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首页> 外文期刊>Journal of soil & sediments >Effect of humic acid on the sedimentation and transport of nanoparticles silica in water-saturated porous media
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Effect of humic acid on the sedimentation and transport of nanoparticles silica in water-saturated porous media

机译:腐殖酸对水饱和多孔介质中纳米颗粒二氧化硅沉积和迁移的影响

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Purpose Nano silicon particles (nSiO(2)) is one of the most widely used industrial engineered nanomaterials (ENMs). The extensive applications of nSiO(2) may pose potential risks to aquatic ecosystems and human health. Humic acid (HA) is a major component of soil and water that exists widely in the natural environment and adsorbs to the surface of nanoparticles, which affects the fate and transport of ENMs in soil. Therefore, it triggers the necessity to study the chemical reaction of HA controlling the sedimentation and transport of nSiO(2). Materials and methods The sedimentation kinetics and transport breakthrough curves of nSiO(2) with/without HA in water-saturated porous media were studied in two electrolyte (NaCl and CaCl2) solutions. The likely mechanisms were explored with both multiple technologies and numerical modeling including TEM-EDX, particle size distribution, zeta potentials, and the two-site kinetic attachment model (TSKAM). Results and discussion Our experimental results showed that the existence of HA generally increased the suspensivity and the transportability of nSiO(2) in NaCl and CaCl2 solutions in packed sand columns at acidic pH. This result was attributed to the HA adsorption leading to the more negatively charged surface and the smaller size of nSiO(2) aggregates. However, the formation of coordination complexes associated with larger cluster among nSiO(2) between HA and Ca2+ contributed to the increased sedimentation of nSiO(2) at alkaline pH. Subsequently, the presence of HA inhibited the transport of nSiO(2) in CaCl2 solution at pH 9.0. Comparably, in NaCl at pH 9.0, HA showed the negligible effect on the nSiO(2) deposition in sand. Both the attachment and detachment parameters, which were obtained from fitting the breakthrough curves of ENMs using the TSKAM, could be used to well describe the transport behavior of nSiO(2) with HA under various conditions. In particular, the irreversible attachment parameters at site 2 on sand were positively related to the retention of nSiO(2) with HA. Conclusions The fate and transport of nSiO(2) can be distinctly affected by HA depending on the ion composition, ion strength, and pH in soil. This study will provide insights for assessing the mobility of nSiO(2) with HA in subsurface soil and aquatic environments.
机译:目的纳米硅颗粒(nSiO(2))是使用最广泛的工业工程纳米材料(ENMs)之一。 nSiO(2)的广泛应用可能对水生生态系统和人类健康构成潜在风险。腐殖酸(HA)是土壤和水的主要成分,广泛存在于自然环境中并吸附到纳米颗粒的表面,这会影响ENM在土壤中的命运和运输。因此,它引发了研究HA控制nSiO(2)沉积和传输的化学反应的必要性。材料和方法在两种电解质(NaCl和CaCl2)溶液中研究了有/无HA在含水饱和多孔介质中的nSiO(2)的沉积动力学和传输穿透曲线。通过多种技术和数值模型探索了可能的机理,包括TEM-EDX,粒度分布,ζ电位和两点动力学吸附模型(TSKAM)。结果与讨论我们的实验结果表明,在酸性pH值下,填充沙柱中的NaCl和CaCl2溶液中,HA的存在通常会提高nSiO(2)的悬浮性和迁移性。此结果归因于HA吸附导致带更多负电荷的表面和较小的nSiO(2)聚集体尺寸。但是,与HA和Ca2 +之间的nSiO(2)之间的较大簇相关的配位配合物的形成有助于在碱性pH值下nSiO(2)的沉积增加。随后,HA的存在抑制了pH 9.0的CaCl2溶液中nSiO(2)的传输。相比之下,在pH值为9.0的NaCl中,HA对沙子中nSiO(2)沉积的影响可忽略不计。通过使用TSKAM拟合ENM的穿透曲线获得的附着和分离参数,都可以用来很好地描述nSiO(2)与HA在各种条件下的传输行为。特别是,在站点2上的不可逆附着参数在沙上与nSiO(2)与HA的保留呈正相关。结论HA可以显着影响nSiO(2)的命运和迁移,具体取决于土壤中的离子组成,离子强度和pH值。这项研究将提供洞察力,以评估nSiO(2)与HA在地下土壤和水生环境中的迁移率。

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