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首页> 外文期刊>Topics in Catalysis >Palladium Catalysts for Fatty Acid Deoxygenation: Influence of the Support and Fatty Acid Chain Length on Decarboxylation Kinetics
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Palladium Catalysts for Fatty Acid Deoxygenation: Influence of the Support and Fatty Acid Chain Length on Decarboxylation Kinetics

机译:脂肪酸脱氧的钯催化剂:载体和脂肪酸链长对脱羧动力学的影响

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Supported metal catalysts containing 5 wt% Pd on silica, alumina, and activated carbon were evaluated for liquid-phase deoxygenation of stearic (octadecanoic), lauric (dodecanoic), and capric (decanoic) acids under 5 % H2 at 300 °C and 15 atm. On-line quadrupole mass spectrometry (QMS) was used to measure CO + CO2 yield, CO2 selectivity, H2 consumption, and initial decarboxylation rate. Post-reaction analysis of liquid products by gas chromatography was used to determine n-alkane yields. The Pd/C catalyst was highly active and selective for stearic acid (SA) decarboxylation under these conditions. In contrast, SA deoxygenation over Pd/SiO2 occurred primarily via decarbonylation and at a much slower rate. Pd/Al2O3 exhibited high initial SA decarboxylation activity but deactivated under the test conditions. Similar CO2 selectivity patterns among the catalysts were observed for deoxygenation of lauric and capric acids; however, the initial decarboxylation rates tended to be lower for these substrates. The influence of alkyl chain length on deoxygenation kinetics was investigated for a homologous series of C10–C18 fatty acids using the Pd/C catalyst. As fatty acid carbon number decreases, reaction time and H2 consumption increase, and CO2 selectivity and initial decarboxylation rate decrease. The increase in initial decarboxylation rates for longer chain fatty acids is attributed to their greater propensity for adsorption on the activated carbon support.
机译:在300%的H2下,评估了在二氧化硅,氧化铝和活性炭上载有5 wt%Pd的负载型金属催化剂对硬脂酸(十八烷酸),月桂酸(十二烷酸)和癸酸(癸酸)的液相脱氧 °C和15个大气压。在线四极杆质谱(QMS)用于测量CO + CO2 的收率,CO2 的选择性,H2 的消耗和初始脱羧速率。通过气相色谱法对液体产物进行后反应分析,以确定正构烷烃的收率。 Pd / C催化剂具有很高的活性,并且在这些条件下对硬脂酸(SA)脱羧具有选择性。相比之下,Pd / SiO2 上的SA脱氧主要是通过脱羰发生的,并且速率要慢得多。 Pd / Al2 O3 表现出较高的初始SA脱羧活性,但在测试条件下失活。在月桂酸和癸酸的脱氧反应中,观察到了相似的催化剂选择性。然而,这些底物的初始脱羧速率往往较低。用Pd / C催化剂研究了C10 –C18 同系脂肪酸系列烷基链长度对脱氧动力学的影响。随着脂肪酸碳原子数的减少,反应时间和H2 的消耗增加,CO2 的选择性和初始脱羧速率降低。较长链脂肪酸的初始脱羧速率的增加归因于它们更大的吸附在活性炭载体上的倾向。

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