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  • MANAS Journal of Engineering
  • Volume:9 Issue:2
  • A cleaner application on hydrogen sulfide

A cleaner application on hydrogen sulfide

Authors : Merve AKSU, Mhakan MORCALİ
Pages : 153-159
Doi:10.51354/mjen.953547
View : 21 | Download : 11
Publication Date : 2021-12-06
Article Type : Research Paper
Abstract :With the increasing industrial production, there was a significant number of toxic and harmful hydrogen sulfide insert ignore into journalissuearticles values(H 2 S); gas generated. Due to the industrial activities, converting H 2 S gas from the waste of industrial process is environmentally attractive. This paper focuses on the conversion of H 2 S to elemental sulfur insert ignore into journalissuearticles values(S°); and other sulfur species insert ignore into journalissuearticles values(i.e., sulfite ion insert ignore into journalissuearticles values(SO 3 2- );; sulfate ion insert ignore into journalissuearticles values(SO 4 2- ); using Fenton reagent. The effects of some reaction parameters such as Fe 2+  ion concentration, amount of hydrogen peroxide insert ignore into journalissuearticles values(H 2 O 2 );, reaction time, initial H 2 S concentration and, liquid-gas ratio on H 2 S conversion percentage were explored thoroughly. The results revealed that the increase of the Fe 2+  ion concentration and H 2 O 2  quantity could promote the conversion of H 2 S. Besides, the comparable results were recorded for each reaction parameter. An apparent positive effect was observed with increasing the amount of H 2 O 2  on H 2 S conversion. However, the conversion percentage was decreased while increased in the initial concentration of the H 2 S in the Fenton reactor. It was well accepted that the main conversion pathway of H 2 S was hydroxyl radical insert ignore into journalissuearticles values(•OH);. Additionally, the oxidative reaction of H 2 O 2  on H 2 S is thought another removal pathway. The expected products are sulphuric acid and S°.
Keywords : conversion, hydrogen sulfide, fenton reagent, hydroxyl radical OH,

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