EDTA对氧化铁包覆砂柱中聚合物纳米颗粒沉积和滞留的影响。

Journal of Environmental Monitoring Pub Date : 2012-09-01 Epub Date: 2012-07-16 DOI:10.1039/c2em30145h
Xinyao Yang, Dongxu Liang, Shihuai Deng
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引用次数: 6

摘要

地下水含水层中存在的乙二氨基四乙酸(EDTA)使纳米颗粒在多孔介质中的运动预测复杂化。本文展示了一种结合三脉冲实验(TPEs)和数值模拟的方法,以量化EDTA对聚合物纳米颗粒在含铁包覆砂的饱和水柱中沉积和保留的影响。TPEs按纳米颗粒、EDTA、纳米颗粒的顺序连续注入三个脉冲,可以比较在没有EDTA和有EDTA的情况下纳米颗粒的沉积。随机顺序吸附(RSA)模型的纳米颗粒突破曲线结合质量平衡计算允许EDTA的影响被量化。TPE结果表明,注入的EDTA洗脱了砂表面的氧化膜(有利的沉积位点),导致位点的下降导致了后续脉冲中纳米颗粒迁移率的增强。定量结果表明,在实验时间尺度和控制条件下,洗脱一个沉积位点需要注射2.4 × 10(11)个EDTA分子。总共需要注射75克EDTA来去除所有的柱位。
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Quantifying the influence of EDTA on polymer nanoparticle deposition and retention in an iron-oxide-coated sand column.

Ethylenediaminotetraacetic acid (EDTA) occurring in groundwater aquifers complicates the prediction of nanoparticle movement in the porous medium. This paper demonstrates an approach combining Triple Pulse Experiments (TPEs) and numerical modelling to quantify the influence of EDTA on the deposition and retention of polymer nanoparticles in a water-saturated column packed with iron-oxide-coated sand. TPEs injecting three successive pulses in the order of nanoparticle, EDTA, nanoparticle permit nanoparticle deposition in the absence and the presence of EDTA to be compared. Random Sequential Adsorption (RSA) modelling of the nanoparticle breakthrough curves combining mass balance calculation allows the influence of EDTA to be quantified. TPE results demonstrate that the injected EDTA eluted the oxide coatings (favorable deposition sites) from the sand surface and the resulting decline in sites led to enhanced nanoparticle mobility in the subsequent pulse. Quantification results suggest that at the experimental time-scale and under the controlled conditions, elution of one deposition site requires injection of 2.4 × 10(11) EDTA molecules. In total, 75 gram EDTA needs to be injected to remove all the column sites.

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来源期刊
Journal of Environmental Monitoring
Journal of Environmental Monitoring 环境科学-分析化学
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审稿时长
2.3 months
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