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Adsorption -desorption and co-migration of vanadium colloidal kaolinite

机译:吸附 - 钒胶高岭土的吸附和共迁移

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Vanadium (V) pollution in soil has been widely noted, while knowledge about the effect of soil colloid on migration of V is scarce. Batch adsorption-desorption and transportation of the colloid-adsorbed V in columns packed with quartz sand under various environment conditions were carried out to explore the retention and transportation of V by colloidal kaolinite. Batch adsorption-desorption studies show that the adsorption of V by the colloidal kaolinite was mainly specific adsorption and redox played a limited role in the adsorption process. The maximum adsorption capacity of the colloidal kaolinite was 712.4 mg g~(-1), and about 5.9-8.7% of the adsorbed V could be desorbed. Both the adsorption-desorption and migration of V with colloidal kaolinite were highly ambient condition dependent. The column studies show that V was highly mobile in the saturated porous media. An easier transfer of V with an increase in pH, IS, and velocity of flow was noted. However, the increase of IS lead to the blockage of the colloidal kaolinite transportation. The recovery rate of the colloidal kaolinite at pH 7 and 9 was 2.0 and 2.1 times that at pH 5, respectively. The migration of colloidal-adsorbed V in sand column preceded that of V ion, but more colloidal-bound V than V ion remained in the column. Lack of consideration of the combination and co-transportation of V and colloidal kaolinite will lead to an overestimation of the risk of V to deeper soil profiles and groundwater.
机译:土壤中的钒(v)污染已被广泛注意到,虽然关于土壤胶体对迁移迁移的影响是稀缺的。在各种环境条件下填充用石英沙子柱的粒子吸附 - 解吸和运输胶体吸附 - 解吸和运输,以探讨胶体高岭石对V的保留和运输。批量吸附 - 解吸研究表明,胶体高岭石的吸附主要是特异性吸附和氧化还原在吸附过程中发挥了有限的作用。胶体高岭石的最大吸附容量为712.4mg g〜(-1),可解吸约5.9-8.7%的吸附v。 v的吸附解吸和迁移与胶体高岭石具有高度的环境条件依赖性。柱研究表明,V在饱和多孔介质中高度移动。 v的更容易转移V的增加,是流量的增加和流速。然而,增加导致胶体高岭石运输的堵塞。 pH7和9处的胶体高岭石的回收率分别为pH5的2.0%和2.1倍。胶体吸附的V在砂塔中的迁移在v离子的情况下,但在柱中保持更多的胶体结合V离子。缺乏对V和胶体高岭石的组合和共同运输的考虑将导致高估V对更深的土壤剖面和地下水的风险。

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