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Microbe-aliphatic hydrocarbon interactions in soil: implications for biodegradation and bioremediation

机译:土壤中微生物与脂肪烃的相互作用:对生物降解和生物修复的影响

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摘要

Aliphatic hydrocarbons make up a substantial portion of organic contamination in the terrestrial environment. However, most studies have focussed on the fate and behaviour of aromatic contaminants in soil. Despite structural differences between aromatic and aliphatic hydrocarbons, both classes of contaminants are subject to physicochemical processes, which can affect the degree of loss, sequestration and interaction with soil microflora. Given the nature of hydrocarbon contamination of soils and the importance of bioremediation strategies, understanding the fate and behaviour of aliphatic hydrocarbons is imperative, particularly microbe-contaminant interactions. Biodegradation by microbes is the key removal process of hydrocarbons in soils, which is controlled by hydrocarbon physicochemistry, environmental conditions, bioavailability and the presence of catabolically active microbes. Therefore, the aims of this review are (i) to consider the physicochemical properties of aliphatic hydrocarbons and highlight mechanisms controlling their fate and behaviour in soil; (ii) to discuss the bioavailability and bioaccessibility of aliphatic hydrocarbons in soil, with particular attention being paid to biodegradation, and (iii) to briefly consider bioremediation techniques that may be applied to remove aliphatic hydrocarbons from soil.
机译:在地球环境中,脂肪烃占有机污染物的很大一部分。然而,大多数研究集中在土壤中芳族污染物的命运和行为上。尽管芳烃和脂族烃之间存在结构差异,但这两类污染物均会经历物理化学过程,这会影响损失程度,螯合程度以及与土壤微生物区系的相互作用。考虑到土壤碳氢化合物污染的性质以及生物修复策略的重要性,必须了解脂族碳氢化合物的命运和行为,尤其是微生物与污染物的相互作用。微生物的生物降解是土壤中碳氢化合物的关键去除过程,该过程受碳氢化合物的物理化学,环境条件,生物利用度和分解代谢活性微生物的存在控制。因此,本综述的目的是:(i)考虑脂族烃的理化性质,并突出控制其在土壤中的命运和行为的机制; (ii)讨论土壤中脂肪烃的生物利用度和生物利用度,尤其要注意生物降解,以及(iii)简要考虑可用于从土壤中去除脂肪烃的生物修复技术。

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