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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Zeolite Y supported nickel phosphide catalysts for the hydrodenitrogenation of quinoline as a proxy for crude bio-oils from hydrothermal liquefaction of microalgae
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Zeolite Y supported nickel phosphide catalysts for the hydrodenitrogenation of quinoline as a proxy for crude bio-oils from hydrothermal liquefaction of microalgae

机译:沸石Y负载镍磷化镍催化剂,用于喹啉的磷化喹啉作为来自微藻水热液化的粗生物油的代理

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摘要

This work demonstrates the potential of zeolite Y supported nickel phosphide materials as highly active catalysts for the upgrading of bio-oil as an improved alternative to noble metal and transition metal sulphide systems. Our systematic work studied the effect of using different counterions (NH4 (+), H+, K+ and Na+) and Si/Al ratios (2.56 and 15) of the zeolite Y. It demonstrates that whilst the zeolite counterion itself has little impact on the catalytic activity of the bare Y-zeolite, it has a strong influence on the activity of the resulting nickel phosphide catalysts. This effect is related to the nature of the nickel phases formed during the synthesis process Zeolites containing K+ and Na+ favour the formation of a mixed Ni12P5/Ni2P phase, H+ Y produces both Ni2P and metallic Ni, whereas NH4 (+) Y produces pure Ni2P, which can be attributed to the strength of the phosphorus-aluminium interaction and the metal reduction temperature. Using quinoline as a model for the nitrogen-containing compounds in bio-oils, it is shown that the hydrodenitrogenation activity increases in the order Ni2P Ni-0 Ni12P5. While significant research has been dedicated to the development of bio-oils produced by thermal liquefaction of biomass, surprisingly little work has been conducted on the subsequent catalytic upgrading of these oils to reduce their heteroatom content and enable processing in conventional petrochemical refineries. This work provides important insights for the design and deployment of novel active transition metal catalysts to enable the incorporation of bio-oils into refineries.
机译:该工作证明了沸石Y负载镍磷化物材料的潜力作为高活性催化剂,用于将生物油提升为贵金属和过渡金属硫化物体系的改进替代方案。我们的系统工作研究了沸石Y的不同抗衡离子(NH 4(+),H +,K +和Na +和Na +和Na +)和Si / Al比率(2.56和15)的效果。它表明,沸石抗衡局本身对此产生影响很小裸沸石的催化活性,对所得镍磷化镍催化剂的活性产生强烈影响。这种效果与在含有K +和Na +的合成过程沸石期间形成的镍相的性质有关,优于形成混合的Ni12P5 / Ni2P相,H + Y产生Ni2P和金属Ni,而NH4(+)Y产生纯Ni2P ,这可以归因于磷铝相互作用的强度和金属还原温度。使用喹啉作为生物油中的含氮化合物的模型,示出了氢化活性的增加Ni2p& ni-0& NI12P5。虽然大量研究致力于发展生物量热液化产生的生物油的发展,但在随后的催化升级这些油的催化升级中进行了令人惊讶的是,以减少它们的杂原子含量,并在常规石化炼油厂中加工。这项工作为新型活性过渡金属催化剂的设计和部署提供了重要的见解,以使得生物油掺入炼油厂。

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