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Heavy metal accumulation from coal fly ash by cyanobacterial biofertilizers

机译:由煤粉粉煤灰的重金属积累由蓝杆菌生物元分浮铝

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Bioleaching of heavy metals (Cu, Zn, Cr and Pb) from coal fly ash by cyanobacterial strains (Nostoc muscorum, Anabaena variabilis, Tolypothrix tenuis and Aulosira fertilissimia), that are commonly used as biofertilizers in rice cultivation was studied to assess utilization of fly ash while mitigating its environmental metal toxicity. Cyanobacteria were grown at different concentration of fly ash at 0, 5, 10, and 20% was treated with different blue green algal strains (Nostoc muscorum, Anabaena variabilis, Tolypothrix tenuis, and Aulosira fertilissimia) in suitable growth medium (BG-11) and distilled water to observe their growth and metal accumulation. Nostoc muscorum (ARM 442 mg g(-1)) showed maximum uptake of Cr (3.65 mg g(-1)), Pb (2.12 mg g(-1)) at BG 11(-N) medium amended with 10% fly ash, respectively. Anabaena variabilis (ARM 441) showed maximum uptake of Cu (0.313 mg g(-1)) and Pb (2.01 mg g(-1)) in BG 11 (-N) medium amended with 5% fly ash whereas Cr uptake (1.21 mg g(-1)) at 10% fly ash and Zn uptake (0.697 mg g(-1)) at 20% fly ash grown in BG 11(-N) medium. Increased accumulation of metals in blue green algae biomass grown in BG 11(-N) medium amended fly ash confirms that metal concentration was balanced between the algal strains.
机译:通过蓝藻菌株(Nostoc Muscorum,Anabaena Variabilis,Tolypothrix Tenuis和Aulosira Fercisimia)的生物浸渍来自煤粉的重金属(Cu,Zn,Cr和Pb),常用作为水稻种植中的生物元化器,以评估飞行的利用灰分同时减轻其环境金属毒性。在0,5,10的不同浓度的粉煤灰中生长蓝藻,用不同的蓝绿藻(Nostoc Muscorum,Anabaena Variabilis,Tolypothrix Tenuis和Aulosira Fercisimia)在合适的生长培养基(BG-11)处理20%和蒸馏水观察它们的生长和金属积累。 Nostoc Muscorum(臂442mg g(-1))显示出在BG 11(-N)培养基中的最大摄取(3.65mg g(-1)),Pb(2.12mg(-1)),其培养基用10%飞行分别分别。 Anabaena VariaBilis(ARM 441)显示BG 11(-N)中的Cu(0.313mg(-1))和Pb(2.01mg g(-1))用5%粉煤灰修正的Bg 11(-N)培养基,而Cr吸收(1.21 Mg G(-1))在20%粉煤灰(-N)培养基中生长的20%粉煤灰(0.697mg(-1))的粉煤灰和Zn吸收(0.697mg(-1))。在BG11(-N)中生长的蓝绿藻生物量中金属的积累增加了粉煤灰的粉煤灰证实,藻类菌株之间的金属浓度平衡。

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