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Aqueous-Phase Hydrodeoxygenation of Biomass Sugar Alcohol into Renewable Alkanes over a Carbon-Supported Ruthenium with Phosphoric Acid Catalytic System

机译:用磷酸催化系统将生物质糖醇的水相加氢醇加入可再生烷烃中的可再生烷烃

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摘要

Recently, we demonstrated the catalytic conversion of biomass hydrolysate and real biomass into renewable alkanes over a Ru/C catalyst with aqueous phosphoric acid (Ru/C+H3PO4) and we obtained a high yield of C-5/C-6 alkanes. In this study, the mechanism of sorbitol hydrodeoxygenation (HDO) into alkanes over the Ru/C+H3PO4 catalytic system was investigated by using a trickle-bed reactor. A high HDO performance was detected with a large amount of long-chain alkanes in the products. Subsequently, pre- and postcharacterization studies (N-2 adsorption, XRD, X-ray photoelectron spectroscopy, TEM, NH3 temperature-programmed desorption, H-2 temperature-programmed reduction, FTIR spectroscopy) were performed on the relevant catalysts to study the change of the catalytic active sites. Moreover, mineral acid experiments were performed to study the influence of phosphoric acid on the HDO performance.
机译:最近,我们证明了使用磷酸水溶液(Ru / C + H3PO4)的Ru / C催化剂的可再生烷烃的生物量水解产物和实际生物质的催化转化为可再生烷烃(Ru / C + H3PO4),得到高产C-5 / C-6烷烃。 在该研究中,通过使用涓流床反应器研究了Ru / C + H3PO4催化体系上山梨糖醇加氢脱氧(HDO)在烷烃中的机制。 用大量的产品中检测到高HDO性能。 随后,对相关催化剂进行了预先形成的研究(N-2吸附,XRD,XRD,X射线光电子光谱,TEM,NH 3温度编程的解吸,H-2温度编程的还原,FTIR光谱),以研究变化 催化活性位点。 此外,进行无机酸实验以研究磷酸对HDO性能的影响。

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