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Bioremediation potential of button mushroom spent substrate against cadmium and lead under pilot scale experimentation.

机译:在中试规模试验中,扣菇废基质对镉和铅的生物修复潜力。

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Spent substrate (SMS) from button mushroom (Agaricus bisporus) was evaluated for its bioremediation potential against two hazardous heavy metals (cadmium and lead) under in vitro and in vivo conditions. Presence of two heavy metals in cultural media reduced the fungal count by 1.5 to 400 folds in SMS. Out of three dominating fungi viz., Trichoderma sp., Aspergillus sp., and Blastomycetes sp., isolated from SMS, Aspergillus sp. exhibited highest bioremoval of cadmium and lead (60.80 and 69.21%) under cultural conditions. It was followed by Trichoderma sp. (55.30 and 58.65%) and least in control (38.50 and 41.89%). On sterilized button mushroom SMS, the removal of two heavy metals was almost 2 to 4 folds higher in microbes inoculated treatments compared to control. Compared to cadmium, lead was nearly 2 to 4 times less available at different stages of sampling. Out of different permutations and combinations of microbes, the mixed inoculum of Trichoderma sp., Aspergillus sp. and Mucor sp. exhibited highest bioaccumulation for cadmium and lead. Mixing of different proportions (10, 20 and 30%, w/w) of SMS in soil led to an increase in moisture retention capacity and porosity of soil, while it decreased the bulk density, however the effect was more pronounced in higher proportion of SMS (30%). Compared to control, the bioremoval of two heavy metals was higher in SMS amended soils and it was highest in soil received highest proportion of SMS (30%). Cadmium reached to near negligible level after 6 months of SMS mixing, while it took only 3 months in case of lead.
机译:在体外和体内条件下,评估了来自蘑菇(双孢蘑菇)的废底物(SMS)对两种有害重金属(镉和铅)的生物修复潜力。文化培养基中两种重金属的存在使SMS中的真菌数量减少了1.5到400倍。从SMS中分离的三种主要真菌,即木霉属(Trichoderma),曲霉(Aspergillus sp。)和芽孢杆菌属(Blastomycetes)。在文化条件下对镉和铅的生物去除率最高(分别为60.80和69.21%)。其次是木霉属。 (55.30和58.65%),最少的是对照组(38.50和41.89%)。在无菌纽扣蘑菇SMS上,与对照相比,接种微生物的处理中两种重金属的去除率几乎高出2至4倍。与镉相比,在不同的采样阶段,铅的可用量几乎减少了2至4倍。由于微生物的不同排列和组合,木霉菌,曲霉菌的混合接种物。和Mucor sp。表现出最高的镉和铅生物累积量。在土壤中混合不同比例(10%,20%和30%,w​​ / w)的SMS可以提高土壤的保水能力和孔隙率,同时降低堆积密度,但是在较高比例的土壤中,效果更明显。短信(30%)。与对照相比,SMS改良土壤中两种重金属的生物去除率更高,在获得最高SMS含量的土壤中生物去除率最高(30%)。六个月的SMS混合后,镉达到几乎可以忽略的水平,而铅的作用仅3个月。

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