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首页> 外文期刊>Journal of Contaminant Hydrology >Hydrogen peroxide stabilization in one-dimensional flow columns
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Hydrogen peroxide stabilization in one-dimensional flow columns

机译:一维流柱中的过氧化氢稳定化

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摘要

Rapid hydrogen peroxide decomposition is the primary limitation of catalyzed H_2O_2 propagations in situ chemical oxidation (CHP 1SCO) remediation of the subsurface. Two stabilizers of hydrogen peroxide, citrate and phytate, were investigated for their effectiveness in one-dimensional columns of iron oxide-coated and manganese oxide-coated sand. Hydrogen peroxide (5%) with and without 25 mM citrate or phytate was applied to the columns and samples were collected at 8 ports spaced 13 cm apart. Citrate was not an effective stabilizer for hydrogen peroxide in iron-coated sand; however, phytate was highly effective, increasing hydrogen peroxide residuals two orders of magnitude over unstabilized hydrogen peroxide. Both citrate and phytate were effective stabilizers for manganese-coated sand, increasing hydrogen peroxide residuals by four-fold over unstabilized hydrogen peroxide. Phytate and citrate did not degrade and were not retarded in the sand columns; furthermore, the addition of the stabilizers increased column flow rates relative to unstabilized columns. These results demonstrate that citrate and phytate are effective stabilizers of hydrogen peroxide under the dynamic conditions of one-dimensional columns, and suggest that citrate and phytate can be added to hydrogen peroxide before injection to the subsurface as an effective means for increasing the radius of influence of CHP ISCO.
机译:过氧化氢的快速分解是地下H 2 O_2催化原位化学氧化(CHP 1SCO)修复的主要限制。研究了过氧化氢的两种稳定剂柠檬酸盐和植酸盐在一氧化铁涂层和氧化锰涂层砂的一维柱中的有效性。将有和没有25 mM柠檬酸盐或植酸盐的过氧化氢(5%)应用于色谱柱,并在相距13 cm的8个端口处收集样品。柠檬酸盐不是铁涂层砂中过氧化氢的有效稳定剂。但是,肌醇六磷酸非常有效,与不稳定的过氧化氢相比,过氧化氢的残留量增加了两个数量级。柠檬酸盐和肌醇六磷酸盐都是锰覆膜砂的有效稳定剂,与未稳定的过氧化氢相比,过氧化氢的残留量增加了四倍。植酸盐和柠檬酸盐在沙柱中不会降解,也不会受到阻碍。此外,相对于不稳定的色谱柱,添加稳定剂可以提高色谱柱流速。这些结果表明,柠檬酸盐和植酸盐是一维柱动态条件下过氧化氢的有效稳定剂,并表明柠檬酸盐和植酸盐可以在注入地下之前添加到过氧化氢中,作为增加影响半径的有效手段。 CHP ISCO。

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