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Bioaugmentation assisted mycoremediation of heavy metal and/metalloid landfill contaminated soil using consortia of filamentous fungi

机译:生物沉默辅助用丝状真菌的联盟辅助重金属和/金属垃圾填埋场污染土壤的污染土壤

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摘要

This research aimed to demonstrate the significance of bioaugmentation in the mycoremediation of metals and metalloid (Cr, Cu, As, Fe, Mn) polluted landfill soil using consortia of autochthonous filamentous fungi. The fungal consortia used were Ascomycota, all isolated fungi, and Basidiomycota. Bioremediation was monitored for pH, redox potential, electrical conductivity, residual heavy metal/metalloid content, fungal population and enzyme activity at day 0 (initial day), day 20, day 60 and day 100. Results have shown a decreasing trend for all the monitored physicochemical parameters. Fungal organisms have a maximum tolerance index of 1.0 on Fe, Cu and Cr supplemented Agar medium. Highest colony count of 1.17 x 10(10) CFU/g soil was recorded in Basidiomycota treated soil. On the other hand, a consortium of all isolated fungi proved efficient in the removal of As(77 %), Mn(71 %), Cr(60 %), and Cu(52 %). Meanwhile, Fe removal of 56 % was prioritized by the Ascomycota consortium. Acid phosphatase had the weakest activity (0.03 - 0.72 mu mol PNPg(-1) dry soil h(-1)) for all the treatments. FTIR results have shown the appearance of absorption peaks at 1485 - 1445 cm(-1) only in soil amended with fungal consortia. Fungi bioaugmented soil had the maximum metal bio removal efficiency than the untreated control soil (P < 0.05).
机译:该研究旨在展示使用自身加载丝状真菌的联盟的金属和金属(Cr,Cu,As,Fe,Fe,Mn)污染垃圾填埋土壤中的生物修复的重要性。使用的真菌联盟是ascomycota,所有孤立的真菌和盆西菌。在第0天(初始日期),第20天,第60和第100天,监测生物修复的pH,氧化还原势,导电性,残留的重金属/金属体含量,真菌人群和酶活性。结果表明了所有的趋势监测物理化学参数。真菌生物在Fe,Cu和Cr补充琼脂培养基上具有1.0的最大耐受性指数。最高菌落计数1.17×10(10)CFU / G土壤中的盆地治疗土壤。另一方面,所有分离的真菌的联盟在除去(77%),Mn(71%),Cr(60%)和Cu(52%)中有效。同时,ascomycota联盟优先考虑56%的Fe去除。酸性磷酸酶具有最弱的活性(0.03-0.72μmmolPNG(-1)干燥土壤H(-1)),用于所有处理。 FTIR结果表明,仅在用真菌联盟修正的土壤中,在1485-1445cm(-1)下的吸收峰的外观。真菌生物沉积土壤具有比未处理的对照土壤的最大金属生物去除效率(P <0.05)。

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