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氮化硼及氮化硼基材料的脱硫

Desulfurization on Boron Nitride and Boron Nitride-based Materials.

作者信息

Rajendran Antony, Fan Hong-Xia, Feng Jie, Li Wen-Ying

机构信息

Training Base of State Key Laboratory of Coal Science and Technology Jointly Constructed by Shanxi Province Ministry of Science and Technology, Taiyuan University of Technology, Taiyuan, 030024, P. R. China.

出版信息

Chem Asian J. 2020 Jul 16;15(14):2038-2059. doi: 10.1002/asia.202000479. Epub 2020 Jun 12.

Abstract

Combustion of liquid fuels containing sulfur compounds is highly unfavorable due to the adverse effects caused by the resultant SO emission. Consequently, catalytic and adsorptive materials having the capacity to eliminate the sulfur compounds from liquid fuels are very attractive. Hexagonal boron nitride (BN), with its interesting chemical and physical properties, finds applications in diverse fields, especially in energy and environmental applications. Recently, BN and BN-based materials have gained significant interest in emerging desulfurization processes such as oxidative desulfurization and adsorptive desulfurization. In this review, BN and BN-based materials are elaborately discussed in the context of their use in various desulfurization techniques. A brief description about the different desulfurization processes is provided at the outset. The relationship between the characteristics (the defects, morphology, porosity and surface area) of BN and desulfurization efficiency is also summarized. Furthermore, the mechanistic insights regarding the action of BN materials in the desulfurization processes are discussed. With this review, the synthetic strategies for designing the novel BN-based catalysts/adsorbents for the effective desulfurization of liquid fuels can be grasped.

摘要

由于燃烧含硫化合物的液体燃料会产生SO排放,带来不利影响,因此这种燃烧是极不可取的。所以,具有从液体燃料中去除硫化合物能力的催化和吸附材料极具吸引力。六方氮化硼(BN)具有有趣的化学和物理性质,在多个领域都有应用,尤其是在能源和环境应用方面。最近,BN及基于BN的材料在新兴的脱硫工艺如氧化脱硫和吸附脱硫中引起了极大关注。在这篇综述中,将详细讨论BN及基于BN的材料在各种脱硫技术中的应用情况。首先会简要介绍不同的脱硫工艺。还总结了BN的特性(缺陷、形态、孔隙率和表面积)与脱硫效率之间的关系。此外,还讨论了关于BN材料在脱硫过程中作用的机理见解。通过这篇综述,可以掌握设计用于有效脱硫液体燃料的新型BN基催化剂/吸附剂的合成策略。

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