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Flue gas desulfurization by citrate process and optimization of working parameters

机译:柠檬酸法烟气脱硫及工艺参数优化

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In this study, model flue gas was bubbled into 0.25 L tribasic sodium citrate (TSC) solution being in 0.5 L glass absorber to remove its SO2 content. Size of gas bubbles, absorption temperature, gas flow rate, solution concentration and stirring rate were taken as working parameters to investigate their effect on SO2 removal from flue gas. The Taguchi's experimental design method was used to obtain optimum values of working parameters for SO2 saturation time of the TSC solution selected as a quality characteristic. The optimum levels of parameters to maximize the SO2 saturation time of TSC solution were coarse bubbles for gas delivery, 35 °C for absorption temperature, 1.5 slm for gas flow rate, 0.5 M for TSC solution concentration and 500 rpm for stirring rate. Under these conditions, the SO2 saturation time of the TSC solution was achieved as 511 min in average. The most effective parameters on the absorption of SO2 in TSC solutions were ranked to the least as solution concentration, gas flow rate, size of gas bubbles, absorption temperature and stirring rate.
机译:在这项研究中,将模型烟道气鼓入0.5 L玻璃吸收塔中的0.25 L柠檬酸三钠(TSC)溶液中,以除去其SO2含量。以气泡的大小,吸收温度,气体流速,溶液浓度和搅拌速率为工作参数,研究它们对烟道气中SO 2去除的影响。 Taguchi的实验设计方法用于获得TSC溶液的SO2饱和时间的最佳工作参数值,该值被选为质量特征。使TSC溶液的SO2饱和时间最大化的最佳参数水平是:输送气体的粗气泡,吸收温度为35°C,气体流速为1.5 slm,TSC溶液浓度为0.5 M,搅拌速度为500 rpm。在这些条件下,TSC溶液的SO2饱和时间平均达到511分钟。在溶液浓度,气体流速,气泡大小,吸收温度和搅拌速度方面,对TSC溶液中SO2吸收的最有效参数排名最低。

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