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Enhanced stability of hydrogen peroxide in the presence of subsurface solids

机译:在存在地下固体的情况下提高了过氧化氢的稳定性

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The stabilization of hydrogen peroxide was investigated as a basis for enhancing its downgradient transport and contact with contaminants during catalyzed H_2O_2 propagations (CHP) in situ chemical oxidation (ISCO). Stabilization of hydrogen peroxide was investigated in slurries containing four characterized subsurface solids using phytate, citrate, and malonate as stabilizing agents after screening ten potential stabilizers. The extent of hydrogen peroxide stabilization and the most effective stabilizer were solid-specific; however, phytate was usually the most effective stabilizer, increasing the hydrogen peroxide half-life to as much as 50 times. The degree of stabilization was nearly as effective at 10 mM concentrations as at 250 mM or 1 M concentrations. The effect of stabilization on relative rates of hydroxyl radical activity varied between the subsurface solids, but citrate and malonate generally had a greater positive effect than phytate. The effect of phytate, citrate, and malonate on the relative rates of superoxide generation was minimal to somewhat negative, depending on the solid. The results of this research demonstrate that the stabilizers phytate, citrate, and malonate can significantly increase the half-life of hydrogen peroxide in the presence of subsurface solids during CHP reactions while maintaining a significant portion of the reactive oxygen species activity. Use of these stabilizers in the field will likely improve the delivery of hydrogen peroxide and downgradient treatment during CHP ISCO.
机译:研究了过氧化氢的稳定性,以此作为在催化H_2O_2扩散(CHP)原位化学氧化(ISCO)期间增强其降级迁移和与污染物接触的基础。在筛选出十种潜在的稳定剂后,使用肌醇六磷酸,柠檬酸和丙二酸作为稳定剂,在包含四种特征性地下固体的浆料中研究了过氧化氢的稳定性。过氧化氢的稳定程度和最有效的稳定剂是固体特异性的。然而,肌醇六磷酸通常是最有效的稳定剂,可将过氧化氢的半衰期延长至50倍。 10 mM浓度下的稳定度几乎与250 mM或1 M浓度下的稳定度一样。稳定性对羟基自由基活性相对速率的影响在地下固体之间变化,但是柠檬酸和丙二酸通常比植酸具有更大的积极作用。肌醇六磷酸,柠檬酸和丙二酸酯对超氧化物生成相对速率的影响极小,甚至略有负面,具体取决于固体。这项研究的结果表明,在CHP反应过程中,存在亚表层固体的情况下,稳定剂肌醇六磷酸,柠檬酸和丙二酸酯可以显着提高过氧化氢的半衰期,同时保持相当一部分活性氧的活性。在现场使用这些稳定剂可能会改善CHP ISCO期间的过氧化氢输送和降级处理。

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