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Consideration of grain packing in granular iron treatability studies

机译:粒状铁可处理性研究中考虑颗粒填充

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摘要

Commercial granular iron (GI) is light steel that is used in Permeable Reactive Barriers (PRBs). Investigations into the reactivity of GI have focused on its chemical nature and relatively little direct work has been done to account for the effects of grain shape and packing. Both of these factors are expected to influence available grain surface area, which is known to correlate to reactivity. Commercial granular iron grains are platy and therefore pack in preferential orientations that could affect solution access to the surface. Three packing variations were investigated using Connelly Iron and trichloroethylene (TCE). Experimental kinetic data showed reaction rates 2-4 times higher when grains were packed with long axes preferentially parallel to flow (VP) compared to packings with long axes preferentially perpendicular to flow (HP) or randomly arranged (RP). The variations were found to be explainable by variations in reactive sorption capacities, i.e., sorption to sites where chemical transformations took place. The possibility that the different reactive sorption capacities were related to physical pore-scale differences was assessed by conducting an image analysis of the pore structure of sectioned columns. The analyses suggested that pore-scale factors - in particular the grain surface availability, reflected in the sorption capacity terms of the kinetic model used - could only account for a fraction of the observed reactivity differences between packing types. It is concluded that packing does affect observable reaction rates but that micro-scale features on the grain surfaces, rather than the pore scale characteristics, account for most of the apparent reactivity differences. This result suggests that treatability tests should consider the packing of columns carefully if they are to mimic field performance of PRBs to the greatest extent possible.
机译:商业粒状铁(GI)是用于渗透性反应性障碍(PRB)的轻钢。对地理标志物反应性的研究集中在其化学性质上,很少有直接的工作来解释颗粒形状和堆积的影响。预计这两个因素都会影响可用的谷物表面积,已知该表面积与反应性相关。市售的粒状铁颗粒呈板状,因此沿优先方向堆积,可能会影响溶液进入表面的通道。使用康奈利铁和三氯乙烯(TCE)研究了三种包装变化。实验动力学数据显示,与长轴优先垂直于流动(HP)或无规排列(RP)的填料相比,长轴优先平行于流动(VP)的谷物填充的反应速率高2-4倍。发现这种变化可以通过反应性吸附能力的变化,即对发生化学转化的位点的吸附来解释。通过对截面柱的孔结构进行图像分析,评估了不同的反应吸附能力与物理孔尺度差异相关的可能性。分析表明,孔隙尺度因素,特别是晶粒表面的有效性,反映在所用动力学模型的吸附能力方面,仅占所观察到的填料类型之间反应性差异的一小部分。可以得出结论,堆积确实会影响可观察到的反应速率,但是晶粒表面的微观特征而不是孔隙尺度特征是造成大多数表观反应性差异的原因。该结果表明,可处理性测试如果要最大程度地模拟PRB的现场性能,则应仔细考虑色谱柱的填充。

著录项

  • 来源
    《Journal of Contaminant Hydrology》 |2014年第8期|230-239|共10页
  • 作者

    R. Firdous; J.F. Devlin;

  • 作者单位

    Department of Geology, Lindley Hall, University of Kansas, 1475 Jayhawk Blvd., Lawrence, KS 66045, United States;

    Department of Geology, Lindley Hall, University of Kansas, 1475 Jayhawk Blvd., Lawrence, KS 66045, United States;

  • 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

    Permeable Reactive Barriers; Granular iron; Trichloroethylene; Packing; Reaction rate;

    机译:渗透性反应屏障粒状铁;三氯乙烯;填料;反应速度;
  • 入库时间 2022-08-17 13:40:00

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