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Phosphate-modified ferric-based material remediates lead and arsenic co-contaminated soil and enhances maize seedling growth

机译:磷酸盐改性的基于铁的材料补救了铅和砷共污染的土壤,增强了玉米幼苗生长

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摘要

Soil heavy metal pollution, especially lead (Pb) and arsenic (As), is a global issue that requires urgent attention. In the present study, phosphate-modified ferric-based material (PFM) was used to remedy Pb and As co-contaminated soil. The remediation potential of PFM on Pb and As co-contaminated soil was studied by static culture experiments, and the effect on maize (Zea mays L.) seedling growth was studied using pot experiments. The results showed that the bioavailability of Pb and As in the soil and their accumulation in the seedlings were reduced when PFM was added to the soil. At 2-6 wt% PFM, the remediation rates of Pb and As reached 57%-82% and 62%-76%, respectively, and their accumulation in the seedlings decreased by 27.8%-68% and 55.6%-70%. The optimal amount of PFM was 4 wt% of the soil. There was a linear correlation between the amount of DTPA-extractable Pb or NaHCO3-extractable As in the soil and the amount of Pb or As accumulated by the seedlings. The correlation coefficients of Pb and As reached 0.7690-0.8166 and 0.9982-0.9779. Seedling growth was also promoted. Compared with the controls, the seedling emergence rate increased by 1.4%-4%, plant height increased by 4.1%-12.4%, plant weight increased by 29.6%-37%, and the root length increased by 5%-52%. In summary, PFM offers an environmentally friendly approach with excellent potential for the remediation of Pb and As co-contaminated soil.
机译:土壤重金属污染,特别是铅(Pb)和砷(AS),是一个需要紧急关注的全球问题。在本研究中,使用磷酸盐改性的基于铁基材料(PFM)来补救PB和作为共污染的土壤。通过静态培养实验研究了PFM对PFM和作为共污染土壤的补救潜力,使用罐实验研究了对玉米(ZEA 5月L.)幼苗生长的影响。结果表明,当将PFM加入到土壤中,降低了Pb和土壤中的生物利用度和土壤中的幼苗中的积累和它们的积累。在2-6wt%PFM,Pb的修复率分别达到57%-82%和62%-76%,其在幼苗中的积累降低了27.8%-68%和55.6%-70%。 PFM的最佳量为土壤的4wt%。在土壤中的DTPA可提取的Pb或NaHCO 3中可萃取的量与幼苗积累的DTPA可萃取的Pb或NaHCO 3 - 萃取物之间存在线性相关性。 PB的相关系数和达到0.7690-0.8166和0.9982-0.9779。还促进了幼苗生长。与对照组相比,幼苗出苗率增加1.4%-4%,植物高度增加4.1%-12.4%,植物重量增加29.6%-37%,根长增加5%-52%。总之,PFM提供了一种环保的方法,具有优异的PB和共污染土壤的潜力。

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