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Potential of grasses and rhizosphere bacteria for bioremediation of diesel-contaminated soils

机译:草和根际细菌对柴油污染土壤进行生物修复的潜力

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The techniques available for the remediation of environmental accidents involving petroleum hydrocarbons are generally high-cost solutions. A cheaper, practical and ecologically relevant alternative is the association of plants with microorganisms that contribute to the degradation and removal of hydrocarbons from the soil. The growth of three tropical grass species (Brachiaria brizantha, Brachiaria decumbens and Paspalum notatum) and the survival of root-associated bacterial communities was evaluated at different diesel oil concentrations. Seeds of three grass species were germinated in greenhouse and at different doses of diesel (0, 2.5, 5 and 10 g kg-1 soil). Plants were grown for 10 weeks with periodic assessment of germination, growth (fresh and dry weight), height, and number of bacteria in the soil (pots with or without plants). Growth and biomass of B. decumbens and P. notatum declined significantly when planted in diesel-oil contaminated soils. The presence of diesel fuel did not affect the growth of B. brizantha, which was highly tolerant to this pollutant. Bacterial growth was significant (p < 0.05) and the increase was directly proportional to the diesel dose. Bacteria growth in diesel-contaminated soils was stimulated up to 5-fold by the presence of grasses, demonstrating the positive interactions between rhizosphere and hydrocarbon-degrading bacteria in the remediation of diesel-contaminated soils.
机译:补救涉及石油烃的环境事故的可用技术通常是高成本的解决方案。一种更便宜,实用且与生态相关的替代方法是将植物与微生物结合,从而促进土壤中碳氢化合物的降解和去除。在不同的柴油浓度下,评估了三种热带草种(Brachiaria brizantha,Brachiaria decumbens和Paspalum notatum)的生长以及与根相关的细菌群落的存活。三种草种的种子在温室中和以不同剂量的柴油(0、2.5、5和10 g kg-1土壤)发芽。使植物生长10周,并定期评估其发芽,生长(新鲜和干重),高度和土壤中细菌的数量(有或没有植物的花盆)。当种植在柴油污染的土壤中时,枯草芽孢杆菌和Notatum的生长和生物量显着下降。柴油的存在不影响对这种污染物具有高度耐受性的B. brizantha的生长。细菌生长显着(p <0.05),并且增加与柴油剂量成正比。杂草的存在将被柴油污染的土壤中细菌的生长最多刺激了5倍,这表明在修复被柴油污染的土壤中,根际和降解碳氢化合物的细菌之间具有积极的相互作用。

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