Hancsók Jeno, Baladincz Péter, Kasza Tamás, Kovács Sándor, Tóth Csaba, Varga Zoltán
MOL Department of Hydrocarbon and Coal Processing, University of Pannonia, H-8201 Veszprém, P.O. Box 158, Hungary.
J Biomed Biotechnol. 2011;2011:384184. doi: 10.1155/2011/384184. Epub 2011 Mar 2.
Besides the second generations bio fuels, one of the most promising products is the bio gas oil, which is a high iso-paraffin containing fuel, which could be produced by the catalytic hydrogenation of different triglycerides. To broaden the feedstock of the bio gas oil the catalytic hydrogenation of waste lard over sulphided NiMo/Al(2)O(3) catalyst, and as the second step, the isomerization of the produced normal paraffin rich mixture (intermediate product) over Pt/SAPO-11 catalyst was investigated. It was found that both the hydrogenation and the decarboxylation/decarbonylation oxygen removing reactions took place but their ratio depended on the process parameters (T = 280-380°C, P = 20-80 bar, LHSV = 0.75-3.0 h(-1) and H(2)/lard ratio: 600 Nm(3)/m(3)). In case of the isomerization at the favourable process parameters (T = 360-370°C, P = 40-50 bar, LHSV = 1.0 h(-1) and H(2)/hydrocarbon ratio: 400 Nm(3)/m(3)) mainly mono-branching isoparaffins were obtained. The obtained products are excellent Diesel fuel blending components, which are practically free of heteroatoms.
除了第二代生物燃料外,最有前景的产品之一是生物瓦斯油,它是一种富含异构石蜡的燃料,可通过不同甘油三酯的催化加氢来生产。为了拓宽生物瓦斯油的原料范围,研究了在硫化NiMo/Al₂O₃催化剂上对废猪油进行催化加氢,以及第二步在Pt/SAPO-11催化剂上对所产生的富含正构石蜡的混合物(中间产物)进行异构化。结果发现,加氢反应和脱羧/脱羰除氧反应都发生了,但它们的比例取决于工艺参数(T = 280 - 380°C,P = 20 - 80 bar,LHSV = 0.75 - 3.0 h⁻¹以及H₂/猪油比:600 Nm³/m³)。在有利的工艺参数(T = 360 - 370°C,P = 40 - 50 bar,LHSV = 1.0 h⁻¹以及H₂/烃比:400 Nm³/m³)下进行异构化时,主要得到单支链的异构石蜡。所获得的产品是优良的柴油调合组分,实际上不含杂原子。