Cross-metathesis of biomass to olefins: Molecular catalysis bridging the gap between fossil and bio-energy
|Updated:2026-01-06
|
Cross-metathesis of biomass to olefins: Molecular catalysis bridging the gap between fossil and bio-energy
Cross-metathesis of biomass to olefins: Molecular catalysis bridging the gap between fossil and bio-energy
中国化学工程学报(英文版)2022年48卷第8期 页码:44-60
Affiliations:
State Key Laboratory of Heavy Oil Processing, Center for Chemical Engineering Experimental Teaching, China University of Petroleum,Qingdao,China,266580
Author bio:
Funds:
DOI:
中图分类号:
纸质出版:2022
Accepted:
Scan QR Code
Wenjuan Yan, Zhenchao You, Kexin Meng, 等. Cross-metathesis of biomass to olefins: Molecular catalysis bridging the gap between fossil and bio-energy[J]. 中国化学工程学报(英文版), 2022,48(8):44-60.
Wenjuan Yan, Zhenchao You, Kexin Meng, Feng Du, Shuxia Zhang, Xin Jin. Cross-metathesis of biomass to olefins: Molecular catalysis bridging the gap between fossil and bio-energy[J]. Chinese Journal of Chemical Engineering, 2022, 48(8): 44-60.
Wenjuan Yan, Zhenchao You, Kexin Meng, 等. Cross-metathesis of biomass to olefins: Molecular catalysis bridging the gap between fossil and bio-energy[J]. 中国化学工程学报(英文版), 2022,48(8):44-60.DOI:
Wenjuan Yan, Zhenchao You, Kexin Meng, Feng Du, Shuxia Zhang, Xin Jin. Cross-metathesis of biomass to olefins: Molecular catalysis bridging the gap between fossil and bio-energy[J]. Chinese Journal of Chemical Engineering, 2022, 48(8): 44-60.DOI:
Cross-metathesis of biomass to olefins: Molecular catalysis bridging the gap between fossil and bio-energy
Terminal olefins are important building blocks for the industry of biofuels
oligomers
and lubricants production. The industrial processes for production of olefins involving oligomerizationofethylene or cracking of petrochemical waxes have several flaws including low yield and high cost in product separation. Cross-metathesis of bio-derived unsaturated fatty esters and olefins with ethylene (ethenolysis)
allows the conversion of sustainable waste biomass to various renewable olefins with much safer
less toxic
sustainable
and zero-CO
2
emission processes. To our best knowledge
however
a comprehensive summary of key advances in this field (since 2017) is yet to be available
particularly on molecular features of homogeneous and heterogeneous catalysts. This paper presents a critical review on molecular structures of metal complex and oxide catalysts for ethenolysis of olefins and oleochemicals. The influence of cationic centers
coordination conditions
nature of ligands
operating conditions on catalyst performances will be systematically discussed along with relevant reaction mechanism. The key challenges for rational design of coordinated cationic hybrids have been summarized
which will provide insights to technological advancement of large-scale production of oleochemical-derived olefins.
关键词
Keywords
references
The trial reading is over, you can activate your VIP account to continue reading.
Preparation and extrusion of ZSM-5 based on biomass templates for enhanced mechanical properties and catalytic pyrolysis performance
Research progress on catalysts for organic sulfur hydrolysis: Review of activity and stability
Facile preparation of Fe-Beta zeolite-supported transition metal oxide catalysts and their catalytic performance for the simultaneous removal of NOx and soot
An efficient bifunctional Ni-Nb2O5 nanocatalysts for the hydrodeoxygenation of anisole
Spatial-five coordination promotes the high efficiency of CoN4 moiety in graphene-based bilayer for oxygen reduction electrocatalysis: A density functional theory study
相关作者
Guowu Zhan
Jianchun Jiang
Kang Sun
Fangsong Guo
Kok bing Tan
Ziliang Xie
Youting Wang
Meiting Guo
相关机构
Institute of Chemical Industry of Forest Products, Chinese Academy of Forestry (CAF)
Fujian Provincial Key Laboratory of Biomass Low-Carbon Conversion, Huaqiao University
Academy of Advanced Carbon Conversion Technology, College of Chemical Engineering, Huaqiao University
College of Environmental Science and Engineering, Taiyuan University of Technology
College of Chemical Engineering and Technology, Taiyuan University of Technology