利用Fluent软件包,对300MW机组湿法烟气脱硫(wet flue gas desulfurization,WFGD)系统喷淋塔内阻力特性进行了数值模拟,着重考察了不同塔径、喷淋层间距和喷淋层数等设计条件及不同负荷、液气比等运行工况下喷淋塔内阻力特性。结果表明,...利用Fluent软件包,对300MW机组湿法烟气脱硫(wet flue gas desulfurization,WFGD)系统喷淋塔内阻力特性进行了数值模拟,着重考察了不同塔径、喷淋层间距和喷淋层数等设计条件及不同负荷、液气比等运行工况下喷淋塔内阻力特性。结果表明,300MW机组WFGD系统喷淋塔内阻力在烟气量125×104m3/h、塔径13m、4层喷淋、层间距1.7m时约为950Pa,与实际工程测量数据较为吻合;塔径、喷淋层数量、负荷和液气比是影响喷淋塔内阻力的重要因素;模拟计算值可作为喷淋塔设计与运行优化的依据。展开更多
A study on non catalytic oxidation kinetics of calcium sulfite is presented under typical conditions of wet flue gas desulfurization (FGD)in this paper A laboratory scale mechanically stirred tank reactor is used with...A study on non catalytic oxidation kinetics of calcium sulfite is presented under typical conditions of wet flue gas desulfurization (FGD)in this paper A laboratory scale mechanically stirred tank reactor is used with continuous feed of both gas and liquid phase The results show that increasing CaSO 3 load from a lower value, the reaction rate increases and is limited by solid sulfite dissolution The oxidation rate limitation is observed at loads exceeding certain concentration The rate limitation is possibly caused by solid sulfite solubility or oxygen gas liquid diffusion The experimental conclusions are useful for design and operation of the holding tank in forced oxidation wet展开更多
文摘利用Fluent软件包,对300MW机组湿法烟气脱硫(wet flue gas desulfurization,WFGD)系统喷淋塔内阻力特性进行了数值模拟,着重考察了不同塔径、喷淋层间距和喷淋层数等设计条件及不同负荷、液气比等运行工况下喷淋塔内阻力特性。结果表明,300MW机组WFGD系统喷淋塔内阻力在烟气量125×104m3/h、塔径13m、4层喷淋、层间距1.7m时约为950Pa,与实际工程测量数据较为吻合;塔径、喷淋层数量、负荷和液气比是影响喷淋塔内阻力的重要因素;模拟计算值可作为喷淋塔设计与运行优化的依据。
文摘A study on non catalytic oxidation kinetics of calcium sulfite is presented under typical conditions of wet flue gas desulfurization (FGD)in this paper A laboratory scale mechanically stirred tank reactor is used with continuous feed of both gas and liquid phase The results show that increasing CaSO 3 load from a lower value, the reaction rate increases and is limited by solid sulfite dissolution The oxidation rate limitation is observed at loads exceeding certain concentration The rate limitation is possibly caused by solid sulfite solubility or oxygen gas liquid diffusion The experimental conclusions are useful for design and operation of the holding tank in forced oxidation wet