Department of Agricultural Chemistry and Food Sciences, University Autónoma of Madrid, 28049 Madrid, Spain.
J Hazard Mater. 2015 Mar 21;285:259-66. doi: 10.1016/j.jhazmat.2014.12.002. Epub 2014 Dec 8.
Soils impregnated with creosote contain high concentrations of polycyclic aromatic hydrocarbons (PAH). To bioremediate these soils and avoid PAH spread, different bioremediation strategies were tested, based on natural attenuation, biochar application, wheat straw biostimulation, Pleurotus ostreatus mycoremediation, and the novel sequential application of biochar for 21 days and P. ostreatus 21 days more. Soil was sampled after 21 and 42 days after the remediation application. The efficiency and effectiveness of each remediation treatment were assessed according to PAH degradation and immobilization, fungal and bacterial development, soil eco-toxicity and legal considerations. Natural attenuation and biochar treatments did not achieve adequate PAH removal and soil eco-toxicity reduction. Biostimulation showed the highest bacterial development but low PAH degradation rate. Mycoremediation achieved the best PAH degradation rate and the lowest bioavailable fraction and soil eco-toxicity. This bioremediation strategy achieved PAH concentrations below Spanish legislation for contaminated soils (RD 9/2005). Sequential application of biochar and P. ostreatus was the second treatment most effective for PAH biodegradation and immobilization. However, the activity of P. ostreatus was increased by previous biochar application and PAH degradation efficiency was increased. Therefore, the combined strategy for PAH degradation have high potential to increase remediation efficiency.
用杂酚油浸渍的土壤含有高浓度的多环芳烃 (PAH)。为了修复这些土壤并避免 PAH 扩散,测试了不同的生物修复策略,包括自然衰减、生物炭应用、小麦秸秆生物刺激、糙皮侧耳菌修复和生物炭的新型连续应用 21 天,然后再应用糙皮侧耳菌 21 天。在修复应用 21 天和 42 天后采集土壤样本。根据 PAH 降解和固定、真菌和细菌的发展、土壤生态毒性和法律考虑来评估每种修复处理的效率和效果。自然衰减和生物炭处理未能实现足够的 PAH 去除和土壤生态毒性降低。生物刺激显示出最高的细菌发展,但 PAH 降解率较低。菌根修复实现了最佳的 PAH 降解率和最低的生物可利用分数和土壤生态毒性。这种生物修复策略实现了西班牙污染土壤法规 (RD 9/2005) 规定的 PAH 浓度要求。生物炭和糙皮侧耳菌的顺序应用是最有效的第二大 PAH 生物降解和固定处理。然而,先前的生物炭应用增加了糙皮侧耳菌的活性,提高了 PAH 降解效率。因此,PAH 降解的联合策略具有提高修复效率的巨大潜力。