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Gaseous elemental mercury removal using VUV and heat coactivation of Oxone/H_2/O_2 in a VUV-spraying reactor

机译:在VUV喷涂反应器中使用VUV去除气态元素汞并与Oxone / H_2 / O_2热共活化

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摘要

A novel process on gaseous elemental mercury removal using vacuum ultraviolet light (VUV) and heat coactivation of Oxone/H2O/O-2 (i.e., VUV/heat/Oxone/H2O/O-2 system) in a VUV-spraying reactor was investigated for the first time. Experiments were carried out to evaluate the effects of several operating parameters (e.g, VUV wavelength, Oxone concentration, VUV radiation intensity, activation temperature, solution pH and O-2 concentration) on Hg-O removal. Mechanism and kinetic law of Hg-O removal were also revealed. The results demonstrated that 185 nm wavelength showed the best performance. Hg-O removal was promoted by increasing VUV radiation intensity, Oxone concentration and O-2 concentration, and was weakened by increasing solution pH and SO2 concentration. Activation temperature exhibited dual influence on Hg-O removal. Hg-O was removed by six pathways: (1) oxidized by SO4-center dot and center dot OH that are produced from VUV activation of Oxone; (2) oxidized by O3 and center dot O that are produced from VUV photolysis of O-2; (3) oxidized by center dot OH that is produced from VUV photolysis of H2O; (4) removed by light-water excitation reaction; (5) oxidized by SO4- center dot and center dot OH that are produced from heat activation of Oxone; (6) oxidized directly by Oxone. Hg-O removal process followed a fast reaction in VUV/heat/Oxone/H2O/O-2 system (i.e., presence of VUV) and a medium speed reaction in heat/Oxone/H2O/O-2 system (i.e., absence of VUV).
机译:研究了一种在真空紫外反应器中使用真空紫外光(VUV)去除气态元素汞并与Oxone / H2O / O-2热共活化的新方法(即VUV /热/ Oxone / H2O / O-2系统)首次。进行实验以评估几个操作参数(例如,VUV波长,Oxone浓度,VUV辐射强度,活化温度,溶液pH和O-2浓度)对Hg-O去除的影响。还揭示了Hg-O去除的机理和动力学规律。结果表明,185 nm波长显示出最佳性能。通过增加VUV辐射强度,Oxone浓度和O-2浓度可促进Hg-O的去除,而通过增加溶液pH值和SO2浓度可降低Hg-O的去除。活化温度对去除Hg-O具有双重影响。 Hg-O通过六种途径除去:(1)被Vox活化Oxone产生的SO4-中心点和中心点OH氧化; (2)被V-2光解V-2产生的O3和中心点O氧化; (3)被水的VUV光解所产生的中心点OH所氧化; (4)通过轻水激发反应除去; (5)被Oxone的热活化产生的SO4-中心点和中心点OH氧化; (6)被Oxone直接氧化。在VUV /加热/ Oxone / H2O / O-2系统中快速反应(即存在VUV)和H / Oxone / H2O / O-2系统中速反应(即不存在HUV)之后,Hg-O的去除过程迅速VUV)。

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