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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Pd Nanoparticles in a Supported Ionic Liquid Phase:Highly Stable Catalysts for Selective Acetylene Hydrogenation under Continuous-Flow Conditions
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Pd Nanoparticles in a Supported Ionic Liquid Phase:Highly Stable Catalysts for Selective Acetylene Hydrogenation under Continuous-Flow Conditions

机译:负载型离子液相中的Pd纳米颗粒:连续流动条件下用于选择性乙炔加氢的高度稳定的催化剂

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Monodispersed Pd nanoparticles of 5 and 10 nm were obtained via reduction of Pd(acac)2 dissolved in ionic liquid(IL),[bmim][PF6],or[bmimOH][TF2N],supported on carbon nanofibers(CNF)anchored to sintered metal fibers(SMF).Using[bmimOH][TF2N],the monodispersed Pd nanoparticles were synthesized by simple heating in the absence of an additional reducing agent.The supported ionic liquid phase Pd nanoparticles on the structured CNF/SMF composites were tested for the selective hydrogenation of acetylene to ethylene and showed excellent long-term stability.The IL cation-anion network surrounding the nanoparticles suppressed the formation of active-site ensembles,known to catalyze the oligomerization of acetylene,responsible for the catalyst deactivation.The reaction rate was controlled by the internal diffusion of the reactants through the IL phase.The solubility of acetylene and ethylene in[bmim][PF6]was analyzed by NMR spectroscopy,which showed an order of magnitude difference.The lower solubility of ethylene compared to acetylene in the IL results in a high selectivity to ethylene,up to 85% at 150°C.The catalytic system also demonstrated high efficiency and long-term stability without any deactivation in ethylene-rich feed(2 vol% of acetylene,40 vol% of ethylene,10 vol% of H2 in Ar),and therefore,the system shows promise for industrial application.
机译:通过还原固定在碳纳米纤维(CNF)上的负载在离子液体(IL),[bmim] [PF6]或[bmimOH] [TF2N]中的Pd(acac)2,可以得到5和10 nm的单分散Pd纳米颗粒。烧结金属纤维(SMF)。使用[bmimOH] [TF2N],在不添加其他还原剂的情况下,通过简单加热即可合成单分散的Pd纳米粒子。测试了结构化CNF / SMF复合材料上负载的离子液体Pd纳米粒子的结构。乙炔选择性氢化为乙烯,并表现出优异的长期稳定性。纳米粒子周围的IL阳离子阴离子网络抑制了活性位点簇的形成,该簇已知催化乙炔的低聚反应,这是催化剂失活的原因。反应速率乙炔和乙烯在[bmim] [PF6]中的溶解度通过NMR光谱分析,显示出一个数量级的差异。 IL中乙炔与乙炔相比具有更大的乙烯选择性,因此对乙烯的选择性很高,在150°C时高达85%。催化体系还显示出高效率和长期稳定性,而富含乙烯的进料(2体积%乙炔,乙烯的40体积%,氩气中的10体积%的H2),因此该系统具有工业应用前景。

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