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Detoxification of oil-contaminated soils by using humic acids

机译:用腐殖酸解毒油污土壤

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The paper deals with the study of the effect of peat mechanoactivation on the structure and biostimulating and detoxifying properties of isolated humic acids(HA)in of oil-contaminated soil.It is shown that the mechanical activation of peat leads to an increase in the HA yield by a factor of 2-3.In this case,the changes in the fragment composition of HA are observed.Hence,the percentage of aromatic and oxidized alkyl fragments increases,while the amount of oxygen-containing functional groups decreases.The binding of petroleum organic compounds occurs due to the presence of an aromatic skeleton in the structure of HA.The increase in the proportion of aromatic fragments in the structure of mechanically activated HAs increases their affinity for hydrophobic oil compounds,thereby providing them a detoxifying ability.The maximum detoxifying ability of mechanically activated HA determines their biostimulating properties in the wheat seed germination experiment.The biostimulating effect from the use of mechanically activated HA samples is manifested itself to a greater degree in the increase in the height of the sprout stem and the dry mass of the aerial part of the plant.The processes of biodegradation of oil in the soil in the presence of HA are investigated.It is shown that the amount of bitumoids extracted from the soil in the presence of HA is reduced by 30%.The content of hydrocarbons in bitumoids decreases by 50% due to the biodegradation of low molecular weight alkanes.At the same time,the degree of branching of hydrocarbon chains increases,which suggests a microbiological activity.An increase in alcohol-benzene resins in the composition of bitumoids indicates the stimulation of hydrocarbon-oxidizing bacteria by humic acids.According to the data of IR spectroscopy,the content of paraffin hydrocarbons has decreased during the destruction of oil by soil microflora.
机译:本文涉及泥炭机械激活对油污染土壤中分离腐殖酸(HA)的结构和消毒和解毒性能的研究。表明泥炭的机械活化导致HA的增加产量为2-3倍。在这种情况下,观察HA的片段组成的变化。因此,芳族和氧化烷基片段的百分比增加,而含氧官能团的含量降低。结合由于在HA的结构中存在芳族骨架的芳族骨架的存在而发生的石油有机化合物。机械活化的结构中芳族片段比例的增加增加了对疏水性油化合物的亲和力,从而为它们提供解毒能力。最大机械活化HA的解毒能力决定了他们在小麦种子萌发实验中的生物刺激性质。T.与T的生物刺激效果他使用机械活化的HA样品在萌芽杆的高度和植物的空中部分的高度增加的增加程度上表现为更大程度。在HA存在下土壤中油生物降解的过程被研究。表明,在HA存在下从土壤中提取的沥青量减少了30%。由于低分子量烷烃的生物降解,沥青中碳氢化合物中烃的含量降低了50%。同时,烃链的支化程度增加,这表明微生物活性。沥青组合物中的醇 - 苯树脂的增加表明腐殖酸溶血氧化细菌。根据IR光谱数据,含量的数据通过土壤微征群落破坏油后石蜡碳氢化合物降低。

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