首页> 外文期刊>Journal of hazardous, toxic and radioactive waste >Enhancing Arsenic Phytoextraction of Dwarf Napier Grass (Pennisetum purpureum cv. Molt) from Gold Mine Tailings by Electrokinetics Remediation with Phosphate and EDTA
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Enhancing Arsenic Phytoextraction of Dwarf Napier Grass (Pennisetum purpureum cv. Molt) from Gold Mine Tailings by Electrokinetics Remediation with Phosphate and EDTA

机译:用磷酸盐和EDTA的电动尾矿,增强矮化纳皮尔草(Pennisetum purpureum Cv.molt)的幼锰ph ph(Pennisetum purpureum cv.molt)

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摘要

In order to study the efficiency of arsenic (As) removal from gold-mine tailings by electrokinetic-assisted phytoremediation (EAPR), a constant direct current (DC) electric field of 1 V/cm (3 h per day) was applied to dwarf Napier grass (Pennisetum purpureum cv. Mott) seedling pots. Furthermore, the influence of the enhancing agent on As uptake was compared with the addition of PO_4~(3-) at levels of 0.7 (P1), 1.4 (P2), and 2.8 (P3) mmol/kg, and ethylenediaminetetraacetic acid (EDTA) at levels of 2.5 (E1), 5 (E2), and 10 (E3) mmol/kg. The increase in the enhancing agent level resulted in a significant (p < 0.05) decrease in aboveground biomass and SPAD values. This was due to the high levels of the enhancing agent inducing a high As concentration in the aboveground parts of the grass. The optimum level of P2 caused the labile As at the anode to form mainly in the charged species throughout the experiment. This caused P2 to have 2.62 μg/g of As in its aboveground parts, which was 38.93% of the total accumulated As. The optimum level of El returned a similar As concentration of 2.27 μg/g in the aboveground parts, which was 41.34% of the total accumulated As, corresponding to the highest translocation factor (TF). Moreover, As K-edge X-ray absorption near-edge structure (XANES) spectra of mine tailings at the anodes of P2 and El indicated that the oxidation of As(-Ⅰ) to As(Ⅴ) increased. This caused As in mine tailings to be more phytoavailable and also enhanced the translocation of As from the underground to the aboveground parts of the grass.
机译:为了通过电动辅助植物修复(EAPR)从金矿尾矿中取出砷(AS)的效率,将1V / cm(每天3小时)的恒定直流(DC)电场应用于DWARF Napier Grass(Pennisetum purpureum cv。Mott)幼苗盆。此外,将增强剂对加吸收的影响与0.7(p1),1.4(p2)和2.8(p3)mmol / kg和乙二胺四乙酸(EDTA)的水平进行比较)在2.5(E1),5(E2)和10(E3)mmol / kg的水平。增强剂水平的增加导致地上生物质和SPAD值的显着(P <0.05)减少。这是由于高水平的增强剂在草的地上地面诱导高分浓度。 P2的最佳水平引起了阳极的不稳定,主要在整个实验中形成带电物种。这导致P2具有2.62μg/ g,如下流所在地,占总累积的总量的38.93%。 EL的最佳水平在上述地面返回与2.27μg/ g的浓度相似,占总易位因子(TF)的总累积的41.34%。此外,作为P2和EL的阳极处的矿井尾矿的k边缘X射线吸收近边缘结构(XANES)光谱表明,氧化为( - Ⅰ)至(ⅴ)增加。这导致矿井尾矿更加植入,也增强了从地下到草地上地上的易位。

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