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利用FBR在还原氧化石墨烯催化剂上使用铁锰纳米颗粒由CO还原制备烯烃,并将其性能与SBR进行比较。

Utilizing FBR to produce olefins from CO reduction using Fe-Mn nanoparticles on reduced graphene oxide catalysts and comparing the performance with SBR.

作者信息

Nasser Al-Hassan, El-Naggar Hamada, Abdelmoneim Ahmed

机构信息

Materials Science and Engineering Department, Egypt-Japan University of Science and Technology New Borg El-Arab Alexandria 21934 Egypt

Chemical Engineering Department, Faculty of Engineering, Alexandria University Alexandria 11432 Egypt.

出版信息

RSC Adv. 2018 Dec 19;8(74):42415-42423. doi: 10.1039/c8ra09003c.

Abstract

Mn was used as a promoter for Fe nanoparticles (NPs) loaded on reduced graphene oxide (rGO). The prepared catalysts were the unpromoted Fe/rGO catalysts along with two Mn promoted catalysts FeMn16 and FeMn29. These catalysts were used as Fischer-Tropsch catalysts in a Fixed Bed Reactor (FBR). The operating conditions of the reactor, namely temperature, pressure and space velocity, were varied to evaluate the catalyst performance and the olefin productivity. The olefins were produced in maximum yields of 34.5% and 31.3% with FeMn29 at 320 and 340 °C respectively. The ratio of light to heavy olefins was three times higher at 340 °C. The catalysts showed good stability up to 50 h of interrupted operation while varying the conditions at each interruption. The performance of the catalysts in the FBR was compared with a previous investigation carried out in an SBR under identical conditions with the same catalysts. The FBR was found to be more Mn tolerant than the SBR, giving very high conversion activity with high Mn concentrations (FeMn29). The FBR produced olefins in much higher yields than the SBR. The SBR was more selective to light olefins at low temperatures and high Mn loading levels, while the FBR produced light olefins at higher selectivities at high temperatures and high Mn concentrations.

摘要

锰被用作负载在还原氧化石墨烯(rGO)上的铁纳米颗粒(NPs)的促进剂。制备的催化剂有无促进剂的Fe/rGO催化剂以及两种锰促进的催化剂FeMn16和FeMn29。这些催化剂在固定床反应器(FBR)中用作费托合成催化剂。改变反应器的操作条件,即温度、压力和空速,以评估催化剂性能和烯烃生产率。在320℃和340℃下,FeMn29催化生成烯烃的最大产率分别为34.5%和31.3%。在340℃时,轻质烯烃与重质烯烃的比例高出三倍。在每次中断时改变条件的情况下,催化剂在长达50小时的中断操作中表现出良好的稳定性。将FBR中催化剂的性能与之前在相同条件下使用相同催化剂在SBR中进行的研究进行了比较。发现FBR比SBR对锰的耐受性更强,在高锰浓度(FeMn29)下具有非常高的转化活性。FBR生产烯烃的产率远高于SBR。SBR在低温和高锰负载水平下对轻质烯烃更具选择性,而FBR在高温和高锰浓度下以更高的选择性生产轻质烯烃。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7361/9092152/9b1a4bff29bd/c8ra09003c-f1.jpg

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