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首页> 外文期刊>International journal of hydrogen energy >Solvent effects on high-pressure hydrogen gas generation by dehydrogenation of formic acid using ruthenium complexes
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Solvent effects on high-pressure hydrogen gas generation by dehydrogenation of formic acid using ruthenium complexes

机译:钌配合物对甲酸脱氢对高压氢气产生的溶剂影响

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High-pressure H-2 was produced by the selective dehydrogenation of formic acid (DFA) using ruthenium complexes at mild temperatures in various organic solvents and water. Among the solvents studied, 1,4-dioxane was the best candidate for this reaction to generate high gas pressure of 20 MPa at 80 degrees C using the Ru complex having a dearomatized pyridine-based pincer (PNP)-P-3* ligand. This complex shows reusability for the high-pressure DFA in 1,4-dioxiane while maintaining the catalytic performance, however, deactivation occurred in other solvents. In dimethyl sulfoxide, its decomposition products may cause catalytic deactivation. The gas pressure generated in 1,4-dioxane was lower than that in water due to the high dissolution of 1,4-dioxane into CO2 according the vapor-liquid equilibrium calculations. The role of solvent is crucial since it affected the catalytic performance and also the generated gas pressure (H-2 and CO2) from FA. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在温和的温度下,在各种有机溶剂和水中,使用钌配合物对甲酸(DFA)进行选择性脱氢,生成高压H-2。在所研究的溶剂中,使用具有脱芳基吡啶基吡啶(PNP)-P-3 *配体的Ru络合物在80℃下产生20 MPa的高气压时,1,4-二恶烷是该反应的最佳候选者。该配合物显示出在1,4-二恶烷中高压DFA的可重用性,同时保持了催化性能,但是,在其他溶剂中发生了失活。在二甲基亚砜中,其分解产物可能引起催化失活。根据汽-液平衡计算,由于1,4-二恶烷在二氧化碳中的高度溶解,因此1,4-二恶烷产生的气压低于水中的气压。溶剂的作用至关重要,因为它影响催化性能以及FA产生的气压(H-2和CO2)。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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