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Field Scale Mobility and Transport Manipulation of Carbon- Supported Nanoscale Zerovalent Iron in Fractured Media

机译:碳负载纳米级零价铁在破裂介质中的场尺度迁移率和迁移调控

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摘要

In field applications, mostly in porous media, transport of stabilized nano zerovalent iron particles (nZVI) has never exceeded a few meters in range. In the present study, the transport of Carbo-Iron Colloids (CIC), a composite material of activated carbon as a carrier for nZVI stabilized by carboxymethyl cellulose (CMC), was tested under field conditions. The field site lies within a fractured chalk aquitard characterized by moderately saline (similar to 13 mS) groundwater. A forced gradient tracer test was conducted where one borehole was pumped at a rate of 8 L/min and CMC-stabilized CIC was introduced at an injection borehole 47 m up-gradient. Two CIC-CMC field applications were conducted: one used high 100% wt CMC (40 g/L) and a second used lower 9% wt loading (similar to 2.7 g/L). Iodide was injected as a conservative tracer with the CIC-CMC in both cases. The ratio between the CIC-CMC and iodide recovery was 76% and 45% in the high and low CMC loading experiments, respectively. During the low CMC loading experiment, the pumping rate was increased, leading to an additional CIC recovery of 2.5%. The results demonstrate the potentially high mobility of nZVI in fractured environments and the possibility for transport manipulation through the adjustment of stabilizer concentration and transport velocity.
机译:在现场应用中(主要是在多孔介质中),稳定的纳米零价铁颗粒(nZVI)的传输范围从未超过几米。在本研究中,在田间条件下测试了碳-铁胶体(CIC)的运输,该材料是活性炭的复合材料,是羧甲基纤维素(CMC)稳定的nZVI的载体。现场位于裂缝白垩纪的阿卡塔德地区,其特征为中等盐度(类似于13 mS)的地下水。进行了强制梯度示踪剂测试,其中一个井眼以8 L / min的速度泵入,并在向上倾斜47 m的注入井眼中引入了CMC稳定的CIC。进行了两次CIC-CMC现场应用:一种使用高100%wt的CMC(40 g / L),另一种使用低9%wt的负载(类似于2.7 g / L)。在这两种情况下,都将碘化物作为保守示踪剂与CIC-CMC一起注射。在高和低CMC负载实验中,CIC-CMC和碘化物回收率之间的比率分别为76%和45%。在低CMC负载实验期间,泵送速度增加,导致CIC的回收率为2.5%。结果表明,nZVI在破裂环境中可能具有较高的迁移率,并可能通过调节稳定剂的浓度和运输速度进行运输操作。

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  • 来源
    《Environmental Science & Technology》 |2018年第14期|7849-7858|共10页
  • 作者

    Cohen Meirav; Weisbrod Noam;

  • 作者单位

    Ben Gurion Univ Negev, Blaustein Inst Desert Res, Zuckerberg Inst Water Res, Sde Boker Campus, IL-84990 Sede Boqer, Israel;

    Ben Gurion Univ Negev, Blaustein Inst Desert Res, Zuckerberg Inst Water Res, Sde Boker Campus, IL-84990 Sede Boqer, Israel;

  • 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
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