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Do Goethite Surfaces Really Control the Transport and Retention of Multi-Walled Carbon Nanotubes in Chemically Heterogeneous Porous Media?

机译:针铁矿表面真的能控制多壁碳纳米管在化学异质多孔介质中的迁移和保留吗?

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摘要

Transport and retention behavior of multi-walled carbon nanotubes (MWCNTs) was studied in mixtures of negatively charged quartz sand (QS) and positively charged goethite-coated sand (GQS) to assess the role of chemical heterogeneity. The linear equilibrium sorption model provided a good description of batch results, and the distribution coefficients (KD) drastically increased with the GQS fraction that was electrostatically favorable for retention. Similarly, retention of MWCNTs increased with the GQS fraction in packed column experiments. However, calculated values of KD on GQS were around 2 orders of magnitude smaller in batch than packed column experiments due to differences in lever arms associated with hydrodynamic and adhesive torques at microscopic roughness locations. Furthermore, the fraction of the sand surface area that was favorable for retention (Sf) was much smaller than the GQS fraction because nanoscale roughness produced shallow interactions that were susceptible to removal. These observations indicate that only a minor fraction of the GQS was favorable for MWCNT retention. These same observations held for several different sand sizes. Column breakthrough curves were always well described using an advective-dispersive transport model that included retention and blocking. However, depth-dependent retention also needed to be included to accurately describe the retention profile when the GQS fraction was small. Results from this research indicate that roughness primarily controlled the retention of MWCNTs, although goethite surfaces played an important secondary role.
机译:研究了多壁碳纳米管(MWCNT)在带负电的石英砂(QS)和带正电的针铁矿涂层的砂(GQS)的混合物中的迁移和保留行为,以评估化学异质性的作用。线性平衡吸附模型很好地描述了批处理结果,并且分布系数(KD)随GQS分数的增加而大大增加,而GQS分数在静电上有利于保留。同样,在填充柱实验中,MWCNT的保留量随GQS分数的增加而增加。但是,由于与微观粗糙度位置的流体动力和胶粘扭矩有关的杠杆臂差异,GQS上的KD的计算值与填充柱实验相比,分批计算的KD值小约2个数量级。此外,有利于保留的砂表面积分数(Sf)比GQS分数小得多,因为纳米级粗糙度会产生易于去除的浅层相互作用。这些观察结果表明,只有少量的GQS有利于MWCNT的保留。这些相同的观察结果适用于几种不同的沙子尺寸。使用包括保留和阻塞在内的对流-分散传输模型始终可以很好地描述色谱柱的穿透曲线。但是,当GQS比例较小时,还需要包括深度相关的保留,以准确描述保留曲线。这项研究的结果表明,尽管针铁矿表面起着重要的次要作用,但粗糙度主要控制着MWCNT的保留。

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