Abstract
有机液体储氢技术中催化剂应用的研究进展
Research progress in the application of catalysts for liquid organic hydrogen carrier technology
Received:April 28, 2022  
DOI:
中文关键词: 液态有机氢化物  储氢:加氢  脱氢  催化剂
英文关键词: liquid organic hydrides  hydrogen storage  hydrogenation  dehydrogenation  catalyst
基金项目:国家自然科学基金联合项目资助(U2102214)
Author NameAffiliation
GAO Yong Yunnan Precious Metals Lab Co.Ltd., Kunming 650106, China
Kunming Institute of Precious Metals, Kunming 650106, China 
CHEN Hui Yunnan Precious Metals Lab Co.Ltd., Kunming 650106, China 
LIU Feng Yunnan Precious Metals Lab Co.Ltd., Kunming 650106, China
Kunming Institute of Precious Metals, Kunming 650106, China 
LIU Jian Yunnan Precious Metals Lab Co.Ltd., Kunming 650106, China
Kunming Institute of Precious Metals, Kunming 650106, China 
LI Yuanming Yunnan Precious Metals Lab Co.Ltd., Kunming 650106, China
Kunming Institute of Precious Metals, Kunming 650106, China 
LI Yunyan Yunnan Precious Metals Lab Co.Ltd., Kunming 650106, China
Kunming Institute of Precious Metals, Kunming 650106, China 
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中文摘要:
      近年来,随着氢能的快速发展,储氢问题日益突出。有机液体储氢技术凭借其高密度、高储氢效率、高安全性的等优势,在氢气储运市场占据一席之地。目前,国外对此项技术的研究和应用较多,而国内的研究报道较少,应用也几近空白。本文主要介绍了有机液态储氢技术优势及难点,重点对目前国内外研究现状进行了阐述。通过对国内外加氢、脱氢贵金属催化剂和非贵金属催化剂研究现状的介绍,将为开发高效低成本加氢脱氢催化剂,研究最适宜的加氢与脱氢条件,推动液态有机物储氢技术大规模的应用与发展,提供可能性。
英文摘要:
      In recent years, with the rapid development of hydrogen energy, hydrogen storage has become an important issue. Due to having advantages of its high density, high hydrogen storage efficiency and high safety, ect, liquid organic hydrogen carrier will occupy a place in the future domestic hydrogen storage and transportation market. At present, there have been many researches and applications of this technology in foreign countries, but relatively few in China. In this paper, the advantages of and difficulties in this kind of hydrogen carrier are introduced. In particular, noble metal and non-noble metal catalysts for hydrogenation and dehydrogenation are highlighted herein. Development of catalysts with high efficiency and low cost is the key to the large-scale application of liquid organic hydrogen carrier technology.
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