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用于改善多孔介质中铁颗粒输送的瓜尔胶溶液(第2部分):径向几何形状中的铁传输测试与建模

Guar gum solutions for improved delivery of iron particles in porous media (part 2): iron transport tests and modeling in radial geometry.

作者信息

Tosco Tiziana, Gastone Francesca, Sethi Rajandrea

机构信息

DIATI - Dipartimento di Ingegneria dell'Ambiente, del Territorio e delle Infrastrutture - Politecnico di Torino, C.so Duca degli Abruzzi 24, 10129 Torino, Italy.

DIATI - Dipartimento di Ingegneria dell'Ambiente, del Territorio e delle Infrastrutture - Politecnico di Torino, C.so Duca degli Abruzzi 24, 10129 Torino, Italy.

出版信息

J Contam Hydrol. 2014 Oct;166:34-51. doi: 10.1016/j.jconhyd.2014.06.014. Epub 2014 Jul 6.

Abstract

In the present work column transport tests were performed in order to study the mobility of guar-gum suspensions of microscale zero-valent iron particles (MZVI) in porous media. The results were analyzed with the purpose of implementing a radial model for the design of full scale interventions. The transport tests were performed using several concentrations of shear thinning guar gum solutions as stabilizer (1.5, 3 and 4g/l) and applying different flow rates (Darcy velocity in the range 1·10(-4) to 2·10(-3)m/s), representative of different distances from the injection point in the radial domain. Empirical relationships, expressing the dependence of the deposition and release parameters on the flow velocity, were derived by inverse fitting of the column transport tests using a modified version of E-MNM1D (Tosco and Sethi, 2010) and the user interface MNMs (www.polito.it/groundwater/software). They were used to develop a comprehensive transport model of MZVI suspensions in radial coordinates, called E-MNM1R, which takes into account the non Newtonian (shear thinning) rheological properties of the dispersant fluid and the porous medium clogging associated with filtration and sedimentation in the porous medium of both MZVI and guar gum residual undissolved particles. The radial model was run in forward mode to simulate the injection of MZVI dispersed in guar gum in conditions similar to those applied in the column transport tests. In a second stage, we demonstrated how the model can be used as a valid tool for the design and the optimization of a full scale intervention. The simulation results indicated that several concurrent aspects are to be taken into account for the design of a successful delivery of MZVI/guar gum slurries via permeation injection, and a compromise is necessary between maximizing the radius of influence of the injection and minimizing the injection pressure, to guarantee a sufficiently homogeneous distribution of the particles around the injection point and to prevent preferential flow paths.

摘要

在本研究中,进行了柱体传输试验,以研究微米级零价铁颗粒(MZVI)的瓜尔胶悬浮液在多孔介质中的迁移性。分析这些结果的目的是为全尺寸干预设计实施一个径向模型。传输试验使用了几种不同浓度的作为稳定剂的剪切变稀瓜尔胶水溶液(1.5、3和4g/l),并应用了不同的流速(达西流速范围为1·10(-4)至2·10(-3)m/s),这些流速代表了径向区域中距注入点的不同距离。通过使用E-MNM1D的修改版本(Tosco和Sethi,2010)以及用户界面MNMs(www.polito.it/groundwater/software)对柱体传输试验进行反演拟合,得出了表示沉积和释放参数对流速依赖性的经验关系。这些关系被用于开发一个在径向坐标下的MZVI悬浮液综合传输模型,称为E-MNM1R,该模型考虑了分散流体的非牛顿(剪切变稀)流变特性以及与MZVI和瓜尔胶残留未溶解颗粒在多孔介质中的过滤和沉降相关的多孔介质堵塞。径向模型以前向模式运行,以模拟在与柱体传输试验中应用的条件相似的情况下注入分散在瓜尔胶中的MZVI。在第二阶段,我们展示了该模型如何能够用作全尺寸干预设计和优化的有效工具。模拟结果表明,对于通过渗透注入成功输送MZVI/瓜尔胶浆液的设计,需要考虑几个同时存在的方面,并且在最大化注入影响半径和最小化注入压力之间进行折衷是必要的,以确保颗粒在注入点周围充分均匀分布并防止优先流路。

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