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Experimental and modelling studies on fixed bed adsorption of As(III) ions from aqueous solution

机译:固定床吸附水溶液中As(III)离子的实验与模型研究

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This paper deals with the experimental investigation on removal of arsenic [As(III)] ions from drinking water by activated alumina and iron oxide impregnated activated alumina (IOIAA).Effect of inlet flow rate,sorbent bed height and initial As(III) concentration on the adsorption of As(III) from aqueous solution were studied.Increase in throughput volume was observed with increase in bed height whereas inverse relationship of flow rate and initial As(III) concentration with removal of arsenite ions was observed by these sorbents.Compared to activated alumina,iron oxide impregnated activated alumina was found more effective in removing As(III) ions.The dynamics of adsorption process was modelled by bed depth service time (BDST) and pore diffusion model.Adsorption rate constant (k_a) was found to increase with increase in flow rate indicating the overall system kinetics was dominated by external mass transfer in the initial part of the adsorption in the column.Critical bed depth (Z_0) increased with increase in flow rate for both the adsorbent.Relatively lower critical bed height was observed for As(III) removal onto IOIAA (0.56 cm) compared to AA (1.12 cm) at identical flow rate (0.083 cm~3/s).Time required for traveling a unit length of adsorber bed varied from 17,280 to 43,920s (4.8-12.2h) and 21,240-54,360 s for AA and IOIAA depending upon the conditions.Pore diffusion model explained the breakthrough behaviour for As(III) removal with a high degree of correlation.
机译:本文研究了用活性氧化铝和氧化铁浸渍的活性氧化铝(IOIAA)去除饮用水中砷[As(III)]离子的实验研究。入口流速,吸附剂床高度和初始As(III)浓度的影响研究了这些吸附剂对水溶液中As(III)吸附的影响。随着床层高度的增加,观察到了通量的增加,而与吸附剂去除砷后,流量和初始As(III)浓度的反比关系则相反。对于活性氧化铝,发现氧化铁浸渍的活性氧化铝对去除As(III)离子更有效。吸附过程的动力学通过床深服务时间(BDST)和孔扩散模型进行建模,发现吸附速率常数(k_a)为随流速的增加而增加,表明整个系统动力学主要由塔内吸附开始部分的外部传质控制。在相同流速(0.083 cm〜3 / s)下,与AA(1.12 cm)相比,在IOIAA(0.56 cm)上去除As(III)的临界床高度相对较低,而AA(1.12 cm)则相对较低。根据条件的不同,AA和IOIAA的每单位长度吸附床运行所需的时间从17,280到43,920s(4.8-12.2h)和21,240-54,360 s不等。孔扩散模型解释了As(III)去除的突破行为高度相关。

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