Catalytic conversion of light alkanes to aromatics by metal-containing HZSM-5 zeolite catalysts—A review

D Liu, L Cao, G Zhang, L Zhao, J Gao, C Xu - Fuel Processing Technology, 2021 - Elsevier
The directly catalytic conversion of C 2-C 6 alkanes to aromatics has aroused widespread
interest from both academia and industry because of the growing demand for aromatics …

Application of co‐feeds in the catalytic conversion of light alkanes to aromatics: A comprehensive review

YH Lim, HW Ryu, Y Hwang, K Nam, J Roh… - …, 2024 - Wiley Online Library
Catalytic conversion of light alkanes (C1‐C3) to aromatics offers an attractive valorization
route for abundant gas resources and has been a prevalent topic of research over the past …

Review on the Catalytic conversion of naphtha to aromatics: Advances and outlook

MN Akhtar, AM Aitani, AC Ummer, HS Alasiri - Energy & Fuels, 2023 - ACS Publications
Naphtha is the main feedstock used in the production of gasoline and benzene, toluene, and
xylene (BTX) aromatics, which are widely applied as chemical intermediates in the fields of …

Co-aromatization of light alkanes over Mo/ZSM-5: How the presences of CH4 and C2H6 & C3H8 influence the aromatization of each other

YH Lim, W Jung, HW Ryu, H Kim, J Roh… - Chemical Engineering …, 2024 - Elsevier
The chemical inertness of methane is a significant bottleneck for its direct conversion into
value-added light aromatics. However, co-feeding higher hydrocarbons with methane …

A core-shell structured Zn/ZSM-5@ MCM-41 catalyst: Preparation and enhanced catalytic properties in propane aromatization

G Xu, X Zhu - Fuel, 2022 - Elsevier
Abstract The core-shell ZSM-5@ MCM-41 catalysts with various MCM-41 shell thickness
were successfully synthesized by the epitaxial recrystallization method using …

Catalytic methanotreating of vegetable oil: A pathway to Second-generation biodiesel

Y Li, H Xu, Z Li, S Meng, H Song - Fuel, 2022 - Elsevier
Vegetable oil is one of the most commonly used feedstocks for the production of biodiesel,
while the first-generation biodiesel suffers from the disadvantages of considerable instability …

Production of low carbon number olefins from natural gas: Methane-involved catalytic non-oxidative propane dehydrogenation

H Xu, M Cao, Z Li, W Li, S Meng, H Song - Chemical Engineering Journal, 2023 - Elsevier
Low carbon number olefins such as ethylene and propylene are important chemical
products with large production and extensive usage. Natural gas is a clean and abundant …

Catalytic desulfurization of marine gas oil and marine diesel oil under methane environment

Y Li, P He, Z Li, H Xu, J Jarvis, S Meng, H Song - Fuel, 2021 - Elsevier
The desulfurization of marine gas oil (MGO) and marine diesel oil (MDO) is crucial for the
bunker fuel industry due to the new regulation on SO x emission imposed by the …

Environmentally benign methane-regulated catalytic desulfurization

H Xu, P He, Z Li, S Meng, Y Li, LY Chang, L Liu… - Applied Catalysis B …, 2022 - Elsevier
Hydrodesulfurization is well established in the industry while costly and environmentally
unfriendly due to CO 2 emissions and H 2 S production. An alternative, cost-effective …

Mechanistic Insight into the Promotional Effect of CO2 on Propane Aromatization over Zn/ZSM-5

H Fan, X Nie, C Song, X Guo - Industrial & Engineering Chemistry …, 2022 - ACS Publications
ZSM-5 zeolite modified by zinc is a promising catalyst for light alkane aromatization. CO2-
assisted oxidative dehydrogenation and aromatization of propane can be achieved over …