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利用源自软生物质残渣的高稳定性碳载钯基催化剂由甲酸制氢:碳载体热处理和功能化的影响

H Production from Formic Acid Using Highly Stable Carbon-Supported Pd-Based Catalysts Derived from Soft-Biomass Residues: Effect of Heat Treatment and Functionalization of the Carbon Support.

作者信息

Chaparro-Garnica Jessica Alejandra, Navlani-García Miriam, Salinas-Torres David, Morallón Emilia, Cazorla-Amorós Diego

机构信息

Department of Inorganic Chemistry and Materials Institute, University of Alicante, 03080 Alicante, Spain.

Department of Physical Chemistry and Materials Institute, University of Alicante, 03080 Alicante, Spain.

出版信息

Materials (Basel). 2021 Oct 29;14(21):6506. doi: 10.3390/ma14216506.

Abstract

The production of hydrogen from liquid organic hydrogen carrier molecules stands up as a promising option over the conventional hydrogen storage methods. In this study, we explore the potential of formic acid as a convenient hydrogen carrier. For that, soft-biomass-derived carbon-supported Pd catalysts were synthesized by a HPO-assisted hydrothermal carbonization method. To assess the impact of the properties of the support in the catalytic performance towards the dehydrogenation of formic acid, three different strategies were employed: (i) incorporation of nitrogen functional groups; (ii) modification of the surface chemistry by performing a thermal treatment at high temperatures (i.e., 900 °C); and (iii) combination on both thermal treatment and nitrogen functionalization. It was observed that the modification of the carbon support with these strategies resulted in catalysts with enhanced performance and outstanding stability even after six consecutive reaction cycles, thus highlighting the important effect of tailoring the properties of the support.

摘要

与传统的储氢方法相比,从液态有机氢载体分子中制氢是一种很有前景的选择。在本研究中,我们探索了甲酸作为一种便捷氢载体的潜力。为此,通过HPO辅助水热碳化法合成了软生物质衍生的碳载钯催化剂。为了评估载体性质对甲酸脱氢催化性能的影响,采用了三种不同的策略:(i)引入氮官能团;(ii)通过在高温(即900°C)下进行热处理来改性表面化学性质;(iii)热处理和氮官能化相结合。结果发现,采用这些策略对碳载体进行改性后,所得催化剂即使在连续六个反应循环后仍具有增强的性能和出色的稳定性,从而突出了调整载体性质的重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bccf/8585402/80a5a5184c3f/materials-14-06506-g001.jpg

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