David Elena, Armeanu Adrian
National Research Institute of Cryogenics & Isotopic Technologies, Street Uzinei No. 4, P.O. Râureni, P.O. Box 7, 240050 Râmnicu Vâlcea, Romania.
Nanomaterials (Basel). 2022 Jun 8;12(12):1960. doi: 10.3390/nano12121960.
By loading Cr and Zn on 13X zeolite, efficient nanocatalysts were prepared; they were characterized by different techniques and used for corn cobs pyrolysis to produce bio-oil. The corn cobs biomass (CCB) was washed with sulfuric acid 0.1 M, and the characteristics of the pretreated biomass (PTCCB) were analyzed. Pyrolysis was performed at different catalyst-to-biomass ratios (C/B), and the composition of the obtained bio-oil was determined. The results showed that the crystallinity of the nanocatalysts was slightly lower than that of the pattern 13X zeolite. The surface observation of the nanocatalysts showed the presence of pores and particles, which are quite evenly dispersed on the surface, and no difference was observed in the morphology of the Zn/13X zeolite and Cr /13X zeolite nanocatalysts. In comparison to 13X zeolite, the morphological changes, metal dispersion, and surface area decrease of both Zn/13X and Cr/13X zeolite nanocatalysts could be observed. Pyrolysis tests demonstrated that the use of Zn/13X zeolite and Cr/13X zeolite nanocatalysts could be very profitable to obtain a high conversion to hydrocarbons of the compounds containing oxygen, and consequently, the quality of the bio-oil was improved.
通过在13X沸石上负载铬和锌,制备了高效的纳米催化剂;采用不同技术对其进行表征,并将其用于玉米芯热解以生产生物油。用0.1M硫酸洗涤玉米芯生物质(CCB),并分析预处理生物质(PTCCB)的特性。在不同的催化剂与生物质比例(C/B)下进行热解,并测定所得生物油的组成。结果表明,纳米催化剂的结晶度略低于标准13X沸石。纳米催化剂的表面观察显示存在孔隙和颗粒,它们在表面上分布相当均匀,并且在Zn/13X沸石和Cr/13X沸石纳米催化剂的形态上未观察到差异。与13X沸石相比,可以观察到Zn/13X和Cr/13X沸石纳米催化剂的形态变化、金属分散和表面积减小。热解试验表明,使用Zn/13X沸石和Cr/13X沸石纳米催化剂对于使含氧化合物向烃类的高转化率非常有利,因此提高了生物油的质量。