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首页> 外文期刊>Catalysis Today >Selective hydrogenolysis of biomass-derived xylitol to ethylene glycol and propylene glycol on Ni/C and basic oxide-promoted Ni/C catalysts
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Selective hydrogenolysis of biomass-derived xylitol to ethylene glycol and propylene glycol on Ni/C and basic oxide-promoted Ni/C catalysts

机译:Ni / C和碱性氧化物促进的Ni / C催化剂上生物质衍生的木糖醇选择性氢解为乙二醇和丙二醇

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The selective hydrogenolysis of xylitol to ethylene glycol and propylene glycol was examined on Ni/C catalysts in the presence of solid bases, e.g. Ca(OH)2 and CeO2, physically mixed with or co-supported with Ni on C. Compared with Ru/C, the Ni/C catalysts were more selective to the two target glycols under identical conditions, apparently as a result of their lower hydrogenation activity and consequently favored the C—C cleavage of xylose intermediate by the base catalyst over its competitive hydrogenation on the Ni particles. Noticeably, the presence of the solid bases rendered the Ni particles resistant to leaching and sintering, and thus stable in the xylitol hydrogenolysis. Supporting the solid bases, especially CeO2 and CaO, with the Ni particles on C led not only to a reduction in the amount of solid bases required, but also efficient formation of the two glycols with negligible lactic acid. For instance, on Ni-CaO/C (at a CaO/Ni molar ratio of 0.66), the combined selectivity to ethylene glycol and propylene glycol, together with glycerol, reached 69.5% at nearly 100% xylitol conversion at 473 K, 4.0 MPa H2. These features of the basic oxide-promoted Ni catalysts show their promising advantages over the noble Ru catalysts, upon optimization of their compositions and structures, and the reaction parameters, for the efficient hydrogenolysis of xylitol and other lignocellulose-derived polyols to produce the two target glycols.
机译:在Ni / C催化剂上,在固体碱例如NaCl的存在下,检测了木糖醇选择性氢解为乙二醇和丙二醇。 Ca(OH)2和CeO2,与Ni在碳上物理混合或共同负载。与Ru / C相比,Ni / C催化剂在相同条件下对两种目标二醇的选择性更高,这显然是由于它们的较低含量氢化活性,因此相对于其在Ni颗粒上的竞争性氢化,更有利于碱性催化剂对木糖中间体的C-C裂解。明显地,固体碱的存在使Ni颗粒具有抗浸出和烧结的能力,因此在木糖醇氢解中是稳定的。用C上的Ni颗粒支撑固体碱,尤其是CeO2和CaO,不仅导致所需固体碱的量减少,而且还可以有效地形成乳酸含量低的两种二醇。例如,在Ni-CaO / C上(CaO / Ni摩尔比为0.66),在473 K,4.0 MPa下几乎100%的木糖醇转化率下,对乙二醇和丙二醇以及甘油的组合选择性达到69.5%。 H2。碱性氧化物促进的Ni催化剂的这些特征在优化其组成和结构以及反应参数方面表现出优于贵金属Ru催化剂的前景光明的优势,它们可有效地木糖醇和其他木质纤维素衍生的多元醇加氢水解以生成两个目标乙二醇。

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