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A five-year performance review of field-scale, slow-release permanganate candles with recommendations for second-generation improvements

机译:对现场规模,缓释高锰酸盐蜡烛进行为期五年的性能评估,并提出第二代改进建议

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摘要

In 2009, we identified a TCE plume at an abandoned landfill that was located in a low permeable siltyclay aquifer. To treat the TCE, we manufactured slow-release potassium permanganate cylinders (oxidant candles) that had diameters of either 5.1 or 7.6 cm and were 91.4 cm long. In 2010, we compared two methods of candle installation by inserting equal masses of the oxidant candles (7.6-cm vs 5.1-cm dia). The 5.1-cm dia candles were inserted with direct-push rods while the 7.6-cm candles were housed in screens and lowered into 10 permanent wells. Since installation, the 7.6-cm oxidant candles have been refurbished approximately once per year by gently scraping off surface oxides. In 2012, we reported initial results; in this paper, we provide a 5-yr performance review since installation. Temporal sampling shows oxidant candles placed in wells have steadily reduced migrating TCE concentrations. Moreover, these candles still maintain an inner core of oxidant that has yet to contribute to the dissolution front and should provide several more years of service. Oxidant candles inserted by direct-push have stopped reducing TCE concentrations because a MnO2 scale developed on the outside of the candles. To counteract oxide scaling, we fabricated a second generation of oxidant candles that contain sodium hexametaphosphate. Laboratory experiments (batch and flow-through) show that these second-generation permanganate candles have better release characteristics and are less prone to oxide scaling. This improvement should reduce the need to perform maintenance on candles placed in wells and provide greater longevity for candles inserted by direct-push.Includes supplementary materials.
机译:2009年,我们在低渗透性粉质粘土含水层中的一个废弃垃圾填埋场中发现了TCE烟羽。为了处理TCE,我们制造了直径为5.1或7.6厘米,长91.4厘米的缓释高锰酸钾圆柱体(氧化剂蜡烛)。在2010年,我们通过插入相等质量的氧化剂蜡烛(直径7.6厘米对5.1厘米)比较了两种蜡烛安装方法。直径为5.1厘米的蜡烛用直推杆插入,而直径为7.6厘米的蜡烛则装在筛网中,并放到10个永久孔中。自安装以来,通过轻轻刮除表面氧化物,每年约翻新一次7.6厘米的氧化剂蜡烛。在2012年,我们报告了初步结果;在本文中,自安装以来,我们提供了5年的性能评估。时间采样显示,放置在孔中的氧化剂蜡烛稳定地降低了迁移中三氯乙烯的浓度。而且,这些蜡烛仍保持氧化剂的内芯,该内芯尚未对溶解前沿作出贡献,并应提供数年的使用寿命。通过直接推入插入的氧化剂蜡烛已停止降低TCE浓度,因为在蜡烛外部会产生MnO2垢。为了抵消氧化物的结垢,我们制造了第二代含六偏磷酸钠的氧化剂蜡烛。实验室实验(分批和流通)表明,这些第二代高锰酸盐蜡烛具有更好的释放特性,并且不易产生氧化皮。这种改进应减少对放置在井中的蜡烛进行维护的需要,并为直接推入的蜡烛提供更长的使用寿命(包括补充材料)。

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