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Bench-scale investigation of permanganate natural oxidant demand kinetics

机译:高锰酸盐天然氧化剂需求动力学的基准规模研究

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A vital design parameter for any in situ chemical oxidation system using permanganate (MnO4-) is the natural oxidant demand (NOD), a concept that represents the consumption of MnO4- by the naturally present reduced species in the aquifer solids. The data suggest that the NOD of the aquifer material from Canadian Forces Base Borden used in our study is controlled by a fast or instantaneous reaction captured by the column experiments, and a slower reaction as demonstrated by both column and batch test data. These two reaction rates may be the result of the reaction of MnO4- with at least two different reduced species exhibiting widely different rates of permanganate consumption (fast rate > 7 g of MnO4- as KMnO4/kg/day and slow rate of similar to 0,005 g/kg/day), or a physically/chemically rate-limited single species. The slow NOD reaction prevented fulfillment of the ultimate NOD during the days- to months-long batch experiments and allowed significant early MnO4- breakthrough (> 98%) during transport in the column experiments. A large fraction of the organic carbon resisted oxidation over the 21-week duration of the batch experiments. This result demonstrates that NOD estimated from total organic carbon measurements can significantly overpredict the NOD value required in the design of an in situ chemical oxidation application.
机译:任何使用高锰酸盐(MnO4-)的原位化学氧化系统的重要设计参数是天然氧化剂需求量(NOD),该概念代表含水层固体中天然存在的还原物种对MnO4-的消耗。数据表明,在我们的研究中,使用的加拿大部队基地博登公司的含水层材料的NOD受色谱柱实验捕获的快速或瞬时反应控制,而色谱柱和批处理数据均表明反应较慢。这两个反应速率可能是MnO4-与至少两种不同的还原物种发生反应的结果,这些物种显示出高锰酸盐消耗速率大不相同(快速率> 7 g MnO4-的KMnO4 / kg /天,慢速率接近0.005)克/千克/天),或物理/化学速率受限的单个物种。缓慢的NOD反应在数天至数月的分批实验中阻止了最终NOD的实现,并在柱实验中的运输过程中允许了MnO4-的早期显着突破(> 98%)。在分批实验的21周内,大部分有机碳都抗氧化。该结果表明,根据总有机碳测量值估算出的NOD会大大高估原位化学氧化应用设计所需的NOD值。

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