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Desorption experiments and modeling of micropollutants on activated carbon in water phase: application to transient concentrations mitigation

机译:活性炭在水相中的微污染物解吸实验和建模:在减轻瞬时浓度中的应用

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摘要

Experimental studies and numerical modeling were conducted to assess the feasibility of a granular activated carbon column to buffer load variations of contaminants before wastewater treatment devices. Studies of cycles of adsorption, and more especially desorption, of methyldiethanolamine (MDEA) and 2,4-dimethylphenol (2,4-DMP) have been carried out on granular activated carbon (GAC). Dynamic variations of contaminants concentrations were run at several conditions of duration (peaks). GAC fixed-bed exhibited a stable adsorption/desorption capacity after undergoing two conditioning cycles. The study of pollution peaks revealed that attenuation is largely dependent on the targeted pollutant: 2.4 ± 0.5 % attenuation/cm of bed for MDEA and 6.0 ± 1.2 % attenuation/cm of bed for 2,4-DMP. Mass balances calculated from both injected and recovered pollutant during peaks were respected. Finally, a coupling of the linear driving force model and isotherms models was used to fit experimental data for both adsorption breakthrough curves and desorption curves. The model was used to predict adsorption and desorption behaviors of following cycles. Good agreement with experimental values was obtained.
机译:进行了实验研究和数值模拟,以评估颗粒状活性炭柱在废水处理设备之前缓冲污染物负荷变化的可行性。已经在颗粒状活性炭(GAC)上进行了甲基二乙醇胺(MDEA)和2,4-二甲基苯酚(2,4-DMP)的吸附,尤其是解吸的循环研究。污染物浓度的动态变化在持续时间(峰值)的几个条件下进行。 GAC固定床经过两个调节循环后,表现出稳定的吸附/解吸能力。对污染峰值的研究表明,衰减很大程度上取决于目标污染物:对于MDEA,床层的衰减为2.4±0.5%/ cm,对于2,4-DMP,床层的衰减为6.0±1.2%/ cm。遵守在高峰期从注入和回收的污染物计算得出的质量平衡。最后,线性驱动力模型和等温线模型的耦合用于拟合吸附突破曲线和解吸曲线的实验数据。该模型用于预测后续循环的吸附和解吸行为。获得与实验值的良好一致性。

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