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首页> 外文期刊>Acta Agriculturae Scandinavica. Section B, Soil and Plant Science >Heavy metal uptake and translocation by Justicia gendarussa Burm F. from textile sludge contaminated soil.
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Heavy metal uptake and translocation by Justicia gendarussa Burm F. from textile sludge contaminated soil.

机译:Justicia gendarussa Burm F.从纺织污泥污染的土壤中吸收和转运重金属。

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摘要

Heavy metals are dangerous environmental pollutants that can be transferred and accumulated in human and animal bodies causing deoxyribonucleic acid (DNA) damage and carcinogenic effects. A glass house experiment was conducted to evaluate the potential of Justicia gendarussa Burm F. to absorb heavy metals from textile industry sludge. Justicia gendarussa seedlings were planted on six different growth media (soil+sludge) comprising: 100% soil, 100% sludge, 80% sludge+20% soil, 60% sludge+40% soil, 40% sludge+60% soil and 20% sludge+80% soil. The maximum height increment and number of leaves were found in 20% sludge+80% soil while the highest basal diameter increment was recorded in the 100% sludge. Copper and iron were highly concentrated in the roots, zinc in the leaves, while aluminium was concentrated in both leaves and stems. Justicia gendarussa seems to have a high potential to absorb high amounts of Al and Fe in the leaves and roots. This species showed high translocation (TF) and low bioconcentration factor (BCF) in the contaminated soil. Justicia gendarussa was able to tolerate and accumulate a high concentration of heavy metals. Therefore, this species can be considered as a potential phytoremediator.Digital Object Identifier http://dx.doi.org/10.1080/09064710.2011.579994
机译:重金属是危险的环境污染物,可以在人体和动物体内转移和积累,从而引起脱氧核糖核酸(DNA)破坏和致癌作用。进行了玻璃温室实验,以评估 Justicia gendarussa Burm F.从纺织工业污泥中吸收重金属的潜力。 Justicia gendarussa 幼苗种植在六种不同的生长介质(土壤+污泥)上,包括:100%土壤,100%污泥,80%污泥+ 20%土壤,60%污泥+ 40%土壤,40%污泥+ 60%土壤和20%污泥+ 80%土壤。在20%的污泥+ 80%的土壤中发现了最大的高度增量和叶片数,而在100%的污泥中记录了最大的基径增量。铜和铁在根中高度集中,锌在叶中高度集中,而铝在叶和茎中都高度集中。 Genstius gendarussa 似乎具有吸收叶和根中大量Al和Fe的潜力。该物种在受污染的土壤中表现出高易位性(TF)和低生物富集因子(BCF)。 Justicia gendarussa 能够忍受并积累高浓度的重金属。因此,该物种可以被认为是潜在的植物修复剂。数字对象标识符http://dx.doi.org/10.1080/09064710.2011.579994

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