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Hydrodeoxygenation of Methyl Pa Imitate over Supported Ni Catalysts for Diesel-like Fuel Production

机译:甲基Pa的加氢氧基模拟用于柴油状燃料生产的负载的Ni催化剂

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Catalytic hydrodeoxygenation (HDO) of vegetable oils to renewable alkane-type biofuels has attracted more and more concern in recent years. However, the presently used catalysts were mainly focused on the sulfided CoMo and NiMo catalysts, which inevitably posed sulfur contamination in final products. Therefore, exploring nonsulfured catalyst for this processing is of fundamental importance, but it is still an open challenge. In this paper, we prepared the sulfur free Ni supported on SiO2, γ-Al2O3, SAPO-11, HZSM-5, and HY by incipient wetness impregnation and tested the catalytic performance in HDO of methyl palmitate. Alkanes with long carbon chains were mainly produced with two possibly parallel approaches: hydrogenation of hexadecanal to hexadecanol, followed by dehydration/hydrogenation to C_(16) alkane and decarbonylaton/ decarboxylation of hexadecanoic acid to C_(15) alkane. The acidity of catalysts significantly influenced their catalytic performance, and the Ni/SAPO-11 catalysts with weak and medium acidity showed superior properties to,the other catalysts due to tire synergistic effect of metal Ni and acidic support. The maximum yield of 93% for C_(15+) alkanes was observed oyer .7 wt % Ni/ SAPO-11 under the mild reaction conditions of 493 K and 2 MPa, indicating its promising application in this reaction.
机译:植物油至可再生烷烃型生物燃料的催化加氢脱氧(HDO)吸引了近年来的越来越关注。然而,目前使用的催化剂主要集中在硫化物COMO和NIMO催化剂上,这在最终产品中不可避免地占硫污染。因此,探索该处理的非肺型催化剂具有重要意义,但它仍然是一个开放的挑战。在本文中,我们制备了SiO2,γ-Al2O3,SAPO-11,HZSM-5和Hy的硫Ni,通过初始湿润浸渍测试并测试了甲基棕榈酸甲基HDO中的催化性能。具有长碳链的烷烃主要用两种可能并联方法产生:十六烷醇的氢化至十六甲烷醇,然后脱水/氢化至C_(16)烷烃和十六烷酸脱羧至C_(15)烷烃的甲烷基化。催化剂的酸度显着影响了它们的催化性能,并且由于金属Ni和酸性载体的轮胎协同作用,Ni / Sapo-11具有弱和中等酸度的催化剂的优异性能。在493k和2MPa的温和反应条件下观察到C_(15+)烷烃的最大产率为93%的C_(15+)烷烃,表明其在该反应中的有望应用。

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