Hydrogen from catalytic reforming of biomass-derived hydrocarbons in liquid water

制氢 催化作用 蒸汽重整 化学 氢经济 可再生燃料 可再生能源 化石燃料 氢燃料 生物量(生态学) 废物管理 水煤气变换反应 能源 有机化学 生态学 工程类 生物
作者
Randy D. Cortright,Rupali R. Davda,James A. Dumesic
出处
期刊:Nature [Nature Portfolio]
卷期号:418 (6901): 964-967 被引量:2033
标识
DOI:10.1038/nature01009
摘要

Concerns about the depletion of fossil fuel reserves and the pollution caused by continuously increasing energy demands make hydrogen an attractive alternative energy source. Hydrogen is currently derived from nonrenewable natural gas and petroleum, but could in principle be generated from renewable resources such as biomass or water. However, efficient hydrogen production from water remains difficult and technologies for generating hydrogen from biomass, such as enzymatic decomposition of sugars, steam-reforming of bio-oils and gasification, suffer from low hydrogen production rates and/or complex processing requirements. Here we demonstrate that hydrogen can be produced from sugars and alcohols at temperatures near 500 K in a single-reactor aqueous-phase reforming process using a platinum-based catalyst. We are able to convert glucose -- which makes up the major energy reserves in plants and animals -- to hydrogen and gaseous alkanes, with hydrogen constituting 50% of the products. We find that the selectivity for hydrogen production increases when we use molecules that are more reduced than sugars, with ethylene glycol and methanol being almost completely converted into hydrogen and carbon dioxide. These findings suggest that catalytic aqueous-phase reforming might prove useful for the generation of hydrogen-rich fuel gas from carbohydrates extracted from renewable biomass and biomass waste streams.
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