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Impact of Shewanella oneidensis on heavy metals remobilization under reductive conditions in soil of Guilan Province, Iran

机译:伊朗桂兰省土壤减少条件下重型金属对重金属重塑的影响

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Remobilization of heavy metals in contaminated soil due to anaerobic bioreduction by Shewanella oneidensis was studied. Glucose and anthraquinone-2,6-disulphonate (AQDS) were used as an electron donor and an electron shuttle, respectively. The bioreduction caused a gradual increase in dissolved Mn(II) concentration upto 15 days followed by stationary state. The aqueous Fe(II) concentration increased and reached a highest level on the 10th day, followed by a slight decrease before the steady state was reached. The concentration of Cu(II) was at its extreme level on 5th day and then decreased before reaching the steady state. The highest dissolution was observed for Zn(II) on the 10th day followed by a decrease upto 25th day. Enhanced reduction of Fe(III) and mobilization of selected heavy metals were observed in the presence of S. oneidensis and AQDS. The soluble and acid-extractable Fe(II) concentration was higher in the presence of glucose. The remobilization efficiencies of Mn(II), Fe(II), Cu(II), and Zn(II) were 41%, 48%, 53%, and 63%, respectively. After bioreduction, Fe(II)/Cu(II) and Mn(II)/Zn(II) posed moderate and high risks, respectively. The results of this study will be useful to highlight the effects of variable redox conditions on the bioreduction process to determine the bioavailability of heavy metals in soil.
机译:研究了由于雪兰菜二世肾上腺素的厌氧生物植物血管生物植物血管生物植物的重新染色。葡萄糖和蒽醌-2,6-二磺酸盐(AQDS)分别用作电子供体和电子往返。生物植物导致溶解的Mn(II)浓度逐渐增加,高达15天,然后是静止状态。第10天,Fe(II)浓度增加并达到最高水平,然后在达到稳态之前略微减少。 Cu(II)的浓度在第5天处于极端水平,然后在达到稳定状态之前降低。在第10天观察到Zn(II)的最高溶解,然后在第25天降低。在S. onidensis和AQDS存在下,观察到增强的Fe(III)和测量选定的重金属的缩减。葡萄糖存在下可溶性和酸可提取的Fe(II)浓度较高。 Mn(II),Fe(II),Cu(II)和Zn(II)的重新化效率分别为41%,48%,53%和63%。生物植物后,Fe(II)/ Cu(II)和Mn(II)/ Zn(II)分别为中度和高风险。该研究的结果将有助于突出可变氧化还原条件对生物凝固过程的影响,以确定土壤中重金属的生物利用度。

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