Center for Convergent Chemical Process, Korea Research Institute of Chemical Technology, 141 Gajeong-ro, Yusong, Daejeon 34114, Republic of Korea.
Biomass and Water Energy Laboratory, Korea Institute of Energy Research, 152 Gajeong-ro, Yusong, Daejeon 34129, Republic of Korea.
J Nanosci Nanotechnol. 2019 Apr 1;19(4):2443-2448. doi: 10.1166/jnn.2019.16111.
The effects of catalyst supports on catalyst performance in the hydrotreatment of vegetable oils (to produce fuel-range hydrocarbons such as gasoline, jet fuel, and diesel) were investigated, using three types of zeolites (ZSM-5, HY, and zeolite-beta (BEA)) that differ in their silica/alumina ratios. Structural characterization of the catalysts was performed using ICP, XRD, BET, TEM, and NH₃-TPD. Catalytic tests were carried out in a fixed-bed reaction system at 400 °C and 50 bar. In the hydrotreatment of soybean oil, higher conversions into liquid hydrocarbons and fuel-range hydrocarbons were found when supports with lower Si/Al₂ ratios were used. Specifically, Pt/BEA (Si/Al₂ = 25) produced the highest conversion into liquid products (72%) and the highest selectivity for hydrocarbons in the jet fuel (46%) and diesel (51%) fuels. A Pt loading amount of 3 wt% in this catalyst gave the best catalytic performance because of the optimal balance between acidic and metallic sites. Finally, the kinds of vegetable oils in the hydrotreatment performance over Pt/BEA (Si/Al₂ = 25) affected the order; waste-cooking oil > jatropha oil > soybean oil.
考察了三种不同硅铝比的沸石(ZSM-5、HY 和沸石-β(BEA))作为催化剂载体对植物油加氢处理(生产汽油、喷气燃料和柴油等燃料范围内的烃类)性能的影响。采用 ICP、XRD、BET、TEM 和 NH₃-TPD 对催化剂进行了结构表征。在 400°C 和 50 巴的固定床反应系统中进行了催化测试。在大豆油的加氢处理中,使用 Si/Al₂ 比值较低的载体时,液体烃和燃料范围内的烃的转化率更高。具体而言,Pt/BEA(Si/Al₂ = 25)的液体产物转化率最高(72%),喷气燃料(46%)和柴油(51%)燃料中烃的选择性最高。由于酸性位和金属位之间的最佳平衡,该催化剂中 3wt%的 Pt 负载量表现出最佳的催化性能。最后,Pt/BEA(Si/Al₂ = 25)加氢处理性能中各种植物油的影响顺序为:废食用油>麻疯树油>大豆油。