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Kinetic and dynamic aspects of arsenic adsorption by Fe(III)-loaded sponge

机译:负载Fe(III)的海绵吸附砷的动力学和动力学方面

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Nowadays there is a great concern about new adsorbent materials for either the removal or fixation of arsenic species because of their high toxicity and the health problems associated with such species. In this paper the kinetics of absorption of As(V) on Fe(III)-loaded sponge have been studied and the results are compared with those of other natural and synthetic adsorbents. Arsenate was adsorbed very rapidly by Fe(III)-loaded sponge with saturation being reached in less than ten minutes. Arsenate was also adsorbed by Fe(III)-loaded Lewatit-TP-207 and non-loaded Purolite A100S ion-exchange resins but the times required to reach total saturation of the adsorbent were more than 100 minutes. The experimental data followed first-order kinetics. The extraordinarily superior kinetics are postulated to be related to the open-celled internal structure of the sponge material. The effect of flow rate on the dynamic removal of As(V) was studied in a fixed-bed column reactor for Fe(III)-loaded sponge and Fe(III)-loaded resin. The adsorption of As(V) on fixed-bed columns of adsorbent also indicated better kinetic properties for the sponge. Column studies showed a good correlation between the experimental data and the calculated breakthrough curves obtained by the Wolborska and Clark models. Application of the Wolborska model to the data at low C/C-0 ratios enabled the determination of the kinetic coefficient of mass transfer for the sponge and resin materials at the different flow rates used and gave a good prediction of the 5% breakthrough times. Furthermore, the breakthrough curves were well described by the Clark model at the ratios of concentration of effluent to influent up to 0.5 for the sponge and 0.3 for the Fe(III)-loaded resin. Above these levels, a large deviation occurred for the resin adsorption. Thus, the sponge was found to be kinetically effective and favored for As(V) adsorption from solution over the conventional adsorbents used and for most of the adsorbents reported in the bibliography.
机译:如今,由于砷的高毒性以及与此类物质有关的健康问题,人们非常关注用于去除或固定砷物质的新型吸附材料。本文研究了Fe(III)负载的海绵上As(V)的吸收动力学,并将结果与​​其他天然和合成吸附剂进行了比较。砷酸被负载有Fe(III)的海绵迅速吸附,在不到十分钟的时间内达到了饱和。砷酸也被Fe(III)负载的Lewatit-TP-207和非负载的Purolite A100S离子交换树脂吸附,但达到吸附剂完全饱和所需的时间超过100分钟。实验数据遵循一阶动力学。假定特别优越的动力学与海绵材料的开孔内部结构有关。在固定床柱反应器中,研究了Fe(III)负载的海绵和Fe(III)负载的树脂对流速对动态去除As(V)的影响。 As(V)在固定床吸附剂柱上的吸附也表明海绵具有更好的动力学性能。柱研究表明,实验数据与通过Wolborska和Clark模型获得的计算出的突破曲线之间具有良好的相关性。将Wolborska模型应用于低C / C-0比的数据可以确定在所使用的不同流速下海绵和树脂材料的传质动力学系数,并很好地预测了5%的穿透时间。此外,克拉克模型很好地描述了穿透曲线,其中海绵的流出物与流入物的浓度之比最高为0.5,而负载有Fe(III)的树脂为0.3。高于这些水平,树脂吸附发生很大的偏差。因此,发现该海绵在动力学上是有效的,并且比所用的常规吸附剂更有利于从溶液中吸附As(V),对于参考文献中报道的大多数吸附剂而言,这种海绵也是有利的。

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