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Hydrothermal gasification of glucose using Raney nickel and homogeneous organometallic catalysts

机译:使用阮内镍和均相有机金属催化剂对葡萄糖进行水热气化

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摘要

Catalytic gasification of biomass to fuel gaseous in sub and super critical water is a promising method for production of sustainable energy. In this paper, a microreactor has been utilized to study the hydrothermal gasification of glucose in the presence of transition metal chelates consisting of nickel(II) acetylacetonate (Ni(acac)2), cobalt(II) acetylacetonate (Co(acac)2), iron(III) acetylacetonate (Fe(acac)3) and Raney-nickel particles. The reaction temperature and pressure were 310-350 °C and 100-210 bar, respectively. Effects of addition of catalysts, reaction temperature, reaction time, glucose concentration and liquid water volume fraction on the amount of the generated gas as well as its composition were investigated. Results indicated that the presence of the organometallic compounds can slightly facilitate the rate of decomposition of glucose. This enhancement in reaction rate was more pronounced at higher concentrations of the feed (~0.65 M) compared with lower concentrations (~ 0.06 M). In contrast to these homogeneous catalysts, Raney-nickel catalyst improved the gas yield by a factor of 3 to 5. It has been observed that the amount of the produced gas almost doubles when the batch time increased from 3 to 30 min, while no significant change was observed from 30 to 60 min. Finally, remarks on optimization of the amount of added water into the reaction vessel are provided.
机译:在亚临界和超临界水中催化气化生物质以产生气态燃料是生产可持续能源的一种有前途的方法。在本文中,微反应器已被用于研究由乙酰丙酮镍(II)(Ni(acac)2),乙酰丙酮钴(II)(Co(acac)2)组成的过渡金属螯合物存在下葡萄糖的水热气化。 ,乙酰丙酮铁(III)(Fe(acac)3)和阮内镍颗粒。反应温度和压力分别为310-350℃和100-210bar。研究了催化剂的添加,反应温度,反应时间,葡萄糖浓度和液态水体积分数对产生的气体量及其组成的影响。结果表明,有机金属化合物的存在可以稍微促进葡萄糖的分解速率。与较低浓度(〜0.06 M)相比,较高浓度的进料(〜0.65 M)反应速率的提高更为明显。与这些均相催化剂相比,阮内镍催化剂将气体收率提高了3到5倍。已经观察到,当分批时间从3分钟增加到30分钟时,产生的气体量几乎翻了一番,而没有明显增加。从30到60分钟观察到变化。最后,提供了关于优化加入反应容器的水量的说明。

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