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使用 Ni-(Cu、Co、Cr)/SBA-15 催化剂对模型生物油水相进行蒸汽重整。

Steam Reforming of Model Bio-Oil Aqueous Fraction Using Ni-(Cu, Co, Cr)/SBA-15 Catalysts.

机构信息

Chemical and environmental group, Rey Juan Carlos University, c/ Tulipán, s/n, Mostoles 28933, Spain.

出版信息

Int J Mol Sci. 2019 Jan 25;20(3):512. doi: 10.3390/ijms20030512.

Abstract

Hydrogen obtained from biomass derivatives is considered a promising alternative to fossil fuels. The aim of this work is to test the viability of Ni-M/SBA-15 (M: Co, Cu, Cr) catalysts for the hydrogen production from bio-oil aqueous fraction reforming. Tests were performed in a fixed-bed reactor at 600 °C and atmospheric pressure. Firstly, the steam reforming (SR) of acetic acid, hydroxyacetone, furfural and phenol, as representative constituents of the bio-oil aqueous fraction, was carried out. Lower reactivity with increasing carbon number and decreasing steam-to-carbon ratio was observed. Coking rate during SR is a consequence of carbon number and aromaticity of the reactant, as well as the steam-to-carbon ratio. However, deactivation also depends on the graphitization degree of carbon filaments, higher in the case of coke formed from phenol. Then, the performance of the Ni-M/SBA-15 catalysts was studied in the reforming of a bio-oil aqueous fraction surrogate containing the four model compounds. Ni-Co/SBA-15 and Ni-Cr/SBA-15 samples were the most active because Co also catalyze the steam reforming reactions and Cr promotes the formation of very small Ni crystallites accounting for high conversion and the low coke deposition (~8 times lower than Ni/SBA-15) in the form of poorly condensed carbon filaments.

摘要

由生物质衍生物获得的氢气被认为是化石燃料的一种有前途的替代品。本工作旨在测试 Ni-M/SBA-15(M:Co、Cu、Cr)催化剂用于从生物油水相重整制氢的可行性。在 600°C 和常压下的固定床反应器中进行了测试。首先,进行了乙酸、羟基丙酮、糠醛和苯酚作为生物油水相代表性组分的蒸汽重整(SR)反应。随着碳数的增加和蒸汽与碳的比例的降低,反应性降低。在 SR 过程中,焦炭的形成速率是反应物的碳数和芳构化程度以及蒸汽与碳的比例的结果。然而,失活也取决于碳纤维的石墨化程度,酚形成的焦炭的石墨化程度更高。然后,研究了 Ni-M/SBA-15 催化剂在含有四种模型化合物的生物油水相替代物重整中的性能。Ni-Co/SBA-15 和 Ni-Cr/SBA-15 样品是最活跃的,因为 Co 还催化蒸汽重整反应,Cr 促进非常小的 Ni 微晶的形成,这导致高转化率和低焦炭沉积(比 Ni/SBA-15 低约 8 倍),以不凝碳纤维的形式存在。

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