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固定床柱操作对通过吸附到氧化铁包覆水泥(IOCC)上去除砷(V)的分析与建模。

Analysis and modeling of fixed bed column operations on As(V) removal by adsorption onto iron oxide-coated cement (IOCC).

作者信息

Kundu Sanghamitra, Gupta A K

机构信息

Department of Civil Engineering, Indian Institute of Technology, Kharagpur 721302, India.

出版信息

J Colloid Interface Sci. 2005 Oct 1;290(1):52-60. doi: 10.1016/j.jcis.2005.04.006.

Abstract

Fixed-bed column studies were undertaken to evaluate the performance of iron oxide-coated cement (IOCC) in removing As(V), from aqueous environment, under varying operating conditions. Investigations revealed IOCC to be a very efficient media for the removal of As(V) from water. The Bohart and Adams sorption model was employed to determine characteristic parameters such as depth of exchange zone, time required for exchange zone to move its own height, adsorption rate, and adsorption capacity, useful for process design. The IOCC media effectively removed As(V) from a 2 mg/L solution with a maximum adsorption capacity of 505.3 mg/L. Predicted data points obtained using a Freundlich isotherm model were compared against experimental data points determined in the dynamic process. The effects of important design parameters such as flow rate and influent concentration on the As(V) breakthrough curves were also investigated. The bed depth service time (BDST) model was extended to the prediction of service times of columns operated at different flow rates and influent concentrations and these predicted values were compared with the experimental values. The columns were regenerated by eluting the bound As(V) with 10% NaOH after the adsorption studies.

摘要

进行了固定床柱实验,以评估在不同操作条件下,涂覆有氧化铁的水泥(IOCC)从水环境中去除五价砷(As(V))的性能。研究表明,IOCC是一种从水中去除As(V)的高效介质。采用博哈特和亚当斯吸附模型来确定特征参数,如交换区深度、交换区移动自身高度所需的时间、吸附速率和吸附容量,这些参数对工艺设计很有用。IOCC介质能有效从2 mg/L的溶液中去除As(V),最大吸附容量为505.3 mg/L。将使用弗伦德利希等温线模型获得的预测数据点与动态过程中测定的实验数据点进行了比较。还研究了流速和进水浓度等重要设计参数对As(V)穿透曲线的影响。将床层深度服务时间(BDST)模型扩展到预测不同流速和进水浓度下运行的柱子的服务时间,并将这些预测值与实验值进行了比较。吸附研究结束后,通过用10%的氢氧化钠洗脱结合的As(V)对柱子进行再生。

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