National Biofuels Energy Laboratory, Next Energy, USA.
Bioresour Technol. 2012 Aug;118:37-42. doi: 10.1016/j.biortech.2012.04.035. Epub 2012 Apr 21.
A new class of zirconia supported mixed metal oxides (ZnO-TiO(2)-Nd(2)O(3)/ZrO(2) and ZnO-SiO(2)-Yb(2)O(3)/ZrO(2)) has demonstrated the ability to convert low quality, high free fatty acid (FFA) bio-oils into biodiesel. Pelletized catalysts of ZrO(2) supported metal oxides were prepared via a sol-gel process and tested in continuous flow packed bed reactors for up to 6 months. In a single pass, while operating at mild to moderate reaction conditions, 195 °C and 300 psi, these catalysts can perform simultaneous esterification and transesterification reactions on feedstock of 33% FFA and 67% soybean oil to achieve FAME yields higher than 90%. Catalytic activity of the ZrO(2) supported metal oxide catalysts was highly dependent on the metal oxide composition. These heterogeneous catalysts will enable biodiesel manufacturers to avoid problems inherent in homogeneous processes, such as separation and washing, corrosive conditions, and excessive methanol usage.
一种新型的氧化锆负载混合金属氧化物(ZnO-TiO(2)-Nd(2)O(3)/ZrO(2)和 ZnO-SiO(2)-Yb(2)O(3)/ZrO(2))已经证明能够将低质量、高游离脂肪酸(FFA)的生物油转化为生物柴油。通过溶胶-凝胶法制备了负载金属氧化物的氧化锆颗粒状催化剂,并在连续流动填充床反应器中进行了长达 6 个月的测试。在温和到中等反应条件下,在 195°C 和 300 psi 的条件下,这些催化剂可以对 FFA 含量为 33%和大豆油含量为 67%的原料进行同时酯化和酯交换反应,从而实现高于 90%的 FAME 产率。ZrO(2)负载金属氧化物催化剂的催化活性高度依赖于金属氧化物的组成。这些多相催化剂将使生物柴油制造商能够避免均相过程中固有的问题,如分离和洗涤、腐蚀性条件和甲醇过量使用。