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http://dx.doi.org/10.7317/pk.2013.37.3.379

Catalytic Pyrolysis of Miscanthus and Random Polypropylene over SAPO-11  

Kang, Hyeon Koo (Graduate School of Energy and Environ. System Eng., University of Seoul)
Yu, Mi Jin (Graduate School of Energy and Environ. System Eng., University of Seoul)
Park, Sung Hoon (Department of Environmental Engineering, Sunchon National University)
Jeon, Jong-Ki (Department of Chemical Engineering, Kongju National University)
Kim, Sang-Chai (Department of Environmental Education, Mokpo National University)
Park, Young-Kwon (Graduate School of Energy and Environ. System Eng., University of Seoul)
Publication Information
Polymer(Korea) / v.37, no.3, 2013 , pp. 379-386 More about this Journal
Abstract
SAPO-11 was applied for the first time to the catalytic pyrolysis of miscanthus and random polypropylene (random PP). Thermogravimetric analysis confirmed that SAPO-11 promoted the dehydration of miscanthus while suppressing the formation of char. In the pyrolysis of random PP, the decomposition temperature and activation energy were reduced by using a catalyst. A large fraction of levoglucosan, which was the main oxygenate product from the non-catalytic pyrolysis of miscanthus, was converted to high value-added products, such as furans, phenolics and aromatics using SAPO-34. The catalytic pyrolysis of random PP produced gasoline- and diesel-range hydrocarbons.
Keywords
SAPO-11; catalytic pyrolysis; miscanthus; random polyproylene;
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