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Simulation of sulfur trioxide production in an adiabatic multistage catalytic reactor

Simulation of sulfur trioxide production in an adiabatic multistage catalytic reactor / Anis Salwani Rozman
Penghasilan sulfur trioksida daripada gas sulfur dioksida sudah mendapat kepentingan global dan oleh itu proses ini perlu dikaji supaya penukaran sulfur dioksida terjamin semasa pelaksanaannya dalam industri kimia terutamanya dalam industri asid sulfurik. Simulasi untuk proses pengeluaran sulfur trioksida boleh dijalankan dengan menggunakan perisian simulasi yang maju seperti Aspen Plus tanpa perlu menggunakan simulasi berangka seperti kerja-kerja penyelidikan sebelumnya. Aspen Plus Versi 8.8 digunakan dalam kajian penyelidikan ini untuk mensimulasikan reaktor adiabatik yang mempunyai berbilang peringkat pemangkin untuk reaksi sulfur dioksida dioksidakan menjadi gas sulfur trioksida dengan kehadiran pemangkin vanadium pentaoksida. Keputusan simulasi yang diperoleh dibandingkan dengan jurnal untuk pengesahan. Keputusan simulasi yang diperoleh oleh Aspen Plus menjana 4% daripada ralat purata umum dari segi penukaran sulfur dioksida, suhu dan tekanan keluar. Dari analisis sensitiviti yang dijalankan, didapati bahawa komposisi molar sulfur trioksida meningkat sedikit sehingga 0.082 pada 2.5 bar tekanan masuk reaktor manakala suhu masuk reaktor menunjukkan tiada kesan yang signifikan terhadap komposisi molar sulfur trioksida yang dihasilkan. _______________________________________________________________________________________________________ The production of sulfur trioxide from sulfur dioxide gas is already gaining global importance and thus this process needs to be studied so that the conversion of sulfur dioxide is assured during its implementation in the chemical industry especially in sulfuric acid industry. It is possible to simulate sulfur trioxide production process with a well-developed simulation software such as Aspen Plus despite using the numerical simulation like previous research works. Aspen Plus Version 8.8 is used in this research study to simulate an adiabatic multistage catalytic reactor where sulfur dioxide gas is oxidized into sulfur trioxide gas in the presence of vanadium pentoxide catalyst. The simulation results obtained are compared with literature for validation. The simulated results obtained by Aspen Plus generate 4% of general average error in terms of the sulfur dioxide conversion, temperature and pressure outlet. From the sensitivity analysis conducted, it is found that the molar composition of sulfur trioxide increases lightly up to 0.082 at 2.5 bar of reactor inlet pressure while the reactor inlet temperature shows no significant effect on the molar composition of sulfur trioxide generated.
Contributor(s):
Anis Salwani Rozman - Author
Primary Item Type:
Final Year Project
Identifiers:
Accession Number :  875007511
Language:
English
Subject Keywords:
sulfur trioxide; sulfur dioxide gas; sulfuric acid industry
First presented to the public:
6/1/2018
Original Publication Date:
7/18/2018
Previously Published By:
Universiti Sains Malaysia
Place Of Publication:
School of Chemical Engineering
Citation:
Extents:
Number of Pages - 76
License Grantor / Date Granted:
  / ( View License )
Date Deposited
2018-07-31 15:56:10.411
Date Last Updated
2019-01-07 11:24:32.9118
Submitter:
Mohd Jasnizam Mohd Salleh

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Simulation of sulfur trioxide production in an adiabatic multistage catalytic reactor1 2018-07-31 15:56:10.411