3. School of Environmental and Chemical Engineering, Zhaoqing University,Zhaoqing,China,526000
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纸质出版:2024
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Hongbing Fu, Yufei Gu, Tianhua Gao, 等. Green synthesis of ZSM-5 using silica fume and catalytic co-cracking of lignin and plastics for production of monocyclic aromatics[J]. 中国化学工程学报(英文版), 2024,65(1):92-105.
Hongbing Fu, Yufei Gu, Tianhua Gao, Fuwei Li, Hengshuo Gu, Hucheng Ge, Yuke Liu, Zhixia Li, Hongfei Lin, Jiangfei Cao. Green synthesis of ZSM-5 using silica fume and catalytic co-cracking of lignin and plastics for production of monocyclic aromatics[J]. Chinese Journal of Chemical Engineering, 2024, 65(1): 92-105.
Hongbing Fu, Yufei Gu, Tianhua Gao, 等. Green synthesis of ZSM-5 using silica fume and catalytic co-cracking of lignin and plastics for production of monocyclic aromatics[J]. 中国化学工程学报(英文版), 2024,65(1):92-105.DOI:
Hongbing Fu, Yufei Gu, Tianhua Gao, Fuwei Li, Hengshuo Gu, Hucheng Ge, Yuke Liu, Zhixia Li, Hongfei Lin, Jiangfei Cao. Green synthesis of ZSM-5 using silica fume and catalytic co-cracking of lignin and plastics for production of monocyclic aromatics[J]. Chinese Journal of Chemical Engineering, 2024, 65(1): 92-105.DOI:
Green synthesis of ZSM-5 using silica fume and catalytic co-cracking of lignin and plastics for production of monocyclic aromatics
ZSM-5 with hierarchical pore structure was synthesized by a simple two-step hydrothermal crystallization from silica fume without using any organic ammonium templates. The synthesized ZSM-5 were oval shaped particles with a particle size about 2.0 lm and weak acid-dominated with proper Brønsted (B) and Lewis (L) acid sites. The ZSM-5 was used for catalytic co-cracking of
n
-octane and guaiacol
low-density polyethylene (LDPE) and alkali lignin (AL) to enhance the production of benzene
toluene
ethylbenzene and xylene (BTEX). The most significant synergistic effect occurred at
n
-octane/guaiacol at 1:1 and LDPE/AL at 1:3
under the condition
the achieved BTEX selectivity were 24% and 33% (mass) higher than the calculated values (weighted average). The highest BTEX selectivity reached 88.5%
which was 3.7% and 54.2% higher than those from individual cracking LDPE and AL. The synthesized ZSM-5 exhibited superior catalytic performance compared to the commercial ZSM-5
indicating potential application prospect.
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Tandem hydroalkylation and deoxygenation of lignin-derived phenolics to synthesize high-density fuels
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相关作者
Zhengtao Wei
Xiaofei Wang
Xuliang Lin
Xueqing Qiu
Meiting Guo
Youting Wang
Ziliang Xie
Kok bing Tan
相关机构
Guangdong Basic Research Center of Excellence for Ecological Security and Green Development, Guangdong University of Technology
Guangdong Provincial Laboratory of Chemistry and Fine Chemical Engineering Jieyang Center
Guangdong Provincial Key Laboratory of Plant Resources Biorefinery, School of Chemical Engineering and Light Industry, Guangdong University of Technology
Institute of Chemical Industry of Forest Products, Chinese Academy of Forestry (CAF)
Fujian Provincial Key Laboratory of Biomass Low-Carbon Conversion, Huaqiao University