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Characteristics of Aggregate Size Distribution of Nanoscale Zero-Valent Iron in Aqueous Suspensions and Its Effect on Transport Process in Porous Media

机译:纳米尺度零价铁含水悬浮液综合尺寸分布的特征及其对多孔介质运输过程的影响

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摘要

Bare nanoscale zero-valent iron (NZVI) particles in aqueous suspensions aggregate into micron to submicron sizes. The transport process of enlarged aggregates or multi-sized aggregates is different from that of nanoparticles. In this work, we performed aggregate size distribution analysis of NZVI suspension using a laser grain size analyzer and conducted a series of continuous injection column experiments with different injected NZVI concentrations. The results show that aggregates in NZVI suspensions range from submicron to submillimeter size and are mainly distributed around 5–9 μm and 50–100 μm. Quantitative calculation of iron transport and retention showed that the retained iron linearly correlates with injected concentration. The cross-section images revealed that clogging weakened from inlet to outlet. Furthermore, larger aggregates (>40 μm) appeared more often in the rising-declining stages of breakthrough curves, whereas small aggregates (<30 μm) dominated the steady stage. Indeed, relatively preferential flow facilitated the transport and discharge of both large and small iron aggregates. Straining of glass beads especially for the large iron aggregates resulted in a decline in breakthrough. Moreover, the blocking of attached and plugged iron prevented later retention of iron, resulting in a certain concentration of iron in the effluents. Our study provides greater insight into the transport of NZVI.
机译:裸纳米级零价铁(NZVI)含水悬浮液中的颗粒聚集成微米至亚微米尺寸。扩大的聚集体或多尺寸聚集体的运输过程与纳米颗粒的运输过程不同。在这项工作中,我们使用激光晶粒尺寸分析仪对NZVI悬浮液进行了总体大小分布分析,并通过不同的注射NZVI浓度进行了一系列连续注射柱实验。结果表明,NZVI悬浮液中的聚集在亚微米到亚颌下尺寸范围内,主要分布在5-9μm和50-100μm。铁运输和保留的定量计算表明,保留的铁与注入浓度线性相关。横截面图像显示堵塞从入口削弱到出口。此外,较大的聚集体(>40μm)更常见于突破曲线的上升阶段,而小聚集体(<30μm)主导稳定阶段。实际上,相对优先的流动促进了大型和小铁聚集体的运输和排放。特别是对于大型铁聚集体的玻璃珠子的紧张导致突破下降。而且,封闭的连接和堵塞的铁防止了熨烫的滞留,从而导致流出物中的一定浓度的铁。我们的研究提供了对NZVI运输的更大洞察力。

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