El-Naas Muftah H, Alhaija Manal A, Al-Zuhair Sulaiman
Gas Processing Center, College of Engineering, Qatar University, P.O. Box 2713, Doha, Qatar.
Chemical and Petroleum Engineering Department, UAE University, P. O. Box 15551, Al-Ain, UAE.
Environ Sci Pollut Res Int. 2017 Mar;24(8):7511-7520. doi: 10.1007/s11356-017-8469-8. Epub 2017 Jan 23.
The performance of an adsorption column packed with granular activated carbon was evaluated for the removal of phenols from refinery wastewater. The effects of phenol feed concentration (80-182 mg/l), feed flow rate (5-20 ml/min), and activated carbon packing mass (5-15 g) on the breakthrough characteristics of the adsorption system were determined. The continuous adsorption process was simulated using batch data and the parameters for a new empirical model were determined. Different dynamic models such as Adams-Bohart, Wolborsko, Thomas, and Yoon-Nelson models were also fitted to the experimental data for the sake of comparison. The empirical, Yoon-Nelson and Thomas models showed a high degree of fitting at different operation conditions, with the empirical model giving the best fit based on the Akaike information criterion (AIC). At an initial phenol concentration of 175 mg/l, packing mass of 10 g, a flow rate of 10 ml/min and a temperature of 25 °C, the SSE of the new empirical and Thomas models were identical (248.35) and very close to that of the Yoon-Nelson model (259.49). The values were significantly lower than that of the Adams-Bohart model, which was determined to be 19,358.48. The superiority of the new empirical model and the Thomas model was also confirmed from the values of the R and AIC, which were 0.99 and 38.3, respectively, compared to 0.92 and 86.2 for Adams-Bohart model.
对填充颗粒活性炭的吸附柱去除炼油厂废水中酚类物质的性能进行了评估。测定了酚进料浓度(80 - 182毫克/升)、进料流速(5 - 20毫升/分钟)和活性炭填充质量(5 - 15克)对吸附系统穿透特性的影响。利用间歇数据模拟连续吸附过程,并确定了新经验模型的参数。为了进行比较,还将不同的动态模型,如亚当斯 - 博哈特模型、沃尔博尔斯科模型、托马斯模型和尹 - 尼尔森模型拟合到实验数据中。经验模型、尹 - 尼尔森模型和托马斯模型在不同操作条件下显示出高度拟合,基于赤池信息准则(AIC),经验模型拟合效果最佳。在初始酚浓度为175毫克/升、填充质量为10克、流速为10毫升/分钟和温度为25℃时,新经验模型和托马斯模型的残差平方和(SSE)相同(248.35),并且与尹 - 尼尔森模型的残差平方和(259.49)非常接近。这些值明显低于亚当斯 - 博哈特模型的残差平方和,其值为19358.48。新经验模型和托马斯模型的优越性也从R和AIC值得到证实,它们分别为0.99和38.3,而亚当斯 - 博哈特模型的R和AIC值分别为0.92和86.2。