Experiment and modeling of coke formation and catalyst deactivation in n-heptane catalytic cracking over HZSM-5 zeolites
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Experiment and modeling of coke formation and catalyst deactivation in n-heptane catalytic cracking over HZSM-5 zeolites
Experiment and modeling of coke formation and catalyst deactivation in n-heptane catalytic cracking over HZSM-5 zeolites
中国化学工程学报(英文版)2023年55卷第3期 页码:165-172
Affiliations:
1. School of Chemical Engineering, Changchun University of Technology,Changchun,China,130012
2. Advanced Institute of Materials Science, Changchun University of Technology,Changchun,China,130012
3. School of Chemistry and Chemical Engineering, Yangzhou University,Yangzhou,China,225009
4. Department of Chemistry, Tsinghua University,Beijing,China,100084
Author bio:
Funds:
DOI:
中图分类号:
纸质出版:2023
Accepted:
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Zhenzhou Ma, Xu Hou, Bochong Chen, 等. Experiment and modeling of coke formation and catalyst deactivation in n-heptane catalytic cracking over HZSM-5 zeolites[J]. 中国化学工程学报(英文版), 2023,55(3):165-172.
-heptane catalytic cracking over HZSM-5 zeolites[J]. 中国化学工程学报, 2023, 55(3): 165-172.
Zhenzhou Ma, Xu Hou, Bochong Chen, 等. Experiment and modeling of coke formation and catalyst deactivation in n-heptane catalytic cracking over HZSM-5 zeolites[J]. 中国化学工程学报(英文版), 2023,55(3):165-172.DOI:
-heptane catalytic cracking over HZSM-5 zeolites[J]. 中国化学工程学报, 2023, 55(3): 165-172.DOI:
Experiment and modeling of coke formation and catalyst deactivation in n-heptane catalytic cracking over HZSM-5 zeolites
Since paraffins catalytic cracking was of significant importance to light olefins and aromatics production
this work was intended to gain insights into the feature and model of coke formation and catalyst deactivation in
n
-heptane catalytic cracking over HZSM-5 zeolites. 18 tests of
n
-heptane catalytic cracking were designed and carried out over HZSM-5 zeolites in a wide range of operating conditions. A particular attention was paid to the measurement of the conversion
product distribution
coke content
and the porosity and acidity of the fresh and spent HZSM-5 zeolites. It was found that alkene and aromatic promoted coke formation
and it reduced the pore volume and acid site of HZSM-5 zeolites
tailoring its performance in
n
-heptane catalytic cracking. The specific relationship between HZSM-5 zeolites
n
-heptane conversion
product distribution and coke formation was quantitively characterized by the exponential and linear function. Based on the reaction network
the coupled scheme of coke formation and catalyst deactivation were specified for
n
-heptane catalytic cracking. The dual-model was proposed for the process simulation of
n
-heptane catal
ytic cracking over HZSM-5 zeolites. It predicted not only the conversion and product distribution but also coke content with the acceptable errors.
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