Akhgar Sahar, Towfighi Jafar, Hamidzadeh Marzieh
Chemical Engineering Department, Tarbiat Modares University P.O. Box 14115-143 Tehran Iran
National Petrochemical Company, Petrochemical Research and Technology Company P.O. Box 1435884711 Tehran Iran.
RSC Adv. 2020 Sep 17;10(57):34474-34485. doi: 10.1039/d0ra05673a. eCollection 2020 Sep 16.
SAPO-34 catalysts were synthesized through the seeding approach under different seed conditions. The different seed synthesis times (6 h, 12 h, and 24 h) and three types of seeds were evaluated: the dried seed, the calcined seed, and the mother liquor from an unseeded synthesis, called the solution seed. Pure SAPO-34 was obtained using 12 h and 24 h solution seeds, in which a 40% reduction of template consumption was achieved simultaneously. All seeding induced samples represented higher catalytic performance in the MTO process than conventional SAPO-34 due to the smaller crystallite/particle sizes and larger external surface areas and mesopore volume. Furthermore, the changes in the acidity of samples affect their performance. The maximum olefin selectivity under industrial feed conditions (72 wt% methanol in water) was 91.79% for the sample prepared from the 12 h solution seed, which was 14.43% higher than the unseeded sample. Although this sample did not have the longest lifetime, it showed a 330 min lifespan, which was at least twice more than that of the conventional one (150 min). The sample prepared from the 6 h solution seed showed the longest lifetime of more than 500 min among all catalysts, although it was contaminated with a little SAPO-5.
通过晶种法在不同晶种条件下合成了SAPO - 34催化剂。评估了不同的晶种合成时间(6小时、12小时和24小时)以及三种类型的晶种:干燥晶种、煅烧晶种和未加晶种合成的母液(称为溶液晶种)。使用12小时和24小时的溶液晶种获得了纯SAPO - 34,同时模板消耗降低了40%。由于微晶/颗粒尺寸较小、外表面积较大和中孔体积较大,所有晶种诱导的样品在甲醇制烯烃(MTO)过程中均表现出比传统SAPO - 34更高的催化性能。此外,样品酸度的变化会影响其性能。在工业进料条件(水中72 wt%甲醇)下,由12小时溶液晶种制备的样品的最大烯烃选择性为91.79%,比未加晶种的样品高14.43%。尽管该样品的寿命不是最长的,但它的寿命为330分钟,至少是传统样品(150分钟)的两倍。在所有催化剂中,由6小时溶液晶种制备的样品寿命最长,超过500分钟,尽管它被少量的SAPO - 5污染。