Department of Civil and Environmental Engineering, The Hong Kong University of Science and Technology, Hong Kong, China.
J Contam Hydrol. 2011 Jul 1;125(1-4):39-46. doi: 10.1016/j.jconhyd.2011.04.005. Epub 2011 May 1.
Column experiments were conducted for examining the effectiveness of the cationic hydrogel on Cr(VI) removal from groundwater and soil. For in-situ groundwater remediation, the effects of background anions, humic acid (HA) and pH were studied. Cr(VI) has a higher preference for being adsorbed onto the cationic hydrogel than sulphate, bicarbonate ions and HA. However, the adsorbed HA reduced the Cr(VI) removal capacity of the cationic hydrogel, especially after regeneration of the adsorbents, probably due to the blockage of adsorption sites. The Cr(VI) removal was slightly influenced by the groundwater pH that could be attributed to Cr(VI) speciation. The 6-cycle regeneration and reusability study shows that the effectiveness of the cationic hydrogel remained almost unchanged. On average, 93% of the adsorbed Cr(VI) was recovered in each cycle and concentrated Cr(VI) solution was obtained after regeneration. For in-situ soil remediation, the flushing water pH had an insignificant effect on the release of Cr(VI) from the soils. Multiple-pulse flushing increased the removal of Cr(VI) from the soils. In contrast, more flushing water and longer operation may be required to achieve the same removal level by continuous flushing.
进行柱实验以研究阳离子水凝胶对地下水和土壤中 Cr(VI) 的去除效果。对于原位地下水修复,研究了背景阴离子、腐殖酸 (HA) 和 pH 的影响。Cr(VI) 比硫酸盐、碳酸氢根离子和 HA 更倾向于被阳离子水凝胶吸附。然而,吸附的 HA 降低了阳离子水凝胶对 Cr(VI)的去除能力,尤其是在吸附剂再生后,这可能是由于吸附位点被堵塞。地下水 pH 对 Cr(VI)的去除影响较小,这可能归因于 Cr(VI)的形态。6 个循环的再生和可重复使用性研究表明,阳离子水凝胶的有效性几乎没有变化。平均而言,每个循环可回收 93%的吸附 Cr(VI),再生后可获得浓缩的 Cr(VI)溶液。对于原位土壤修复,冲洗水 pH 对土壤中 Cr(VI)的释放没有显著影响。多脉冲冲洗增加了土壤中 Cr(VI)的去除。相比之下,通过连续冲洗达到相同的去除水平可能需要更多的冲洗水和更长的运行时间。