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Coupled effects of high pH and chemical heterogeneity on colloid retention and release in saturated porous media

机译:高pH和化学异质性对饱和多孔介质胶体保留和释放的耦合效应

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The transport of colloid in saturated porous media is of great significance for the assessment of environmental risk and bioremediation. However, coupled effects of high pH and chemical heterogeneity on colloid retention and release in saturated porous media remain unclear. We studied colloid transports in acid treated/untreated glass beads under various high pH values and ionic strength (IS) conditions to elucidate the effect of high pH and chemical heterogeneity. Chemical impurities promote the colloid to attach to the primary minimum. Increasing environmental pH of solutions would weaken the colloidal retention capacity. Once pH increases to 11, almost no colloid retention occurs no matter chemical impurities exist or not. Adsorbed colloids in the primary minimum can be detached at high pH environments (from 10 to 12). Despite the final similar environmental pH (from 10 to 12), different amounts of colloids are reserved at the ends of the attaching processes and eluting processes. Effects of chemical impurities on colloid retention are negligible when pH = 10 or higher. At the same time, colloid release in high pH solution is also related to disabled chemical impurities. Although previous studies show no obvious rule about colloid release with changing pH (from 6.8-10), our results demonstrate significant coupled effects of high pH and chemical heterogeneity on colloid retention and release in saturated porous media. We also found that straining might be underestimated. Our results improve the understanding about the role of pH in colloid transport processes.
机译:饱和多孔介质中胶体的运输对于评估环境风险和生物修复具有重要意义。然而,高pH和化学异质性对饱和多孔介质中的胶体保持和释放的耦合效应仍不清楚。我们在各种高pH值下研究了酸处理/未处理的玻璃珠粒中的胶体传输,并离子强度(是)条件以阐明高pH和化学异质性的影响。化学杂质促进胶体连接到主要最小值。增加溶液的环境pH会削弱胶体保留能力。一旦pH增加到11,就不会发生几乎没有胶体保留。主要最小胶体可以在高pH环境(10至12)下脱离。尽管最终类似的环境pH(从10至12),但在附着工艺的末端保留不同量的胶体并洗脱过程。当pH = 10或更高时,化学杂质对胶体保留的影响可忽略不计。同时,高pH溶液中的胶体释放也与残疾化学杂质有关。尽管以前的研究表明,随着pH(从6.8-10)的胶体释放没有明显的规则,但我们的结果表明了高pH和化学异质性对饱和多孔介质中的胶体保留和释放的显着耦合效应。我们还发现紧张可能低估。我们的结果改善了对pH在胶体运输过程中的作用的理解。

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