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Transformation of oil and hexadecane in soil by microbial preparations and earthworms

机译:微生物制剂与蚯蚓在土壤中的转化

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This study focuses on the effect of earthworms, oil-decomposing microbial preparation Destroil, and their combination on the destruction of oil in contaminated soil. The earthworms Eisenia andrei Bouche, 1972 accelerated the transformation of oil and hexadecane by microbiological preparations Destroil and Devouroil. The use of the combination of biological product and earthworms resulted in: (1) maximum reduction in the content of oil and hexadecane in the soil samples under study; (2) reduction of the phytotoxicity of oil-contaminated soil; (3) improvement in the agrophysical properties of soils in comparison with the action of these biodegradants separately. The transformation of oil hydrocarbons was monitored using NMR and IR spectroscopy. The biological oxidation process was accompanied by the accumulation of unsaturated triglycerides of variable structure. The chain length of the acid residue of triglycerides varied within the C-11-C-22 carbon atoms. In this case, the number of carbon atoms in the chain was most often -C-18. The position of the double bonds was stochastic. At the same time, they were all removed from the carboxyl group by more than 4 carbon atoms. Stimulation of the processes of complex biotransformation of hexadecane under the action of the drug Devouroil and earthworms was manifested with the introduction of a biological product at concentrations of 32 x 10(10) cells/kg and 64 x 10(10) cells/kg. A further increase in the number of cells of the biological product Devouroil with the combined use of the biological product and worms led to a leveling of the stimulating effect of earthworms on the transformation processes of this hydrocarbon. At the same time, the phytotoxicity of the studied samples decreased.
机译:本研究重点介绍蚯蚓,油分分解微生物制剂光盘的影响及其对污染土壤中油破坏的影响。 1972年蚯蚓艾西哥艾西比亚和德里博尔德通过微生物制剂光泽和探测器加速了石油和十六烷的转化。使用生物产品和蚯蚓的组合导致:(1)在研究下的土壤样品中的油和十六烷含量的最大降低; (2)减少油污土壤的植物毒性; (3)与这些生物降解剂分别的作用相比,土壤的农理性质的改善。使用NMR和IR光谱监测油碳氢化合物的转化。生物氧化过程伴随着可变结构的不饱和甘油三酯的积累。甘油三酯酸残基的链长在C-11-C-22碳原子内变化。在这种情况下,链中的碳原子数最常是-C-18。双键的位置是随机的。同时,它们全部从羧基中除去超过4个碳原子。通过引入32×10(10)个细胞/ kg和64×10(10)个细胞/ kg的浓度的生物产物,表现出在药物吞噬和蚯蚓的作用下刺激十六甲烷的复合生物转移的方法。进一步增加了生物产品的细胞数量,通过联合使用生物产品和蠕虫,导致蚯蚓对该烃的转化过程的刺激作用的调平。同时,研究的样品的植物毒性降低。

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