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   Effect of Temperature, Heating Rate and Zeolitebased Catalysts on the Pyrolysis of High Impact Polystyrene (Hips) Waste To Produce Fuel-Like Products  
   
نویسنده Tamri Zaher ,Vaziri Yazdi Ali ,Nekoomanesh Haghighi Mehdi ,Seifali Abbas-Abadi Mehrdad ,Heidarinasab Amir
منبع Polyolefins Journal - 2019 - دوره : 6 - شماره : 1 - صفحه:43 -52
چکیده    Pyrolysis of high impact polystyrene (hips) waste has been investigated under different process parameters, such as temperature, heating rate and types of zeolitic catalysts to produce valuable liquid products. liquid, gas and coke as products of pyrolysis and aromatic, naphthene, olefin and paraffin as liquid components were obtained and their molecular weight distributions were studied with changing the process parameters in a stirred reactor. aromatic-rich hydrocarbons within the gasoline range were the main pyrolysis products. type of zeolitic catalysts, temperature and heating rate had significant effects on the products quality and quantity. non-isothermal mass losses of high impact polystyrene were measured using a thermo-gravimetric analyzer (tga) at heating rates of 5, 15, 30, 45 and 90°c min-1 until the furnace wall temperature reached 600°c. the dtg (differential thermal gravimetric) curves showed that heating rate had no obvious effect on the degradation trends in the studied range, and by increasing heating rate, the activation energies were decreased obviously from 222.5 to183.6 kj mol^-1.
کلیدواژه High Impact Polystyrene ,Temperature ,Heating Rate ,Catalyst ,Tga
آدرس Islamic Azad University, Science And Research Branch, Department Of Chemical Engineering, ایران, Islamic Azad University, Science And Research Branch, Department Of Chemical Engineering, ایران, Iran Polymer And Petrochemical Institute, Department Of Polymerization Engineering, ایران, Iran Polymer And Petrochemical Institute, Department Of Polymerization Engineering, ایران, Islamic Azad University, Science And Research Branch, Department Of Chemical Engineering, ایران
پست الکترونیکی a.heidarinasab@srbiau.ac.ir
 
     
   
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