首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Biosynthesized ruthenium nanoparticles supported on carbon nanotubes as efficient catalysts for hydrogenation of benzene to cyclohexane: An eco-friendly and economical bioreduction method
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Biosynthesized ruthenium nanoparticles supported on carbon nanotubes as efficient catalysts for hydrogenation of benzene to cyclohexane: An eco-friendly and economical bioreduction method

机译:碳纳米管上负载的生物合成钌纳米颗粒作为将苯加氢成环己烷的有效催化剂:一种生态友好且经济的生物还原方法

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摘要

Ru/carbon nanotubes (CNTs) catalysts synthesized by an environmentally benign and economical bioreduction approach were applied to the hydrogenation of benzene to cyclohexane under mild conditions without adding any solvent The catalysts were characterized by a variety of techniques including BET, TEM, HAADF-STEM -EDX, XRD, XPS, FTIR,TG, and DTG. The effect of various preparation parameters, such as Ru loading, preparation temperature and calcination temperature on the catalytic performance were systematically analyzed and the optimum conditions were found to be 2wt%, 60=C, and 500 °C, respectively. In terms of reaction conditions, the combination of reaction temperature at 80 °C under the pressure of 4 MPa, and the time length of 0.5 h proved to be optimum, under which the cycohexane yield of 99.97% along with the TOF value of 6983.09 h~(-1) were achieved. Such results could match or even outweigh those reported in the literature. Furthermore, efforts were also made to probe the stability of catalysts. In a word, the merits of excellent durability, sound productivity and preferable reusability grant the catalysts a promising future in the industrial application.
机译:通过无害环境和经济的生物还原方法合成的Ru /碳纳米管(CNTs)催化剂在温和条件下不加任何溶剂的条件下用于苯加氢制环己烷中。催化剂通过多种技术进行表征,包括BET,TEM,HAADF-STEM -EDX,XRD,XPS,FTIR,TG和DTG。系统分析了Ru负载量,制备温度和煅烧温度等各种制备参数对催化剂性能的影响,最佳条件分别为2wt%,60 = C和500°C。就反应条件而言,在4 MPa压力下于80°C的反应温度和0.5 h的时间长度的组合被证明是最佳的,在此条件下,环己烷的产率为99.97%,TOF值为698.09 h达到(-1)。这样的结果可能匹配甚至超过文献报道的结果。此外,还努力探索催化剂的稳定性。总之,优异的耐久性,良好的生产率和可重复使用性的优点使催化剂在工业应用中具有广阔的前景。

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