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   estimation of pyrolysis product of ldpe degradation using different process parameters in a stirred reactor  
   
نویسنده seifali abbas-abadi mehrdad ,seifali abbas-abadi mehrdad ,mcdonald armando g. ,nekoomanesh haghighi mehdi ,yeganeh hamid
منبع polyolefins journal - 2015 - دوره : 2 - شماره : 1 - صفحه:39 -47
چکیده    Pyrolysis of low density polyethylene (ldpe) by equilibrium fluid catalytic cracking (fcc) was studied in a stirred reactor under different process parameters. in this work, the effect of process parameters such as degradation temperature (420510°c), catalyst/polymer ratio (060%), carrier gas type (h2, n2, ethylene, propylene, ar and he), residence time and agitator speed (0300 rpm) on the condensate yield (liquid, gas and coke) and product composition were considered. reaction products were determined by gc analysis and shown to contain naphthenes (cycloalkanes), paraffins (alkanes), olefins (alkenes) and aromatics. higher temperature and more catalyst amount enhanced ldpe cracking. the maximum “fuel like” condensed product yield was attained at 450°c and 10% catalyst, respectively and gaseous products increased with increases in temperature. hydrogen as a reactive carrier gas increased the condensed and paraffinic product yield. appropriate heat transfer (by stirring) increased the catalyst efficiency in a stirred reactor.
کلیدواژه ldpe ,pyrolysis ,fluid catalytic cracking (fcc) ,stirred reactor ,carrier gas ,agitator speed
آدرس kermanshah university of technology, chemical engineering, energy department, ایران. iran polymer and petrochemical institute (ippi), polymerization engineering department, ایران, kermanshah university of technology, chemical engineering, energy department, ایران. iran polymer and petrochemical institute (ippi), polymerization engineering department, ایران, university of idaho, department of forest, rangeland and fire sciences, usa, iran polymer and petrochemical institute (ippi), polymerization engineering department, ایران, iran polymer and petrochemical institute (ippi), polymerization engineering department, ایران
پست الکترونیکی h.yeganeh@ippi.ac.ir
 
     
   
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