Li Zhaohui, Kirk Jones H, Zhang Pengfei, Bowman Robert S
Department of Geosciences, University of Wisconsin - Parkside, Kenosha, WI 53141, USA.
Chemosphere. 2007 Aug;68(10):1861-6. doi: 10.1016/j.chemosphere.2007.03.011. Epub 2007 Apr 19.
Chromate transport through columns packed with zeolite/zero valent iron (Z/ZVI) pellets, either untreated or treated with the cationic surfactant hexadecyltrimethylammonium (HDTMA), was studied at different flow rates. In the presence of sorbed HDTMA, the chromate retardation factor increased by a factor of five and the pseudo first-order rate constant for chromate reduction increased by 1.5-5 times. The increase in rate constant from the column studies was comparable to a six-fold increase in the rate constant determined in a batch study. At a fast flow rate, the apparent delay in chromate breakthrough from the HDTMA modified Z/ZVI columns was primarily caused by the increase in chromate reduction rate constant. In contrast, at a slower flow rate, the retardation in chromate transport from the HDTMA modified Z/ZVI columns mainly originated from chromate sorption onto the HDTMA modified Z/ZVI pellets. Due to dual porosity, the presence of immobile water was responsible for the earlier breakthrough of chromate in columns packed with zeolite and Z/ZVI pellets. The results from this study further confirm the role of HDTMA in enhancing sorption and reduction efficiency of contaminants in groundwater remediation.
研究了铬酸盐在填充有未处理或经阳离子表面活性剂十六烷基三甲基铵(HDTMA)处理的沸石/零价铁(Z/ZVI)颗粒的柱中的传输情况,实验采用了不同的流速。在存在吸附的HDTMA的情况下,铬酸盐阻滞因子增加了五倍,铬酸盐还原的准一级速率常数增加了1.5至5倍。柱实验中速率常数的增加与批量实验中确定的速率常数增加六倍相当。在快速流速下,HDTMA改性的Z/ZVI柱中铬酸盐突破的明显延迟主要是由铬酸盐还原速率常数的增加引起的。相比之下,在较慢流速下,HDTMA改性的Z/ZVI柱中铬酸盐传输的阻滞主要源于铬酸盐在HDTMA改性的Z/ZVI颗粒上的吸附。由于双重孔隙率,滞流水的存在导致铬酸盐在填充有沸石和Z/ZVI颗粒的柱中更早突破。本研究结果进一步证实了HDTMA在提高地下水修复中污染物吸附和还原效率方面的作用。