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Bioremediation of oil-contaminated soil by combination of soil conditioner and microorganism

机译:土壤调节剂和微生物组合的油污土生物修复

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Purpose Oil hydrocarbons are widespread pollutants in soil which pose serious threats to ecological environment. Thus, this study carried out the bioremediation of oil-contaminated soil by using the efficient petroleum-degrading bacteria and soil conditioner, to investigate the changes of physicochemical properties of contaminated soil during bioremediation, reveal the relationship among the exogenous degradation strains and indigenous microbe, and finally illuminate the effects of soil conditioner and microbe on the bioremediation of oil-contaminated soil. Materials and methods A PAH-degrading strain named Stenotrophomonas maltophilia was used in this study, which was isolated from an e-waste dismantling area. The soil conditioner in this present study was developed previously by using agricultural wastes, which was in a powdered form and rich in N, P, and K. The simulated experiments were conducted under the control environmental conditions of greenhouse, to study the effects of inoculation and soil conditioner on bioremediation of oil-contaminated soil. Then, the physicochemical properties of soil and the degradation rates of oil were measured at different set times to evaluate the bioremediation effect. Results and discussion Adding 1% soil conditioner could significantly improve the soil conditions and offer microorganism enough N, P, and K, which would promote microbial growth and played a key role on bioremediation of oil-contaminated soil. Although in polluted soil, the microorganism could maintain metabolic activity and use the petroleum as carbon source. The soil indigenous microbe was more easily to adapt to the contaminated surrounding. However, when both of them co-existed in soil, they would restrain each other, and go against the oil decomposition. Thus, making two types of microorganisms work to achieve synergy was the key to gain much better remediation effect. Because the indigenous microbe was good at decomposing low molecular compounds and saturated hydrocarbons, while the oil-degrading strains can effectively decompose high molecular weight aromatics. Conclusions The soil nutrient and microorganism, including the exogenous oil-degrading strains and the soil indigenous microbe, had an important effect on degradation of petroleum. The addition of soil conditioner, presence of indigenous microbe, and inoculation of oil-degrading strains all were conducive to bioremediation of oil-contaminated site, but the key was to control the proportion and relationship of the three.Graphical abstract
机译:目的油碳氢化合物是土壤中的普遍污染物,对生态环境构成严重威胁。因此,本研究通过使用有效的石油降解细菌和土壤调节剂进行了油污土的生物修复,以研究生物化过程中受污染土壤的物理化学性质的变化,揭示了外源性降解菌株和土着微生物之间的关系,最后照亮土壤调节剂和微生物对油污土生物修复的影响。材料和方法在本研究中使用了名为Stenotrophomonas麦芽粒子的PAH降解菌株,其与E废物拆解区域分离。本研究中的土壤调节剂以前通过使用农业废物开发,其以粉末形式和富含N,P和K.在温室的控制环境条件下进行模拟实验,以研究接种的影响油污土壤生物修复土壤调理剂。然后,在不同设定时间测量土壤的物理化学性质和油的降解速率以评估生物化效应。结果与讨论加入1%的土壤调节剂可以显着改善土壤条件,提供足够的微生物,P,P和K,这将促进微生物生长,并对污染土壤的生物修复发挥着关键作用。虽然在污染的土壤中,微生物可以维持代谢活性并使用石油作为碳源。土着土着微生物更容易适应受污染的周围。然而,当它们两者都共存在土壤中时,它们会互相限制,并抗石油分解。因此,制作两种类型的微生物来实现协同作用是获得更好的修复效果的关键。因为本土微生物良好井是分解低分子化合物和饱和烃,而油降解菌株可以有效地分解高分子量芳烃。结论土壤营养素和微生物,包括外源性油脂降解菌株和土着土着微生物,对石油降解具有重要作用。添加土壤调节剂,土着微生物的存在,以及吸油菌株的接种均有利于油污污染部位的生物修复,但关键是控制三个的比例和关系。图绘图摘要

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