2015
DOI: 10.1016/j.apcatb.2015.02.020
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A survey of catalysts for aromatics from fast pyrolysis of biomass

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Cited by 156 publications
(71 citation statements)
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“…Not indicated in Table 5 are unconventional routes to bio-based solvents. Developments in the conversion of biomass into aromatic base chemicals [76], and specialised routes to methyl ethyl ketone [77], and acetonitrile [78], mean that an increasingly diverse number of solvents have prospects of a renewable feedstock.…”
Section: Hazardousmentioning
confidence: 99%
“…Not indicated in Table 5 are unconventional routes to bio-based solvents. Developments in the conversion of biomass into aromatic base chemicals [76], and specialised routes to methyl ethyl ketone [77], and acetonitrile [78], mean that an increasingly diverse number of solvents have prospects of a renewable feedstock.…”
Section: Hazardousmentioning
confidence: 99%
“…Kelkar et al [179] conducted a reaction with H-ZSM-5 catalysts and a Si/Al ratio in the range of 23-80. The biomass (i.e., poplar) was upgraded using a biomass/catalyst ratio of 1:5 at 550°C.…”
Section: Effect Of Zeolite Aciditymentioning
confidence: 99%
“…Sulfated zirconia was also not selective to aromatics and led to the formation of a larger amount of carbon deposit. However, the authors of described work [26] suggested that an introduction of sulfated zirconia on the surface of MCM-41 mesoporous material may contribute to the improvement of its deoxygenation activity and resistance to coking. The second part of the study [26] was devoted to the investigation of the influence of the Si:Al ratio in HZSM-5 material on the yield of aromatic products.…”
Section: Application Of Zeolites and Mesoporous Materialsmentioning
confidence: 99%
“…However, the authors of described work [26] suggested that an introduction of sulfated zirconia on the surface of MCM-41 mesoporous material may contribute to the improvement of its deoxygenation activity and resistance to coking. The second part of the study [26] was devoted to the investigation of the influence of the Si:Al ratio in HZSM-5 material on the yield of aromatic products. It was demonstrated that samples with a lower silicon:aluminum ratio possessed a higher density of Brönsted acid sites and produced more aromatics.…”
Section: Application Of Zeolites and Mesoporous Materialsmentioning
confidence: 99%
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