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As(III)removal from aqueous medium in fixed bed using iron oxide-coated cement(IOCC):Experimental and modeling studies

机译:用氧化铁涂层水泥(IOCC)从固定床中的水性介质中去除As(III):实验和模型研究

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Continuous fixed bed studies were undertaken to evaluate the efficiency of iron oxide-coated cement(IOCC)as an adsorbent for the removal of As(III)from aqueous solution under the effect of various process parameters like bed depth(10-20cm),flow rate(4.3-12mlmin-1)and initial As(III)concentrations(0.5-2.7 mgl-1).The results showed that the total As(III)uptake decreased with increasing flow rate and increased with increasing initial As(III)concentration.Also,the total As(III)removal percentage increased with the increase in bed depth.The dynamics of the adsorption process was modeled by bed depth service time(BDST),mass transfer,Thomas and Yoon-Nelson models.The BDST model fitted well with the experimental data in the initial region of the breakthrough curve but showed slight deviations above break points.Though the experimental data points and the data points predicted using the mass transfer model followed a similar trend,they slightly deviated from each other.The Thomas and Yoon-Nelson model predictions were in very good agreement with the experimental results at all the process parameters studied indicating that they were very suitable for IOCC column design.The apparent mechanism of As(III)removal in the IOCC column were ion exchange and physisorption on the adsorbent surface.
机译:在床深度(10-20cm),流量等各种工艺参数的影响下,进行了连续固定床研究,以评估氧化铁涂层水泥(IOCC)作为吸附剂从水溶液中去除As(III)的效率。结果(4.3-12mlmin-1)和初始As(III)浓度(0.5-2.7 mgl-1)。结果表明,总As(III)吸收量随着流速的增加而降低,并随着初始As(III)浓度的增加而增加此外,总的As(III)去除百分率随床深度的增加而增加。吸附过程的动力学通过床深度服务时间(BDST),传质,Thomas和Yoon-Nelson模型进行建模。尽管实验数据点和使用传质模型预测的数据点都遵循相似的趋势,但它们之间略有偏离。和Yoon-Nelso在所有研究的工艺参数上,n个模型预测与实验结果非常吻合,表明它们非常适合IOCC色谱柱设计.IOCC色谱柱中As(III)去除的明显机理是离子交换和吸附剂的物理吸附表面。

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