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Effect of Citric Acid, Rhizosphere Bacteria, and Plant Age on Metal Uptake in Reeds Cultured in Acid Mine Drainage

机译:柠檬酸,根际细菌和植物年龄对酸性排水沟芦苇中金属吸收的影响

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摘要

Acid mine drainage (AMD) poses serious environmental problems. This study assessed the effect of plant age, rhizosphere bacteria, and citric acid (CA) on the metal plaque formation and metal uptake in Phragmites australis cultured in a synthetic AMD solution. Iron-oxidizing bacteria (Fe(Ⅱ)OB) enhanced the formation of Fe plaque, which slightly decreased Fe and Mn uptake. CA reduced the growth of Fe(Ⅱ)OB and formation of Fe plaque, thereby increasing the Fe and Mn accumulations in reeds. Adult reeds had developed more Fe plaque on the root surface than seedlings. However, the adult reeds still accumulated higher concentrations of metals due to their higher tolerance to toxic environments and bigger biomass. With 9.02 g/L CA, adult reeds accumulated 0.51 ±0.00 mg Mn, 109.38±1.37 mg Fe, and 1.77±0.04 mg Al. More investigation may be needed to further study the effect of CA when applied to AMD-contaminated field.
机译:酸性矿山排水(AMD)带来了严重的环境问题。这项研究评估了植物年龄,根际细菌和柠檬酸(CA)对在合成AMD溶液中培养的芦苇中金属斑块形成和金属吸收的影响。铁氧化细菌(Fe(Ⅱ)OB)增强了铁斑的形成,从而稍微降低了铁和锰的吸收。 CA减少了Fe(Ⅱ)OB的生长和Fe斑块的形成,从而增加了芦苇中Fe和Mn的积累。成年芦苇在根表面比在幼苗上形成更多的铁斑。但是,成年芦苇由于对毒性环境和较大生物量的较高耐受性,因此仍积累了较高浓度的金属。在9.02 g / L CA下,成年芦苇积累了0.51±0.00 mg Mn,109.38±1.37 mg Fe和1.77±0.04 mg Al。当将CA应用于受AMD污染的领域时,可能需要进行更多研究以进一步研究CA的影响。

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