸。在该研究中,在SAPO-34结构中的金属掺入引起酸性位点浓度的增加,但不影响酸强度分布。 MTO反应中的SAPO-34纳米颗粒的催化性能根据其微晶尺寸而变化。降低粒度导致外表面区域的较大增加和较短的扩散路径,催化和吸附中的质量和传热抗性的原因减小。在这项工作中,开发了一种快速的高温合成方法,为合成均匀的SAPO 34沸石纳米颗粒,具有高克里蒽酸盐,金属成功掺入晶体结构中。为了研究温度和合成时间对合成样品的纯度和结晶度的影响,结晶温度从350升至550 k,而合成时间从24小时降低到45分钟。样品的特征在于XRD,BET和SEM分析技术。发现,通过使用高温和短合成时间,粒度降低,金属被适当地掺入晶体结构中。

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