Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
51013 | Catalysis Communications | 2010 | 5 Pages |
Abstract
The catalytic dehydration of ethanol into ethylene was studied over HZSM-5, phosphorous modified HZSM-5 and lanthanum–phosphorous modified HZSM-5 in the low temperature range from 473 K to 573 K. The experimental results demonstrated the lanthanum–phosphorous modified HZSM-5 offered the outstanding catalytic performance and the enhanced anti-coking ability markedly, especially for 0.5%La-2%PHZSM-5. Characterizations revealed that the improved catalytic performance and the excellent anti-coking ability of lanthanum–phosphorous modified HZSM-5 could be attributed to the harmonious acid sites and pore structure by the modification with lanthanum and phosphorous.
Related Topics
Physical Sciences and Engineering
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Catalysis
Authors
Nina Zhan, Yi Hu, Heng Li, Dinghua Yu, Yuwang Han, He Huang,