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碳载体、封端剂用量及钯纳米颗粒尺寸对由粘康酸和粘康酸钠生产生物己二酸的影响。

Effect of Carbon Support, Capping Agent Amount, and Pd NPs Size for Bio-Adipic Acid Production from Muconic Acid and Sodium Muconate.

作者信息

Capelli Sofia, Motta Davide, Evangelisti Claudio, Dimitratos Nikolaos, Prati Laura, Pirola Carlo, Villa Alberto

机构信息

Dipartimento di Chimica, Università degli Studi di Milano, via C. Golgi 19, 20133 Milan, Italy.

School of Chemistry, Cardiff Catalysis Institute, Cardiff University, Park Place, Cardiff CF10 3AT, UK.

出版信息

Nanomaterials (Basel). 2020 Mar 11;10(3):505. doi: 10.3390/nano10030505.

Abstract

The effect of support, stabilizing agent, and Pd nanoparticles (NPs) size was studied for sodium muconate and t,t-muconic acid hydrogenation to bio-adipic acid. Three different activated carbons (AC) were used (Norit, KB, and G60) and carbon morphology did not affect the substrate conversion, but it greatly influenced the adipic acid yield. 1% Pd/KB Darco catalyst, which has the highest surface area and Pd surface exposure, and the smallest NPs size displayed the highest activity. Furthermore, the effect of the amount of the protective agent was studied varying metal/protective agent weight ratios in the range of 1/0.00-1/1.20, using KB as the chosen support. For sodium muconate reduction 1% Pd/KB_1.2 catalyst gave the best results in terms of activity (0.73 s), conversion, and adipic acid yield (94.8%), while for t,t-muconic acid hydrogenation the best activity result (0.85 s) was obtained with 1% Pd/KB_0.0 catalyst. Correlating the results obtained from XPS and TEM analyses with catalytic results, we found that the amount of PVA (polyvinyl alcohol) influences mean Pd NPs size, Pd(0)/Pd(II) ratio, and Pd surface exposure. Pd(0)/Pd(II) ratio and Pd NPs size affected adipic acid yield and activity during sodium muconate hydrogenation, respectively, while adipic acid yield was related by exposed Pd amount during t,t-muconic acid hydrogenation. The synthesized catalysts showed higher activity than commercial 5% Pd/AC.

摘要

研究了载体、稳定剂和钯纳米颗粒(NPs)尺寸对粘康酸钠和反,反-粘康酸加氢制生物己二酸的影响。使用了三种不同的活性炭(AC)(Norit、KB和G60),碳形态不影响底物转化率,但对己二酸产率有很大影响。具有最高表面积和钯表面暴露量且NPs尺寸最小的1% Pd/KB Darco催化剂表现出最高活性。此外,以KB为选定载体,研究了保护剂用量的影响,改变金属/保护剂重量比在1/0.00 - 1/1.20范围内。对于粘康酸钠还原,1% Pd/KB_1.2催化剂在活性(0.73 s)、转化率和己二酸产率(94.8%)方面给出了最佳结果,而对于反,反-粘康酸加氢,1% Pd/KB_0.0催化剂获得了最佳活性结果(0.85 s)。将XPS和TEM分析得到的结果与催化结果相关联,我们发现聚乙烯醇(PVA)的量会影响钯NPs的平均尺寸、Pd(0)/Pd(II)比率和钯表面暴露量。在粘康酸钠加氢过程中,Pd(0)/Pd(II)比率和钯NPs尺寸分别影响己二酸产率和活性,而在反,反-粘康酸加氢过程中,己二酸产率与暴露的钯量有关。合成的催化剂表现出比市售5% Pd/AC更高的活性。

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