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Electrochemical method for sulphur dioxide removal from flue gases: Application on sulphuric acid plant in Tunisia

机译:烟气中二氧化硫的电化学去除方法:在突尼斯硫酸厂的应用

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This article presents an electrochemical method for sulphur dioxide removal; the idea consists to couple the phenomenon of electrolysis upstream to the sulphuric acid plant. Otherwise, this proposition consists in modifying the hybrid cycle Westinghouse by the elimination of the sulphuric acid decomposition stage, which corresponds to 61% of the energy distribution of this cycle. The step of the decomposition is replaced by the exploitation of the quantity of sulphur dioxide emissions SO2 stemming from the process of sulphuric acid H2SO4 production. The industrial complex of Gabes in South Tunisia is selected to be the case study complex. In fact, most industries are chemical oriented, the fast growing numbers of H2SO4 factories have resulted in fairly serious air pollution, especially sulphur dioxide SO2 pollution. To confirm the efficiency of this process, a mass balance study was made on the sulphuric acid plant, which used a double contact/double absorption process; this study demonstrates that this new method can treat 8 t d~(-1) of sulphur dioxide, recover 12 t d~(-1) of sulphuric acid of title 50% and produce 6889 m~3 d~(-1) of the hydrogen. This idea can achieve economical and environmental benefits. It is concluded that the usage of this electrochemical process can significantly reduce the SO2 air pollution in Gabes (South Tunisia) by the elimination of 46.94 t d~(-1) of SO2. The results obtained are ambitious for future application of the new process, which can succeed in the realisation of 3.92 million dollars of gain every day.
机译:本文提出了一种电化学方法去除二氧化硫。这个想法包括将上游电解现象耦合到硫酸装置。否则,该提议在于通过消除硫酸分解阶段来修改混合循环西屋,这相当于该循环能量分布的61%。分解步骤被开采硫酸H2SO4生产过程中产生的二氧化硫排放量SO2代替。选择了突尼斯南部加贝斯工业园区作为案例研究园区。实际上,大多数行业都是以化学为导向的,H2SO4工厂的快速增长导致了相当严重的空气污染,特别是二氧化硫SO2污染。为了确认该方法的效率,对硫酸工厂进行了质量平衡研究,该工厂使用了双重接触/双重吸收过程。这项研究表明,该新方法可处理8 td〜(-1)的二氧化硫,回收12 td〜(-1)的标题为50%的硫酸,并产生6889 m〜3 d〜(-1)的氢气。 。这个想法可以实现经济和环境效益。结论是,该电化学方法的使用可以通过消除46.94 t d〜(-1)的SO2显着减少加贝斯(突尼斯南部)的SO2空气污染。获得的结果对于新工艺的未来应用是雄心勃勃的,它可以成功实现每天392万美元的收益。

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