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Studies of VOCs removed from packed-bed absorber by experimental design methodology and analysis of variance

机译:通过实验设计方法和方差分析研究从填充床吸收塔中去除VOC

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Indoor air quality is affected by volatile organic compound (VOC) pollutants and these are often emitted by furniture and building materials. To enhance indoor air quality, removing VOCs from indoor environment is an important task. Triethylene glycol (TEG) solution was used as working solution to absorb VOCs from ambient air in this study. Plastic 5/8 in. polaring-type was packed in the packed-bed absorber, and the packed length was about 34 cm. Toluene, methanol, ethyl ether, and methyl-ethyl ketone were absorbed separately by TEG solution. Two-level factorial experimental design methodology was applied to schedule the operating variables in the experiment. The advantage of experimental design methodology is to obtain reasonable experimental results with fewer experimental runs. In addition, the analysis of variance (ANOVA) was used to analyze the effect of operating variables (factors) on mass transfer coefficient (response). The p-value was used to assess the mass transfer performance of VOCs absorbed by packed-bed absorber. From experimental results, effect of air flux on mass transfer coefficient was significant except for methanol because the p-values were smaller than 0.1 for toluene, ethyl ether, and ketone. For VOCs concentration, the effect of methanol concentration on mass transfer coefficient was extremely significant; the effect of concentration of ethyl ether was very significant; the effect of concentration of toluene was significant; the effect of methyl-ethyl ketone was insignificant. Since all the p-values were smaller than 0.01 for liquid flux, the effect of liquid flux on mass transfer coefficient was very significant. By analyzing the factorial interaction, the factorial couples, toluene concentration x liquid flux, TEG concentration x methanol concentration, TEG concentration x ethyl ether concentration, and ketone concentration x liquid flux can be chosen as main variables to operate the absorption system for absorption of toluene, methanol, ethyl ether, and ketone to acquire the desired mass transfer coefficient.
机译:室内空气质量受挥发性有机化合物(VOC)污染物的影响,这些污染物通常由家具和建筑材料释放。为了提高室内空气质量,从室内环境中去除VOC是一项重要的任务。在这项研究中,使用三甘醇(TEG)溶液作为工作溶液从周围空气中吸收VOC。将塑料5/8英寸极化类型填充到填充床吸收器中,填充长度约为34厘米。甲苯,甲醇,乙醚和甲基乙基酮被TEG溶液分别吸收。采用二级析因实验设计方法来安排实验中的操作变量。实验设计方法的优点是可以以较少的实验次数获得合理的实验结果。另外,使用方差分析(ANOVA)来分析操作变量(因子)对传质系数(响应)的影响。 p值用于评估填充床吸收塔吸收的VOC的传质性能。根据实验结果,除甲醇外,空气通量对传质系数的影响非常显着,因为甲苯,乙醚和酮的p值均小于0.1。对于VOCs浓度,甲醇浓度对传质系数的影响非常显着。乙醚浓度的影响非常显着。甲苯浓度影响显着;甲基乙基酮的影响不明显。由于液体通量的所有p值均小于0.01,因此液体通量对传质系数的影响非常显着。通过分析阶乘相互作用,可以选择阶乘偶,甲苯浓度x液体通量,TEG浓度x甲醇浓度,TEG浓度x乙醚浓度和酮浓度x液体通量作为操作甲苯吸收系统的主要变量。甲醇,乙醚和酮,以获得所需的传质系数。

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