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Simultaneous suppression of magnetic nanoscale powder and fermented bark amendment for arsenic and cadmium uptake by radish sprouts grown in agar medium

机译:在琼脂培养基中产生砷和镉吸收的磁性纳米级粉末和发酵的树皮修正案的同时抑制

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摘要

In this study, we effectively suppressed arsenic and cadmium uptake into a plant using magnetic nanoparticle powder (MNP) and fermented bark amendment (FBA) in agar medium. The MNP (which consists of FeO Fe 2O3) quantitatively adsorbed arsenite (As(III)) and the FBA (which mainly consists of bark waste) adsorbed cadmium, regardless of the pH. The properties of MNP and FBA in agar medium were compared based on the amounts of arsenic and cadmium in cultivated radish sprouts. While adding FBA selectively suppressed cadmium uptake by radishes, adding MNP suppressed the uptake of both arsenic and cadmium. Considering that the uptake of analytes was slightly reduced even in agar without any additives, the agar itself might also have contributed to the suppression of analyte uptake into plants. In addition, even when radish sprouts were cultivated in agar containing arsenic and cadmium (100g/L each) mixed with 25g MNP and 1.25g FBA per 25mL agar, arsenic and cadmium absorption decreased by 90% and 82%, respectively, versus agar without additives. Furthermore, adding the mixed amendment to agar accelerated the growth of radishes, whereas MNP significantly inhibited radish growth even though it reduced analyte uptake. Our results indicated that mixing inorganic and organic adsorbents could simultaneously inhibit cadmium and arsenic uptake by plants and accelerate plant growth in the cadmium and arsenic-contaminated agar medium.
机译:在这项研究中,我们在琼脂培养基中有效地抑制了砷和镉吸收到一种植物中的植物和琼脂培养基中发酵的树皮修正(FBA)。 MNP(由FeO Fe 2 O 3)定量吸附的砷酸盐(如(iii))和FBA(主要由树皮废物组成)吸附镉,无论pH值如何。基于培养萝卜芽中的砷和镉的量进行比较MNP和FBA的性质。在添加FBA的同时,选择性地被萝卜吸收镉,加入MNP抑制了砷和镉的摄取。考虑到在没有任何添加剂的情况下,即使在琼脂中略微降低分析物的摄取量,琼脂本身也可能导致抑制分析物摄取到植物中。此外,即使在含有砷和镉(每次100g / L的镉)中培养萝卜芽,每25g MNP和每25ml琼脂的1.25g FBA混合时,砷和镉的吸收分别降低了90%和82%,而不是琼脂添加剂。此外,将混合修正添加到琼脂加速萝卜的生长,而MNP也显着抑制萝卜生长,即使它降低了分析物吸收。我们的结果表明,混合无机和有机吸附剂可以同时抑制植物的镉和砷吸收,并加速镉和砷污染的琼脂培养基的植物生长。

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