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Hydrogen production from supercritical water reforming of glycerol in an empty Inconel 625 reactor

机译:空Inconel 625反应器中甘油的超临界水重整制氢

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Glycerol reforming was investigated under supercritical water conditions (450-575 ℃, 250 bar). A feed containing 5 wt.% of glycerol was continuously fed to an empty Inconel 625 reactor. The products of the reaction were separated into gas and liquid phases in a condenser. At a feed rate of 2.15 g/min, the glycerol conversion significantly increased from 0.05 to 0.97 when increasing operating temperature from 450 to 575 ℃. Although lowering the feed rate (i.e. increasing the residence time) could considerably improve the conversion, carbon formation became a problem especially at high operating temperatures (550 -575 ℃). The major gaseous products were hydrogen (approximately 60 mol%), carbon monoxide, carbon dioxide and methane with some traces of ethane, ethylene, propane, and propylene. Various liquid products were detected including acetaldehyde, acetol, methanol, acetic acid, propionaldehyde, allyl alcohol, acetone, acrolein, ethanol, ethylene glycol, and acrylic acid but the major liquid components were acetaldehyde and acetol. With a feed glycerol concentration of 2.5 wt.% and operating temperature of 525 ℃, glycerol conversion of 0.91 and H_2 yield of 2.86 can be obtained without carbon formation. Finally, it was demonstrated that higher H_2 yield with much lower carbon formation was observed in supercritical water reforming (250 bar) compared to conventional steam reforming at 1 bar under similar temperatures.
机译:在超临界水条件(450-575℃,250 bar)下研究了甘油的重整。将含有5重量%甘油的进料连续进料至空的Inconel 625反应器中。在冷凝器中将反应产物分离成气相和液相。在2.15 g / min的进料速度下,当工作温度从450℃升高至575℃时,甘油转化率从0.05显着提高至0.97。尽管降低进料速率(即增加停留时间)可以显着改善转化率,但是碳的形成成为一个问题,尤其是在高工作温度(550 -575℃)下。主要的气态产物是氢气(约60 mol%),一氧化碳,二氧化碳和甲烷,以及一些痕量的乙烷,乙烯,丙烷和丙烯。检测到各种液体产物,包括乙醛,丙酮醇,甲醇,乙酸,丙醛,烯丙醇,丙酮,丙烯醛,乙醇,乙二醇和丙烯酸,但主要的液体成分是乙醛和丙酮醇。在进料甘油浓度为2.5 wt。%且操作温度为525℃的情况下,可以在不形成碳的情况下获得0.91的甘油转化率和2.86的H_2收率。最后,证明了在超临界水重整(250 bar)中观察到的H_2收率较高,而在相似温度下,在1 bar的常规蒸汽重整中却观察到了更多的碳。

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