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Catalytic Deoxygenation of C18 Fatty Acids Over Mesoporous Pd/C Catalyst for Synthesis of Biofuels

机译:介孔Pd / C催化剂上C18脂肪酸催化脱氧合成生物燃料

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Deoxygenation was systematically investigated using either stearic, oleic or linoleic acids as a feedstock at 300 °C under 1 vol% hydrogen in argon over a mesoporous Pd/C (Sibunit) catalyst producing one less carbon containing, diesel-like hydrocarbons. The results revealed that catalyst activity and selectivity increased with less unsaturated feedstock. The main products in the case of stearic acid were desired C17 hydrocarbons, whereas the amounts of C17 aromatic compounds increased in case of oleic and linoleic acids. Catalyst deactivation was relatively prominent in linoleic acid deoxygenation giving only 3% conversion of fatty acids in 330 min. The deactivation originated from the formation of C17 aromatic compounds and fatty acid dimers, which was confirmed by size exclusion chromatographic analysis. The latter compounds were formed via Diels–Alder reaction.
机译:使用硬脂酸,油酸或亚油酸作为原料在300℃,氩气中1%体积的氢气和介孔Pd / C(Sibunit)催化剂上进行脱氧的系统研究,该催化剂产生的碳含量较少,柴油样烃类含量较高。结果表明,催化剂活性和选择性随着不饱和原料的减少而增加。在硬脂酸的情况下,主要产物是所需的C17烃,而在油酸和亚油酸的情况下,C17芳族化合物的量增加。在亚油酸脱氧中,催化剂失活相对突出,在330分钟内仅产生3%的脂肪酸​​转化。失活源自C17芳族化合物和脂肪酸二聚体的形成,这已通过尺寸排阻色谱分析得到证实。后一种化合物是通过Diels-Alder反应形成的。

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