The properties of tire pyrolysis oil are similar to diesel oil, but the high sulfur content in the pyrolysis oil limits its use in diesel engines. In this work, taking the boiling point range of traditional diesel oil as the cutting temperature, a fraction in the temperature range of 190-350 degrees C was obtained by distillation of tire pyrolysis oil (TPO190-350 degrees C). The sulfides in TPO190-350 degrees C are mainly benzothiophene derivatives. And a simple and effective POM-based catalyst ([C16H33N(CH3)3]3PW4O24) has been used in the oxidation desulfurization process for the removal of sulfur compounds from the oil. The catalyst played the role of transferring reactive oxygen species atoms on H2O2 to sulfur compounds. The benzothiophene, dibenzothiophene, and 4,6-dimethyl-dibenzothiophene (500 ppm S) in model oil could be converted to the corresponding sulfone within 1 h at 40 degrees C. Even if the sulfur content was increased to 2000 ppm, the catalyst exhibited well catalytic performance under the same conditions. The catalyst could be recycled and reused with no loss of desulfurization efficiency. Distillation could effectively reduce the presence of olefins in the oil leading to reduce oxidation performance during the oxidation desulfurization process (ODS). In the subsequent desulfurization experiments of TPO190-350 degrees C, a high desulfurization efficiency (91.28%) was achieved for TPO190-350 degrees C, with initial sulfur contents of 11033 ppm declining to 961 ppm.
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Yonsei Univ, Dept Environm Engn, Yonseidae Gil 1, Wonju 26493, South KoreaYonsei Univ, Dept Environm Engn, Yonseidae Gil 1, Wonju 26493, South Korea
Hossain, Muhammad Nobi
Choi, Myung Kyu
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Yonsei Univ, Dept Environm Engn, Yonseidae Gil 1, Wonju 26493, South KoreaYonsei Univ, Dept Environm Engn, Yonseidae Gil 1, Wonju 26493, South Korea
Choi, Myung Kyu
Choi, Hang Seok
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Yonsei Univ, Dept Environm Engn, Yonseidae Gil 1, Wonju 26493, South KoreaYonsei Univ, Dept Environm Engn, Yonseidae Gil 1, Wonju 26493, South Korea
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Univ Liverpool, Dept Chem, Liverpool L69 7ZD, Merseyside, EnglandUniv Liverpool, Dept Chem, Liverpool L69 7ZD, Merseyside, England
Craven, Michael
Xiao, Dong
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Univ Liverpool, Dept Chem, Liverpool L69 7ZD, Merseyside, England
Chinese Acad Sci, Dalian Inst Chem Phys, State Key Lab Catalysis, Dalian 116023, Peoples R ChinaUniv Liverpool, Dept Chem, Liverpool L69 7ZD, Merseyside, England
Xiao, Dong
Kunstmann-Olsen, Casper
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Univ Liverpool, Dept Chem, Liverpool L69 7ZD, Merseyside, EnglandUniv Liverpool, Dept Chem, Liverpool L69 7ZD, Merseyside, England
Kunstmann-Olsen, Casper
Kozhevnikova, Elena F.
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Univ Liverpool, Dept Chem, Liverpool L69 7ZD, Merseyside, EnglandUniv Liverpool, Dept Chem, Liverpool L69 7ZD, Merseyside, England
Kozhevnikova, Elena F.
Blanc, Frederic
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Univ Liverpool, Dept Chem, Liverpool L69 7ZD, Merseyside, England
Univ Liverpool, Stephenson Inst Renewable Energy, Liverpool L69 7ZD, Merseyside, EnglandUniv Liverpool, Dept Chem, Liverpool L69 7ZD, Merseyside, England
Blanc, Frederic
Steiner, Alexander
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Univ Liverpool, Dept Chem, Liverpool L69 7ZD, Merseyside, EnglandUniv Liverpool, Dept Chem, Liverpool L69 7ZD, Merseyside, England
Steiner, Alexander
Kozhevnikov, Ivan, V
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Univ Liverpool, Dept Chem, Liverpool L69 7ZD, Merseyside, EnglandUniv Liverpool, Dept Chem, Liverpool L69 7ZD, Merseyside, England
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Univ La Laguna, Chem Engn Dept, San Cristobal la Laguna 38200, Tenerife, SpainUniv La Laguna, Chem Engn Dept, San Cristobal la Laguna 38200, Tenerife, Spain
Carmona, Hector de Paz
Schlehofer, Dominik
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ORLEN UniCRE a s, Usti Nad Labem 40001, Czech Republic
Univ Chem & Technol Prague, Fac Environm Technol, Dept Sustainable Fuels & Green Chem, Prague 16628, Czech RepublicUniv La Laguna, Chem Engn Dept, San Cristobal la Laguna 38200, Tenerife, Spain
Schlehofer, Dominik
Vrablik, Ales
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Univ Chem & Technol Prague, Fac Environm Technol, Dept Sustainable Fuels & Green Chem, Prague 16628, Czech RepublicUniv La Laguna, Chem Engn Dept, San Cristobal la Laguna 38200, Tenerife, Spain