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Direct Production of High Pressure Hydrogen at Great Rate from Glycerol/Water/Metal Mixture

机译:由甘油/水/金属混合物直接大量生产高压氢气

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摘要

One of the key issues facing the global society today is to find renewable and sustainable energy sources. Hydrogen has gained much attention in recent years since it is one of fuels for fuel cells. It emits no carbon dioxide when it is used and so on. In this study, a great rate production of high pressure hydrogen rich gas from glycerol/water/metal mixtures was developed since glycerol has become one of the enormous industrial by-products, especially from biodiesel processing plants. It was found that cobalt was the optimum metal additive among tested metals of aluminum, cobalt, magnesium and nickel in terms of a hydrogen producing rate, a hydrogen partial pressure and a conversion ratio from 50 mol% glycerol/water mixtures under an operating temperature of 723 K. Concretely, hydrogen rich gas with concentration about 64%H2 and high partial pressure about 4 MPaN,H2 could be produced at the great producing rate of 42.9 LN,H2 dm-2min-1 and high conversion ratio about 60%H2. All the produced hydrogen rich gases from glycerol/water/metal mixtures were by no means inferior to pure hydrogen as a fuel for the polymer elec-trolyte fuel cell.
机译:当今全球社会面临的关键问题之一是寻找可再生和可持续的能源。氢由于近年来是燃料电池的燃料之一而备受关注。使用时它不会排放二氧化碳,依此类推。在这项研究中,由于甘油已成为巨大的工业副产品之一,特别是来自生物柴油加工厂的副产品之一,因此开发了由甘油/水/金属混合物大量生产高压富氢气体的方法。已发现,就氢的产生速率,氢分压和在50℃的操作温度下50mol%的甘油/水混合物的转化率而言,钴是铝,钴,镁和镍的测试金属中的最佳金属添加剂。 723K。具体而言,可以以42.9 LN,H2 dm-2min-1的高生产率和约60%H2的高转化率生产浓度约为64%H2,高分压约为4 MPaN,H2的富氢气体。从甘油/水/金属混合物中产生的所有富氢气体绝不逊于纯氢作为聚合物电解质燃料电池的燃料。

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