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Efficient arsenic(V) and arsenic(III) removal from acidic solutions with Novel Forager Sponge-loaded superparamagnetic iron oxide nanoparticles

机译:使用新型Forager海绵装载的超顺磁性氧化铁纳米颗粒从酸性溶液中有效去除砷(V)和砷(III)

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摘要

Nowadays, there is awidevariety of arsenic decontamination processes being adsorption processes themost efficient. In this concern, superparamagnetic iron oxide nanoparticles (SPION) have been proposed as an appropriate system to improve arsenic adsorption from acidic wastewater. The number of mines, the amount of ore processed, and thus the amount of mine (acid) wastewaters have been rapidly increased in recent decades. For this reason, arsenic removal from contaminated water is an important goal to accomplish environmental regulations. It is noteworthy that aggregation of these nanoparticles has been detected as the maindifficulty, hindering thepromising adsorption. In order toovercomethis drawback, it is proposed a system to avoid aggregation based on nanoparticles dispersion into an appropriate supporting material. To this purpose, SPION have been fixed on a cellulosic sponge achieving a decrease of the aggregation state, an increase of the active centers, and consequently, arsenic adsorption increases. Experimental results report a lower aggregation of supported SPION over sponge than the observed in the non supported nanoparticles. At this point, a remarkable improvement in the sponge system adsorption capacity is observed in comparison with superparamagnetic nanoparticles in suspension, reaching adsorption capacities about 2.1 mmol As/g SPION and 12.1 mmol As/g SPION for arsenite and arsenate, respectively at pH 3.8. Then, the developed system not only amends the aggregation problem but also keep their nanoproperties intact, making the system a suitable one for arsenic removal in acidic wastewater treatment
机译:如今,各种各样的砷净化过程是最有效的吸附过程。考虑到这一点,已经提出了超顺磁性氧化铁纳米颗粒(SPION)作为改善酸性废水中砷吸附的合适系统。近几十年来,矿山的数量,加工的矿石量以及矿山(酸性)废水的数量已迅速增加。因此,从污染水中去除砷是实现环境法规的重要目标。值得注意的是,这些纳米颗粒的聚集已被检测为主要困难,阻碍了有希望的吸附。为了克服该缺点,提出了一种避免基于纳米颗粒分散到合适的支撑材料中的聚集的系统。为此,将SPION固定在纤维素海绵上,以实现聚集状态的降低,活性中心的增加以及因此砷吸附的增加。实验结果表明,与未负载的纳米颗粒相比,负载的SPION在海绵上的聚集度更低。在这一点上,与悬浮液中的超顺磁性纳米颗粒相比,海绵系统的吸附能力得到了显着改善,在pH 3.8时分别达到约2.1 mmol As / g SPION和12.1 mmol As / g SPION的吸附能力。然后,开发的系统不仅可以解决聚集问题,而且还可以保持其纳米特性完整,使该系统成为酸性废水处理中砷去除的合适系统。

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  • 作者

    Morillo D.;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 eng
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