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- The methanol steam reforming on double-jacketed palladium membrane reactors was studied by numerical simulation. 本研究是以数值模拟探讨双套管膜反应器应用在甲醇水蒸气重组反应。
- In order to intensify the process of methanol steam reforming in microchannel,the effect of mechanism distribution to this reaction was investigated. 为强化微通道中甲醇蒸汽重整过程,考察了反应机理分布对制氢的影响。
- In this work, a Pd membrane reactor (PMR) for carrying out the methanol steam reforming was simulated and adopted as the test process for verification of the applicability of the proposed optimization method. 在本研究中我们首先创建供甲醇水蒸气重组之钯膜反应器之仿真器以供测试验证我们所提的最适化方法的可用性。
- A membrane reactor (MR) that combines hydrogen permeable membranes with a methanol steam reformer promises considerable weight and space savings. 薄膜反应器因提供可同时进行甲醇重组反应的管状反应器与供氢气渗透分离的薄膜并具备质量轻体积小的优点而常被采用。
- Thermodynamics for methanol steam reforming reaction 甲醇水蒸汽重整制氢反应的热力学分析
- Development of the Plate-Fin Methanol Steam Reforming System for Hydrogen Production 板翅式甲醇蒸汽重整制氢系统的开发
- Keywords Phenol formaldehyde novolac resin;Mixed matrix;PEG;Carbon molecular sieve membrane;Carbon membrane reactor;Methanol steam reforming; 热塑性酚醛树脂;混合基质;炭分子筛膜;聚乙二醇;炭膜反应器;甲醇水蒸气重整;
- methanol steam reforming 甲醇水蒸气重整
- Keywords plate-fin reformer;methanol steam reforming;fuel processing system;hydrogen production;modeling;PEMFC; 氢源系统;板翅式制氢反应器;甲醇水蒸汽重整;数学模型;燃料电池;
- An experimental investigation concerning with steam reforming of methanol over a coated catalyst is carried out in an annular micro-reactor. 为解决燃料电池氢源问题,针对甲醇水蒸气重整微型反应器,研究了一种新的催化剂涂层技术。
- The primary method of hydrogen generation is steam reforming of natural gas. 生产氢的主要方法是天然气的蒸气重整。
- The possible relevance of the process to combustion, gasification and steam reforming will also be discussed. 本讲题也将探讨此过程与燃烧、气化和蒸汽重整可能存在的相关性。
- The steam reforming process produces syngas, which is a mixture of hydrogen and carbon monoxide. 蒸气重整过程产生合成气,它是氢和一氧化碳的混合物。
- steam reforming of methanol(SRM) 氢气
- methanol oxidative steam reforming 甲醇氧化重整
- With the primary method for on-purpose generation being the steam reforming of natural gas. 有意地生产氢的主要方法是天然气的蒸气重整。
- Carbon dioxide is a by-product of steam reforming of methane, propane or naphtha. 二氧化碳是甲烷、丙烷或石脑油的蒸气重整的一个副产品。
- The mathematical model of the steam reforming catalysis reaction on TBC-EBC is established. 同时,建立了催化/热障功能梯度涂层的水蒸气重整催化性能数学模型。
- It suggests that the reaction, CH4+2H2O=CO2+4H2, probably dominates methane steam reforming at the conditions of lower temperature. 实验证明,在低温时二氧化碳的生成速率远大于一氧化碳的生成速率,这说明反应CH4+2H2O=CO2+4H2占主导地位。
- The effect of Fe_2O_3 on reduction behaviour of two typical catalysts used in hydrocarbon steam reforming was investigated by TPR and XRD. 用程序升温还原(TPR)和X-射线衍射(XRD)法研究了铁对两类典型的烃类制氢催化剂还原性能的影响。