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Hollow Fibers Networked with Perovskite Nanoparticles for H2 Production from Heavy Oil

机译:中空纤维与钙钛矿纳米颗粒网络连接可从重油中生产氢气

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摘要

Design of catalytic materials has been highlighted to build ultraclean use of heavy oil including liquid-to-gas technology to directly convert heavy hydrocarbons into H2–rich gas fuels. If the H2 is produced from such heavy oil through high-active and durable catalysts in reforming process that is being constructed in hydrogen infrastructure, it will be addressed into renewable energy systems. Herein, the three different hollow fiber catalysts networked with perovskite nanoparticles, LaCr0.8Ru0.2O3, LaCr0.8Ru0.1Ni0.1O3, and LaCr0.8Ni0.2O3 were prepared by using activated carbon fiber as a sacrificial template for H2 production from heavy gas oil reforming. The most important findings were arrived at: (i) catalysts had hollow fibrous architectures with well-crystallized structures, (ii) hollow fibers had a high specific surface area with a particle size of ≈50 nm, and (iii) the Ru substituted ones showed high efficiency for H2 production with substantial durability under high concentrations of S, N, and aromatic compounds.
机译:强调了催化材料的设计,以建立包括油制气技术在内的重油的超净利用,以将重烃直接转化为富含H2的气体燃料。如果氢气是在氢基础设施中正在建设的重整过程中通过高活性和持久性催化剂从此类重油中产生的,那么它将被用于可再生能源系统。在此,通过使用活性炭纤维作为牺牲模板从重气中生产H2,制备了三种不同的中空纤维催化剂,它们与钙钛矿纳米颗粒网络化,LaCr0.8Ru0.2O3,LaCr0.8Ru0.1Ni0.1O3和LaCr0.8Ni0.2O3石油重整。最重要的发现是:(i)催化剂具有中空纤维结构且具有良好的结晶结构;(ii)中空纤维具有高的比表面积,粒径约为≈50nm,以及(iii)Ru取代的在高浓度的S,N和芳族化合物下,H2的生产效率很高,并且具有相当的耐久性。

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