Department of Chemical Engineering, National Institute of Technology Karnataka, Surathkal, Srinivasnagar Post, Mangalore, 575025, India.
Environ Sci Pollut Res Int. 2023 Apr;30(19):57058-57075. doi: 10.1007/s11356-023-26210-2. Epub 2023 Mar 17.
Continuous adsorption of Remazol Brilliant Blue (RBB) dye in water onto sulfuric acid activated red mud (CATRM) in a fixed bed column was investigated. Breakthrough curves were obtained experimentally by varying the bed height (Z), influent flow rate (Q), and dye concentration(C). The adsorption efficiency in the removal of RBB was favored at lower C, higher Z, and lower Q. The maximum adsorption capacity of the activated red mud bed in the column was obtained at C = 70 mg/L, Z = 8 cm, and Q = 5 mL/min and found to be 106 mg/g. Important parameters of column dynamics and design such as mass transfer zone (MTZ) and length of unused bed (LUB) were evaluated from the breakthrough curves. The MTZ and LUB have varied with varying Z, which indicated the existence of nonideal conditions. Thomas model was found to be valid to predict the column dynamics and the model parameters were evaluated. Bed depth service time (BDST) model parameters were evaluated to facilitate the determination of packed bed height for the design of packed bed adsorption column. The bed could be regenerated with NaOH solution with desorption efficiency decreasing from 83.8 to 55.72% from the first to third cycle. A fixed bed of CATRM can be effectively used for continuous dye removal from industrial wastewater.
在固定床柱中研究了硫酸活化赤泥(CATRM)在水中对雷玛唑林亮蓝(RBB)染料的连续吸附。通过改变床层高度(Z)、入口流速(Q)和染料浓度(C)实验获得了穿透曲线。在较低的 C、较高的 Z 和较低的 Q 条件下,RBB 的去除吸附效率更高。在柱中,活性赤泥床的最大吸附容量在 C=70mg/L、Z=8cm 和 Q=5mL/min 时获得,为 106mg/g。从穿透曲线上评估了柱动力学和设计的重要参数,如传质区(MTZ)和未使用床层长度(LUB)。MTZ 和 LUB 随 Z 的变化而变化,表明存在非理想条件。发现托马斯模型可用于预测柱动力学,并评估模型参数。对床层深度工作时间(BDST)模型参数进行了评估,以方便确定填充床的高度,从而设计填充床吸附柱。该床可以用 NaOH 溶液再生,从第一次到第三次循环,解吸效率从 83.8%下降到 55.72%。CATRM 的固定床可有效用于连续去除工业废水中的染料。