Effect of selective oxidation and sulphur/phosphorus-containing compounds on coking behaviour during light naphtha thermal cracking
Author:
Affiliation:
1. State-Key Laboratory of Chemical Engineering; East China University of Science and Technology; Shanghai 200237 China
Funder
Research Fund for the Doctoral Program of Higher Education of China
Sinopec Corp., China.
Publisher
Wiley
Subject
General Chemical Engineering
Reference41 articles.
1. Coking Resistance of Specialized Coil Materials during Steam Cracking of Sulfur-Free Naphtha
2. Influence of the Reactor Material Composition on Coke Formation during Ethane Steam Cracking
3. Characterization of material samples for coking behavior of HP40 material both coated and uncoated using naphtha and ethane feedstock
4. Pretreatments of Coils to Minimize Coke Formation in Ethylene Furnaces
5. Study of anti-coking property of SiO2/S composite coatings deposited by atmospheric pressure chemical vapor deposition
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1. Investigation of the effect of presulphidation on coke deposition on 25Cr‐35Ni alloy during ethane steam cracking;The Canadian Journal of Chemical Engineering;2022-11-10
2. Effect of sulfur additives on coke formation during steam cracking of naphtha;Journal of Chemical Sciences;2021-11-18
3. Investigation into the Anticoking Performances of Sol–Gel-Derived SiO2 and SiO2–CeO2 Coatings during Thermal Pyrolysis of Light Naphtha;Energy & Fuels;2021-01-26
4. The effects of sulfides and sulfur/phosphorus‐containing compounds on coke formation during thermal cracking of light naphtha;Asia-Pacific Journal of Chemical Engineering;2020-08-25
5. Coking Tendency of 25Cr-35Ni Alloys: Influence of Temperature, Sulfur Addition, and Cyclic Aging;Industrial & Engineering Chemistry Research;2018-02-20
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