首页> 外文期刊>Vadose zone journal VZJ >Soil Physical Constraints on Intrinsic Biodegradation of Petroleum Vapors in a Layered Subsurface
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Soil Physical Constraints on Intrinsic Biodegradation of Petroleum Vapors in a Layered Subsurface

机译:土壤物理约束对层状地下石油蒸气本征生物降解的影响

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Naturally occurring biodegradation of petroleum hydrocarbons in the vadose zone depends on the physical soil environment influencing field-scale gas exchange and pore-scale microbial metabolism. In this study, we evaluated the effect of soil physicalheterogeneity on biodegradation of petroleum vapors in a 16-m-deep, layered vadose zone. Soil slurry experiments (soil/water ratio 10:30 w/w, 25°C) on benzene biodegradation under aerobic and well-mixed conditions indicated that the biodegradation potential in different textured soil samples was related to soil type rather than depth, in the order: sandy loam > fine sand > limestone. Similarly, O2 consumption rates during in situ respiration tests performed at the site were higher in the sandy loam than in the fine sand, although the difference was less significant than in the slurries. Laboratory and field data generally agreed well and suggested a significant potential for aerobic biodegradation, even with nutrient-poor and deep subsurface conditions. In slurries of the sandy loam, the biodegradation potential declined with increasing in situ water saturation (i.e., decreasing air-filled porosity in the field). This showed a relation between antecedent undisturbed field conditions and the slurry biodegradation potential, and suggested air-filled porosity to be a key factor for the intrinsic biodegradation potential in the field.
机译:渗流带中石油烃的自然发生生物降解取决于影响田间规模的气体交换和孔隙规模的微生物代谢的物理土壤环境。在这项研究中,我们评估了土壤物理异质性对16 m深的分层渗流带中石油蒸气生物降解的影响。在好氧和充分混合条件下对苯进行生物降解的土壤浆料实验(水/水比为10:30 w / w,25°C)表明,不同质地土壤样品中生物降解的潜力与土壤类型有关,而与深度无关。顺序:沙质壤土>细砂>石灰石。同样,在壤土中进行的现场呼吸测试中,O 2消耗率比细砂中的高,尽管差异不如浆液中的大。实验室和现场数据总体上吻合得很好,并提出了有氧生物降解的巨大潜力,即使在营养贫乏和深层地下条件下也是如此。在砂壤土的泥浆中,生物降解潜力随原位水饱和度的增加而降低(即,田间空气孔隙率降低)。这表明先前未受干扰的田间条件与泥浆生物降解潜力之间的关系,并表明充气孔隙率是该油田固有生物降解潜力的关键因素。

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