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A field trial of in situ chemical oxidation to remediate long-term diesel contaminated Antarctic soil

机译:原位化学氧化修复长期被柴油污染的南极土壤的现场试验

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In situ chemical oxidation (ICO) has been identified as a potential technology for the remediation of petroleum hydrocarbon contaminated sites in Antarctica. ICO involves introducing reactive chemicals to contaminated soils so that organics such as petroleum hydrocarbons are oxidised to environmentally innocuous compounds. This paper details two field trials that were undertaken to evaluate the feasibility of using a surface application of these oxidative treatments (Fenton's reagent, hydrogen peroxide and sodium hypochlorite) to remediate petroleum contaminated soil at Old Casey Station, East Antarctica. Results show that the ICO technology used at this site, where contamination occurred over a decade ago, did not significantly reduce petroleum hydrocarbon concentrations and would likely hinder biodegradation through the destruction of subsurface microbial communities. Further treatment testing and optimisation is required before ICO would be an effective remediation strategy for petroleum contaminated sites in Antarctica. However, the near complete destruction of subsurface microbiota, coupled with a discoloured orange soil residue and soil heating, mean that other more environmentally sensitive techniques such as bioremediation are our preferred treatment methodology.
机译:原位化学氧化(ICO)已被认为是修复南极州石油烃污染场所的潜在技术。 ICO涉及向受污染的土壤中引入反应性化学物质,从而使诸如石油烃之类的有机物被氧化成对环境无害的化合物。本文详细介绍了两项现场试验,以评估使用这些氧化处理(芬顿试剂,过氧化氢和次氯酸钠)表面处理来修复南极东部凯西站的石油污染土壤的可行性。结果表明,该地点使用的ICO技术在十年前就已发生污染,但并未显着降低石油碳氢化合物的浓度,并可能通过破坏地下微生物群落来阻止生物降解。在将ICO用作南极洲石油污染站点的有效补救策略之前,需要进一步的处理测试和优化。然而,地下微生物群几乎完全被破坏,加上变色的橙色土壤残留物和土壤加热,意味着其他对环境更敏感的技术,例如生物修复,是我们首选的处理方法。

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