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Transport and Retention of High Concentrated Nano-Fe/Cu Particles Through Highly Flow-Rated Packed Sand Column

机译:高浓度纳米Fe / Cu颗粒通过高流量填充填料砂柱的传输和保留

摘要

The design of an efficient field-scale remediation based on the use of nanoscale zero valent iron (NZVI) requires an accurate assessment of the mobility of such particles in saturated porous media, both during injection in the subsurface (short-term mobility) and later (long-term mobility). In this study, the mobility of highly concentrated dispersions of bimetallic Fe/Cu nanoparticles (d50= 70±5 nm) in sand-packed columns (0.5 m length and 0.025 m inner diameter) was studied. In particular, the influence of flow rate (V = 5×10-4, 1×10-3, 2×10-3 m/s) and injected particle concentrations (2, 5, 8, 12 g/l) was addressed. Breakthrough curves and water pressure drop along the column, averaged effective porosity and final distribution of retained particles along the column were measured. Experimental results evidenced a good mobility of the Fe/Cu particles, with significant breakthrough in all explored experimental conditions of flow rate and C0, without requiring the addition of any stabilizing agent. Clogging phenomenon of the column and also the pore pressure variation during injection period are strongly affected by injected concentration. Clogging due to deposition of particles following a ripening dynamics was observed in particular for C0= 8 and 12 g/l. The experimental data were 23 modeled using the E-MNM1D software. The study has implications for field injection of bimetallic nanoparticles, suggesting that particular care is to be devoted when selecting injection concentration, to avoid porous medium clogging and control the radius of influence
机译:基于使用纳米级零价铁(NZVI)的有效现场规模修复的设计,需要在地下注入期间(短期迁移)以及后续阶段,准确评估此类颗粒在饱和多孔介质中的迁移率(长期流动性)。在这项研究中,研究了高浓度双金属Fe / Cu纳米颗粒(d50 = 70±5 nm)在砂填充柱(长度为0.5 m,内径为0.025 m)中的迁移率。特别是解决了流速(V = 5×10-4、1×10-3、2×10-3 m / s)和注入的颗粒浓度(2、5、8、12 g / l)的影响。测量了沿色谱柱的穿透曲线和水压降,平均有效孔隙率以及沿色谱柱保留的颗粒的最终分布。实验结果表明,Fe / Cu颗粒具有良好的迁移率,在所有探索的流速和CO的实验条件下均取得了重大突破,而无需添加任何稳定剂。注入浓度会严重影响色谱柱的堵塞现象以及注入期间的孔隙压力变化。特别是对于CO = 8和12 g / l,观察到了由于成熟动力学导致的由于颗粒沉积引起的堵塞。实验数据使用E-MNM1D软件建模23。该研究对双金属纳米粒子的现场注入具有重要意义,表明在选择注入浓度时应特别注意,以避免多孔介质堵塞并控制影响半径

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