Department of Civil and Environmental Engineering, Faculty of Engineering-Rabigh Branch, King Abdulaziz University, Jeddah 21589, Saudi Arabia.
Chemosphere. 2023 Oct;339:139691. doi: 10.1016/j.chemosphere.2023.139691. Epub 2023 Aug 4.
Investigations have been carried out on the utilization of Activated Carbon (AC) in adsorption processes for the wastewater treatment of industry and municipal. Sulfides materials, phenols and furfural is a toxic compounds in wastewater from refineries can adversely affect the performance of biological aeration basins in reducing COD levels. This work aims to provide the effectiveness of AC in reducing the COD level of the effluent from the Dissolved Air Flotation (DAF) unit to meet standards of environments protecting and pass the design of wastewater treatment plants. A dynamic adsorption model was developed based on the dispersion of axial in the AC packed bed, assuming that the LDF (linear driving force) model in to the adsorbents is agreed to mass transfer. The model's predictions of chemical oxygen demand breakthrough curve concentrations showed excellent agreement with experimental data. The sensitivity analysis of operational conditions such as flow rate, inlet concentration of COD and bed length was used to gain a better understanding of the optimal design of an AC fixed bed. The results suggest that an AC fixed bed can complement biological treatment of wastewater and address the challenges faced by biological basins in oil refineries.
已对工业和市政废水处理中吸附工艺中活性炭 (AC) 的利用进行了研究。硫化物材料、苯酚和糠醛是炼油厂废水中的有毒化合物,会对生物曝气池降低 COD 水平的性能产生不利影响。本工作旨在提供活性炭降低溶气浮选 (DAF) 单元出水 COD 水平的效果,以满足环境保护标准并通过废水处理厂的设计。基于活性炭填充床中轴向弥散,开发了一个动态吸附模型,假设 LDF(线性驱动力)模型适用于吸附剂的传质。模型对化学需氧量穿透曲线浓度的预测与实验数据吻合良好。对流速、COD 入口浓度和床长等操作条件的敏感性分析,有助于更好地了解活性炭固定床的优化设计。结果表明,活性炭固定床可以补充废水的生物处理,并解决炼油厂生物池面临的挑战。