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Goethite colloid enhanced Pu transport through a single saturated fracture in granite

机译:针铁矿胶体通过花岗岩中的单个饱和裂缝增强了Pu的运移

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摘要

α-FeOOH, a stable iron oxide in nature, can strongly absorb the low-solubility plutonium (Pu) in aquifers. However, whether Pu transports though a single saturated fracture can be enhanced in the presence of α-FeOOH colloids remains unknown. Experimental studies were carried out to evaluate Pu mobilization at different water flow velocity, as affected by goethite colloids with various concentrations. Goethite nanorods were used to prepare (α-FeOOH)-associated Pu suspensions with α-FeOOH concentration of (0-150) mg L~(-1). The work experimentally evidenced that α-FeOOH colloid does enhance transport of Pu through fractured granites. The fraction of mobile ~(239)Pu (R_(Pu, m) = 41.5%) associated with the α-FeOOH of an extremely low colloid concentration (0.2 mg L~(-1)) is much larger than that in absence of α-FeOOH (R_(Pu, m) = 6.98%). However, plutonium mobility began to decrease when α-FeOOH concentration was increased to 1.0 mg L~(-1). On the other hand, the fraction of mobile Pu increased gradually with the water flow velocity. Based on the experimental data, the mechanisms underlying the (α-FeOOH)-associated plutonium transport are comprehensively discussed in view of its dynamic deposition onto the granite surfaces, which is decided mainly by the relative interaction between the colloid particle and the immobile surface. This interaction is a balance of electrostatic force (may be repulsive or attractive), the van der Walls force, and the shear stress of flow.
机译:α-FeO​​OH本质上是一种稳定的氧化铁,可以强烈吸收含水层中的低溶解度p(Pu)。然而,在α-FeO​​OH胶体存在的情况下,能否增强Pu通过单个饱和裂缝的运移尚不清楚。进行了实验研究,以评估在不同流速下受不同浓度针铁矿胶体影响的Pu动员情况。用针铁矿纳米棒制备α-FeO​​OH浓度为(0-150)mg L〜(-1)的(α-FeO​​OH)相关的Pu悬浮液。该工作实验证明α-FeO​​OH胶体确实增强了Pu通过裂隙花岗岩的传输。与极低胶体浓度(0.2 mg L〜(-1))的α-FeO​​OH相关的可移动〜(239)Pu(R_(Pu,m)= 41.5%)的比例远大于不存在时α-FeO​​OH(R_(Pu,m)= 6.98%)。然而,当α-FeO​​OH的浓度增加到1.0 mg L〜(-1)时,mobility的迁移率开始下降。另一方面,流动的Pu的分数随着水的流速而逐渐增加。根据实验数据,结合(α-FeO​​OH)p迁移在花岗岩表面的动态沉积机理进行了全面讨论,这主要取决于胶体颗粒与固定表面之间的相对相互作用。这种相互作用是静电力(可能是排斥力或吸引力),范德华力和流动切应力之间的平衡。

著录项

  • 来源
    《Journal of Contaminant Hydrology》 |2014年第8期|251-258|共8页
  • 作者单位

    Northwest Institute of Nuclear Technology, Xi'an 710024, Shaanxi, China;

    Northwest Institute of Nuclear Technology, Xi'an 710024, Shaanxi, China;

    Northwest Institute of Nuclear Technology, Xi'an 710024, Shaanxi, China;

    Northwest Institute of Nuclear Technology, Xi'an 710024, Shaanxi, China;

    Northwest Institute of Nuclear Technology, Xi'an 710024, Shaanxi, China;

    Northwest Institute of Nuclear Technology, Xi'an 710024, Shaanxi, China;

    Northwest Institute of Nuclear Technology, Xi'an 710024, Shaanxi, China;

    Northwest Institute of Nuclear Technology, Xi'an 710024, Shaanxi, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Plutonium; Goethite; Single saturated fracture; Transport;

    机译:P;针铁矿单一饱和裂缝;运输;
  • 入库时间 2022-08-17 13:40:00

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