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首页> 外文期刊>Journal of Nanoparticle Research >Enhanced transport of zerovalent iron nanoparticles in saturated porous media by guar gum
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Enhanced transport of zerovalent iron nanoparticles in saturated porous media by guar gum

机译:瓜尔胶增强零价铁纳米颗粒在饱和多孔介质中的转运

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摘要

In order to ensure adequate mobility of zerovalent iron nanoparticles in natural aquifers, the use of a stabilizing agent is necessary. Polymers adsorbed on the nanoparticle surface will give rise to electrosteric stabilization and will decrease attachment to the surface soil grains. Water saturated sand-packed columns were used in this study to investigate the transport of iron nanoparticle suspensions, bare or modified with the green polymer guar gum. The suspensions were prepared at 154 mg/L particle concentration and 0.5 g/L polymer concentration. Transport experiments were conducted by varying the ionic strength, ionic composition, and approach velocity of the fluid. Nanoparticle deposition rates, attachment efficiencies, and travel distances were subsequently calculated based on the classical particle filtration theory. It was found that bare iron nanoparticles are basically immobile in sandy porous media. In contrast, guar gum is able to ensure significant nanoparticle transport at the tested conditions, regardless of the chemistry of the solution. Attachment efficiency values for guar gum-coated nanoparticles under the various conditions tested were smaller than 0.066. Although the calculated travel distances may not prove satisfactory for field application, the investigation attested the promising role of guar gum to ensure mobility of iron nanoparticles in the subsurface environment.
机译:为了确保零价铁纳米粒子在天然含水层中具有足够的迁移率,必须使用稳定剂。吸附在纳米颗粒表面上的聚合物将产生静电空间稳定性,并减少与土壤表层颗粒的附着。在这项研究中,用水饱和的沙子填充柱用于研究裸露或用绿色聚合物瓜尔胶改性的铁纳米颗粒悬浮液的运输。制备的悬浮液的颗粒浓度为154 mg / L,聚合物浓度为0.5 g / L。通过改变离子强度,离子组成和流体的接近速度进行运输实验。随后基于经典的粒子过滤理论计算了纳米粒子的沉积速率,附着效率和行进距离。发现裸铁纳米颗粒基本上不固定在沙质多孔介质中。相比之下,瓜尔豆胶能够确保在测试条件下显着的纳米颗粒运输,而与溶液的化学性质无关。在测试的各种条件下,瓜尔胶涂覆的纳米颗粒的附着效率值小于0.066。尽管计算出的行进距离可能无法证明对于现场应用是令人满意的,但是该研究证明了瓜尔豆胶在确保铁纳米颗粒在地下环境中的流动性方面的有希望的作用。

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