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Aqueous-phase hydrogenation and hydrodeoxygenation of biomass-derived oxygenates with bimetallic catalysts

机译:生物质衍生的含氧化合物的双金属催化剂的水相加氢和加氢脱氧

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摘要

The reaction rate on a per site basis for aqueous-phase hydrogenation (APH) of propanal, xylose, and furfural was measured over various alumina-supported bimetallic catalysts (Pd-Ni, Pd-Co. Pd-Fe, Ru-Ni, Ru-Co, Ru-Fe, Pt-Ni, Pt-Co, and Pt-Fe) using a high-throughput reactor (HTR). The results in this paper demonstrate that the activity of bimetallic catalysts for hydrogenation of a carbbnyl group can be 110 times higher than monometallic catalysts. The addition of Fe to a Pd catalyst increased the activity for hydrogenation of propanal, xylose, and furfural. The Pd1Fe3 catalyst had the highest reaction rate for APH of propanal among all catalysts tested in the HTR. The addition of Fe to the Pd catalyst increased the reaction rate for xylose hydrogenation by a factor of 51, compared to the monometallic Pd catalyst. However, no bimetallic catalyst tested in this study was more active than the monometallic Ru catalyst for hydrogenation of xylose. The Pd1Fe3 catalyst had the highest reaction rate for APH of furfural, which was 9 times higher than the rate of the Pd catalyst. The Pd1Fe3/Zr-P, a bimetallic bifunctional catalyst, was 14 times more active on a per site basis than a Pd/Zr-P catalyst for aqueous-phase hydrodeoxygenation (HDO) of sorbitol in a continuous flow reactor. The addition of Fe to the Pd catalyst increased the rate of C-C cleavage reactions and promoted the conversion of sorbitan and isosorbide in HDO of sorbitol. Pd1Fe3/Zr-P also had a higher yield of gasoline-range products than the Pd/Zr-P catalyst.
机译:在各种氧化铝负载的双金属催化剂(Pd-Ni,Pd-Co。Pd-Fe,Ru-Ni,Ru上)上测量丙醛,木糖和糠醛的水相加氢(APH)的每点反应速率-Co,Ru-Fe,Pt-Ni,Pt-Co和Pt-Fe)使用高通量反应器(HTR)。本文的结果表明,双金属催化剂的羰基加氢活性可以比单金属催化剂高110倍。将铁添加到Pd催化剂中可提高丙醛,木糖和糠醛的氢化活性。在HTR中测试的所有催化剂中,Pd1Fe3催化剂对丙醛APH的反应速率最高。与单金属Pd催化剂相比,向Pd催化剂中添加Fe将木糖氢化的反应速率提高了51倍。但是,在本研究中测试的双金属催化剂没有比单金属Ru催化剂对木糖氢化的活性更高。 Pd1Fe3催化剂对糠醛APH的反应速率最高,是Pd催化剂的9倍。对于连续流反应器中的山梨糖醇水相加氢脱氧(HDO),双金属双功能催化剂Pd1Fe3 / Zr-P在每个位置的活性是Pd / Zr-P催化剂的14倍。在Pd催化剂中加入Fe可以提高C-C裂解反应的速度,并促进山梨糖醇HDO中脱水山梨糖醇和异山梨醇的转化。 Pd1Fe3 / Zr-P还比Pd / Zr-P催化剂具有更高的汽油范围产品收率。

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