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Role of sodium hydroxide in the production of hydrogen gas from the hydrothermal gasification of biomass

机译:氢氧化钠在生物质水热气化生产氢气中的作用

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The role of sodium hydroxide as a promoter of hydrogen gas production during the hydrothermal gasification of glucose and other biomass samples has been investigated. Experiments were carried out in a batch reactor with glucose and also in the presence of the alkali from 200 ℃, 2 MPa to 450 ℃, 34 MPa at constant water loading. Without sodium hydroxide, glucose decomposed to produce mainly carbon dioxide, water, char and tar. Furfural, its derivatives and reaction products dominated the ethyl acetate extract of the water (organic fraction) at lower reaction conditions. This indicated that the dehydration of glucose to yield these products was unfavourable to hydrogen gas production. In the presence of sodium hydroxide however, glucose initially decomposed to form mostly alkylated and hydroxylated carbonyl compounds, whose further decomposition yielded hydrogen gas. It was observed that at 350 ℃, 21.5 MPa, half of the optimum hydrogen gas yield had formed and at 450 ℃, 34 MPa, more than 80 volume percent of the gaseous effluent was hydrogen gas, while the balance was hydrocarbon gases, mostly methane (>10 volume percent). Other biomass samples were also comparably reacted at the optimum conditions observed for glucose. The rate of hydrogen production for the biomass samples was in the following order; glucose > cellulose, starch, rice straw > potato > rice husk.
机译:已经研究了氢氧化钠在葡萄糖和其他生物质样品的水热气化过程中作为氢气产生促进剂的作用。在葡萄糖分批反应器中进行实验,并且在恒定水负荷下,在200℃,2 MPa至450℃,34 MPa的碱存在下进行实验。没有氢氧化钠,葡萄糖分解主要产生二氧化碳,水,炭和焦油。在较低的反应条件下,糠醛,其衍生物和反应产物主导了水(有机部分)的乙酸乙酯萃取液。这表明葡萄糖脱水以产生这些产物不利于氢气的产生。然而,在氢氧化钠的存在下,葡萄糖最初分解形成大部分烷基化和羟基化的羰基化合物,其进一步分解产生氢气。观察到,在350℃,21.5 MPa时,形成了最佳氢气产量的一半;在450℃,34 MPa时,超过80%的气态流出物为氢气,其余为烃类气体,大部分为甲烷(> 10体积百分比)。在观察到的最佳葡萄糖条件下,其他生物质样品也进行了比较反应。生物质样品的产氢速率如下。葡萄糖>纤维素,淀粉,稻草>马铃薯>稻壳。

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