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首页> 外文期刊>Mycobiology >Removal Efficiency of the Heavy Metals Zn(II), Pb(II) and Cd(II) by Saprolegnia and Trichoderma viride at Different pH Values and Temperature Degrees
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Removal Efficiency of the Heavy Metals Zn(II), Pb(II) and Cd(II) by Saprolegnia and Trichoderma viride at Different pH Values and Temperature Degrees

机译:在不同的pH值和温度下,腐殖质和木霉菌对重金属Zn(II),Pb(II)和Cd(II)的去除效率

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The removal efficiency of the heavy metals Zn, Pb and Cd by the zoosporic fungal species Saprolegnia delica and the terrestrial fungus Trichoderma viride, isolated from polluted water drainages in the Delta of Nile in Egypt, as affected by various ranges of pH values and different temperature degrees, was extensively investigated. The maximum removal efficiency of S. delica for Zn(II) and Cd(II) was obtained at pH 8 and for Pb(II) was at pH 6 whilst the removal efficiency of T. viride was found to beoptimum at pH 6 for the three applied heavy metals. Regardless the median lethal doses of the three heavy metals, Zn recorded the highest bioaccumulation potency by S. delica at all pH values except at pH 4, followed by Pb whereas Cd showed the lowest removal potency by the fungal species and vice versa in case of T. viride. The optimum bio-mass dry weight production by S. delica was found when the fungus was grown in the medium treated with the heavy metal Pb at pH 6, followed by Zn at pH 8 and Cd atpH 8. The optimum biomass dry weight yield by T. viride amended with Zn, Pb and Cd was obtained at pH 6 for the three heavy metals with the maximum value at Zn. The highest yield of biomass dry weight was found when T. viride treated with Cd at all different pH values followed by Pb whilst Zn output was the lowest and this result was reversed in case of S. delica. The maximum removal efficiency and the biomass dry weight production for the three tested heavy metals was obtained at the incubation temperature 20 deg C in case of S. delica while it was 25 deg C for T. viride. Incubation of T. viride at higher temperatures (30 deg C and 35 deg C) enhanced the removal efficiency of Pb and Cd than low temperatures (15 deg C and 20 deg C) and vice versa in case of Zn removal. At all tested incubation temperatures, the maximum yield of biomass dry weight was attained at Zn treatment by the two tested fungal species. The bioaccumulation potency of S. delica for Zn was higher than that for Pb at all temperaturedegrees of incubation and Cd bioaccumulation was the lowest whereas T. viride showed the highest removal efficiency for Pb followed by Cd and Zn was the minor of the heavy metals.
机译:受不同pH值范围和不同温度影响的游动孢子真菌Saprolegnia delica和陆生真菌木霉属木霉对重金属Zn,Pb和Cd的去除效率,它们从埃及尼罗河三角洲的污水渠中分离出来度,进行了广泛研究。在pH值为8的情况下,南美毛藻对Zn(II)和Cd(II)的去除效率最高,在pH值为6时对Pb(II)的去除率最高,而在pH值为6的情况下,六丁香的去除效率最佳。三种应用的重金属。不管这三种重金属的致死剂量中位数如何,Zn在所有pH值(除pH值为4时)下均以S. delica的生物累积能力最高,其次是Pb,而Cd则是真菌物种的去除能力最低,反之亦然。 T. viride。当真菌在pH为6的重金属Pb,pH为8的Zn和Cd为8的重金属处理的培养基中生长时,可以找到由S. delica生产的最佳生物质干重。对于三种重金属,在pH值为6时,用Zn,Pb和Cd修饰的T. viride在Zn处达到最大值。当在所有不同的pH值下用Cd处理C.然后用Pb处理的翠绿假单胞菌时,生物质干重的最高产量,而Zn的产量最低,而S. delica的情况则相反。对于S. delica,在20°C的孵育温度下获得了三种被测重金属的最大去除效率和生物质干重产量,而对于T. viride,则在25°C的条件下。在较高温度(30摄氏度和35摄氏度)下培养六面体丁酸杆菌比在低温(15摄氏度和20摄氏度)下提高Pb和Cd的去除效率,反之,在去除锌的情况下反之亦然。在所有测试的温育温度下,两种测试的真菌物种在锌处理下均达到了最大的生物质干重产量。在所有温度下,S。delica对锌的生物富集能力均高于铅,而镉的生物富集能力最低,而三叶草对铅的去除效率最高,其次是镉和锌,而重金属的含量最低。

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