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A review on the catalytic pyrolysis of biomass for the bio-oil production with ZSM-5: Focus on structure
A higher amount of oxygenated compounds in bio-oil obstructs its use in the existing
petroleum-based infrastructures. In order to convert oxygenates into hydrocarbons and less …
petroleum-based infrastructures. In order to convert oxygenates into hydrocarbons and less …
Catalytic pyrolysis of biomass over zeolites for bio-oil and chemical production: A review on their structure, porosity and acidity co-relation
The oxygenated compounds found in bio-oil limit their application as a transportation fuel.
Several studies were reported on eliminating the oxygenated components from bio-oil so as …
Several studies were reported on eliminating the oxygenated components from bio-oil so as …
(Bio) Propylene production processes: A critical review
Production of propylene, the second-largest petrochemical after ethylene, has received
considerable attention in recent years due to its wide applications and avoiding oil …
considerable attention in recent years due to its wide applications and avoiding oil …
Study on the role of Fe species and acid sites in NH3-SCR over the Fe-based zeolites
D Yu, P Wang, X Li, H Zhao, X Lv - Fuel, 2023 - Elsevier
Fe doped ZSM-5 zeolite catalysts, prepared with solution ion-exchange method, calcinated
at various temperatures and aged with/without H 2 O, were tested for activity in the selective …
at various temperatures and aged with/without H 2 O, were tested for activity in the selective …
[HTML][HTML] Catalytic conversion of bioethanol to value-added chemicals and fuels: A review
H **ang, R **n, N Prasongthum, P Natewong… - … Chemicals and Materials, 2022 - Elsevier
Bioethanol produced via valorisation of renewable biomass is of great interest to many
industries. The increased availability and decreased cost of bioethanol make it a promising …
industries. The increased availability and decreased cost of bioethanol make it a promising …
A minireview on catalytic fast co-pyrolysis of lignocellulosic biomass for bio-oil upgrading via enhancing monocyclic aromatics
S Zhong, B Zhang, C Liu, S Mwenya, H Zhang - Journal of analytical and …, 2022 - Elsevier
Considering the depletion of natural resources, growing environmental problems, massive
demand for petroleum, the investigation of pyrolysis of lignocellulosic biomass for liquid …
demand for petroleum, the investigation of pyrolysis of lignocellulosic biomass for liquid …
Catalytic hydrogenation, hydrocracking and isomerization reactions of biomass tar model compound mixture over Ni-modified zeolite catalysts in packed bed reactor
Gas-phase conversion of a model mixture of biomass tar (5 wt% naphthalene and 95 wt% of
1-methylnaphthalene) into 2-methylnaphthalene liquid product and ethylene and propane …
1-methylnaphthalene) into 2-methylnaphthalene liquid product and ethylene and propane …
A supramolecular view on the cooperative role of Brønsted and Lewis acid sites in zeolites for methanol conversion
A systematic molecular level and spectroscopic investigation is presented to show the
cooperative role of Brønsted acid and Lewis acid sites in zeolites for the conversion of …
cooperative role of Brønsted acid and Lewis acid sites in zeolites for the conversion of …
[HTML][HTML] Stability, deactivation and regeneration study of a newly developed HZSM-5 and Ni-doped HZSM-5 zeolite catalysts for ethanol-to-hydrocarbon conversion
This work investigates the stability and regeneration of HZSM-5 and Ni/HZSM-5 catalysts in
the ethanol-to-hydrocarbon conversion. The catalysts were characterised using different …
the ethanol-to-hydrocarbon conversion. The catalysts were characterised using different …
Tuning the acid nature of the ZSM-5 surface for selective production of ethylene from ethanol at low temperatures
Solid-acid ZSM-5 catalysts stand out as highly reactive for ethanol dehydration, but the
selective production of ethylene at low temperatures, however, is still a challenge. Herein …
selective production of ethylene at low temperatures, however, is still a challenge. Herein …