首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Effect of Pd Precursor Salts on the Chemical State Particle Size and Performance of Activated Carbon-Supported Pd Catalysts for the Selective Hydrogenation of Palm Biodiesel
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Effect of Pd Precursor Salts on the Chemical State Particle Size and Performance of Activated Carbon-Supported Pd Catalysts for the Selective Hydrogenation of Palm Biodiesel

机译:PD前体盐对棕榈生物柴油选择性氢化的活性炭负载PD催化剂的化学状态粒度和性能的影响

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摘要

To improve the oxidative stability of biodiesel fuel (BDF), the polyunsaturated fatty acid methyl esters (poly-FAME) presented in commercial palm oil-derived biodiesel fuel (palm-BDF) were selectively hydrogenated to monounsaturated fatty acid methyl esters (mono-FAME) under a mild condition (80 °C, 0.5 MPa) using activated carbon (AC)-supported Pd catalysts with a Pd loading of 1 wt.%. The partially hydrotreated palm-BDF (denoted as H-FAME) which has low poly-FAME components is a new type of BDF with enhanced quality for use in high blends. In this study, we reported that the chemical states and particle sizes of Pd in the prepared Pd/AC catalysts were significantly influenced by the Pd precursors, Pd(NO3)2 and Pd(NH3)4Cl2, and thus varied their hydrogenation activity and product selectivity. The 1%Pd/AC (nit) catalyst, prepared using Pd(NO3)2, presented high performance for selective hydrogenation of poly-FAME into mono-FAME with high oxidation stability, owning to its large Pd particles (8.4 nm). Conversely, the 1%Pd/AC (amc) catalyst, prepared using Pd(NH3)4Cl2, contained small Pd particles (2.7 nm) with a little Cl residues, which could be completely removed by washing with an aqueous solution of 0.1 M NH4OH. The small Pd particles gave increased selectivity toward unwanted-FAME components, particularly the saturated fatty acid methyl esters during the hydrogenation of poly-FAME. This selectivity is unprofitable for improving the biodiesel quality.
机译:为了提高生物柴油燃料(BDF)的氧化稳定性,在商业棕榈油衍生的生物柴油(Palm-BDF)中呈现的多不饱和脂肪酸甲酯(Poly-FAME)被选择性地氢化到单不饱和脂肪酸甲酯(单声名)在温和的条件(80℃,0.5MPa)下,使用活性炭(AC)的Pd催化剂,Pd负载为1重量%。具有低多数组分的部分加氢处理棕榈-BDF(表示为H型)是一种新型BDF,具有增强的质量,用于高共混物。在这项研究中,我们认为制备的Pd / Ac催化剂中Pd的化学状态和粒度受到Pd前体,Pd(NO 3)2和Pd(NH 3)4Cl2的显着影响,因此改变了它们的氢化活性和产物选择性。使用Pd(NO 3)2制备的1%Pd / Ac(NIT)催化剂呈现高性能,以具有高氧化稳定性的聚烯烃聚酯氢化,其具有其大的Pd颗粒(8.4nm)。相反,使用Pd(NH 3)4Cl2制备的1%Pd / Ac(AMC)催化剂包含小的Pd颗粒(2.7nm),其中包含小的Cl残基,可以通过用0.1M NH 4 OH的水溶液洗涤完全除去。小的Pd颗粒对不需要的作用的组分产生了更高的选择性,特别是在聚集的氢化过程中饱和脂肪酸甲酯。这种选择性对提高生物柴油质量无利可图。

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