克劳斯过程
硫黄
硫化氢
酸性气体
酸性气体
工作(物理)
过程模拟
上游(联网)
工艺工程
过程(计算)
炼油厂
硫化物
烟气脱硫
化学
氢
机组运行
天然气
环境科学
废物管理
化学工程
计算机科学
工程类
无机化学
机械工程
有机化学
计算机网络
操作系统
作者
Farhad Fazlollahi,Sajjad Asadizadeh,Milad Ahmadi Khoshooei,Mohammad Reza Sardashti Birjandi,Majid Sarkari
摘要
Hydrogen sulfide exists mostly as a detrimental byproduct in the gas processing units as well as refineries, and it must be eliminated from natural gas streams. In a Sulfur Recovery Unit (SRU), hydrogen sulfide is converted into the elemental sulfur during the modified Claus process. Efficiency of sulfur recovery units significantly depends on the reaction furnace temperature. In this work, the effect of oxygen and acid gas enrichment on the reaction furnace temperature and accordingly on sulfur recovery is studied, using both numerical modeling and process simulation. Then, simulation and numerical model are benchmarked against the experimental data of an SRU unit. The validated model provides spotlight on optimizing the upstream sulfur removal unit as well as the oxygen purification process. Two cases of acid gas streams with low and high H 2 S content, 30% and 50%, are studied to investigate the effect of operating parameters on the overall recovery. Finally, average errors of the models are presented. According to the absolute difference with experimental values, the developed numerical model shows great potential for accurately estimating overall efficiency of the recovery unit.
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