Title of article :
Modeling Transport Phenomena in Selective Catalytic Reductant Catalytic Converter with NH3 as Reductant for NO Degradation
Author/Authors :
Salehi, E. Department of Chemical Engineering - Faculty of Engineering - Arak University, Arak, Iran , Abdollahi Moghaddam, M. Department of Chemical Engineering - Faculty of Engineering - Arak University, Arak, Iran , Sahebjamee, N. Department of Chemical Engineering - Quchan Branch of Islamic Azad University, Quchan, Iran
Abstract :
In the current study, reduction of nitrogen oxide from exhaust gas in the presence of NH3 as reductant
on selective catalytic reductant (SCR) impregnated catalytic converter was simulated using Comsol©
software. Mass transfer (one-dimensional) and heat transfer (three-dimensional) governing equations
were taken into account to model the unsteady state behavior of the catalytic converter. Modeling
results of reaction rate indicated good agreement with the experimental data. Results showed that the
cumulative conversion exceeded 98 percent for both NO and NH3 components in the outflow gas
emitted from the converter. In addition, temperature distribution graphs showed that the exhaust gas
temperature varied from 450 K at the converter inlet to 550 K at the outlet. According to the results,
the temperature tolerance inside the converter was less than 20 °C. Moreover, radial temperature
gradient was sharper than axial one because of lesser energy accumulation in the direction of the
convective flow
Farsi abstract :
چكيدهب عى اًن احياكىىد در يك كاو رًت رً آغشت ب NH از گاز خريجي از اگسيز در حض رً 3 NO در ايه تحقيق، زدايش گاز
شبي سازي شد است. براي مدلسازي كاو رًت رً كاتاليسيري در COMSOL با استفاد از ورم افسار SCR كاتاليست
حالت واپايا، معادلات حاكم اوتقال جرم )يك بعدي( ي اوتقال حرارت )س بعدي( در وظر گرفت شد است. وتايج مدلسازي
در NH ي 3 NO سرعت ياكىش، ت اًفق خ بًي را با داد اَي تجربي وشان مي د دَ. وتايج وشان داد ك درصد تبديل براي
تركيب گاز خريجي از كاو رًت رً فراتر از 89 درصد است. علاي بر ايه، وم دًار ت زًيع دما وشان داد ك درج حرارت
554 در خريجي مي رسد. با ت جً ب وتايج، و سًان دما Kٍ 054 در يريدي كاو رًت رً ب K گاز اَي خريجي از اگسيز از
داخل كاو رًت رً كمتر از 04 درج ساوتي گراد است. علاي بر ايه، گراديان دما در راستاي شعاعي ب دليل تجمع كمتر
اورشي در ج تُ جريان مَرفت، شديد تر از گراديان دماي مح رًي مي باشد.
Keywords :
Mathematical , Modeling , Catalytic Converter , Reaction Rate , Nitrogen Oxide
Journal title :
Astroparticle Physics