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Adsorption and desorption characteristics of arsenic onto ceria nanoparticles

机译:砷在二氧化铈纳米颗粒上的吸附和解吸特性

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摘要

The rapid increase in the use of engineered nanoparticles [ENPs] has resulted in an increasing concern over the potential impacts of ENPs on the environmental and human health. ENPs tend to adsorb a large variety of toxic chemicals when they are emitted into the environment, which may enhance the toxicity of ENPs and/or adsorbed chemicals. The study was aimed to investigate the adsorption and desorption behaviors of arsenic on ceria NPs in aqueous solution using batch technique. Results show that the adsorption behavior of arsenic on ceria NPs was strongly dependent on pH and independent of ionic strength, indicating that the electrostatic effect on the adsorption of these elements was relatively not important compared to surface chemical reactions. The adsorption isotherms fitted very well to both the Langmuir and Freundlich models. The thermodynamic parameters (ΔH0, ΔS0, and ΔG0) for the adsorption of arsenic were determined at three different temperatures of 283, 303, and 323 K. The adsorption reaction was endothermic, and the process of adsorption was favored at high temperature. The desorption data showed that desorption hysteresis occurred at the initial concentration studied. High adsorption capacity of arsenic on ceria NPs suggests that the synergistic effects of ceria NPs and arsenic on the environmental systems may exist when they are released into the environment.
机译:工程纳米颗粒[ENPs]的使用迅速增加,导致人们越来越关注ENP对环境和人类健康的潜在影响。 ENP排放到环境中时,往往会吸附多种有毒化学物质,这可能会增强ENP和/或吸附的化学物质的毒性。目的采用分批技术研究砷在水溶液中二氧化铈纳米颗粒上的吸附和解吸行为。结果表明,砷在二氧化铈NPs上的吸附行为强烈依赖于pH值,而与离子强度无关,这表明与表面化学反应相比,静电对这些元素的吸附作用并不重要。吸附等温线非常适合Langmuir和Freundlich模型。在283、303的三个不同温度下确定了吸附砷的热力学参数(ΔH 0 ,ΔS 0 和ΔG 0 )。 ,和323K。吸附反应是吸热的,并且在高温下有利于吸附过程。解吸数据表明在所研究的初始浓度下发生了解吸滞后。砷对二氧化铈NPs的高吸附能力表明,二氧化铈NPs和砷在释放到环境中时可能存在对环境系统的协同作用。

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