Simulation of CO2-CH4 separation using BPPOdp - fumed silica nanocomposite membrane

This work presents a simulation for CO2/CH4 separation using BPPOdp - fumed silica nanocomposite membrane. The results showed that incorpoartion of non-permeable nanoparticles caused more flux of gas by surface adsorption. The diffusion was modeled by Fick’s first equation and for the adsorption phenomenon, Langmuir adsorption isotherm was considered. simulation was studied to solve partial differential equation that was mentioned in the article. According to the simulation of this article, the flux of carbon dioxide was more than methane, because the selectivity of CO2 was more than CH4. Simulation results showed acceptable agreement between measured and predicted CO2 flux as 9.07×10-4 mol/m2.s and 8.88×10-4 mol/m2.s (ARE
of 2.09%). For CH4 this agreement can be expressed between measured and predicted CH4 flux as 5.95×10-5 mol/m2.s and 5.22×10-5 mol/m2.s (ARE of 11.9%) and for CO2/CH4 selectivity can be determined as 15.3 and 16.85 (ARE 9.19%)
 

مقالات
حجم فایل 560 کیلوبایت
زبان مقاله ENGLISH
سال انتشار 1392
محل انتشار سومین همایش ملی کاربردهای شیمی در فناوری های نوین
مشخصات کلی
تعداد صفحات 8
تعداد صفحات محصول 1-20

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Simulation of CO2-CH4 separation using BPPOdp - fumed silica nanocomposite membrane

  • تولید کننده: Ali Taghvaie Nakhjiri
  • شناسنامه: CN1-1028-paper3
  • موجودی: در انبار
  • تاریخ چاپ: 2016-10-31
  • نویسنده: Ali Taghvaie Nakhjiri, Omid Bakhtiari, Toraj Mohammadi
  • ژورنال: سومین همایش ملی کاربردهای شیمی در فناوری های نوین
  • رایگان

برچسب ها: Nanocomposite Membrane, Langmuir isotherm, non-permeable filler, Permeation, partial differential equation, nanocomposite