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Phytoassessment of Vetiver grass enhanced with EDTA soil amendment grown in single and mixed heavy metal-contaminated soil

机译:EDTA土壤改良剂在单一和混合重金属污染土壤中生长的香根草草的植物评价

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Over the years, ethylene-diamine-tetra-acetate (EDTA) has been widely used for many purposes. However, there are inadequate phytoassessment studies conducted using EDTA in Vetiver grass. Hence, this study evaluates the phytoassessment (growth performance, accumulation trends, and proficiency of metal uptake) of Vetiver grass, Vetiveria zizanioides (Linn.) Nash in both single and mixed heavy metal (Cd, Pb, Cu, and Zn)disodium EDTA-enhanced contaminated soil. The plant growth, metal accumulation, and overall efficiency of metal uptake by different plant parts (lower root, upper root, lower tiller, and upper tiller) were thoroughly examined. The relative growth performance, metal tolerance, and phytoassessment of heavy metal in roots and tillers of Vetiver grass were examined. Metals in plants were measured using the flame atomic absorption spectrometry (F-AAS) after acid digestion. The root-tiller (R/T) ratio, biological concentration factor (BCF), biological accumulation coefficient (BAC), tolerance index (TI), translocation factor (TF), and metal uptake efficacy were used to estimate the potential of metal accumulation and translocation in Vetiver grass. All accumulation of heavy metals were significantly higher (p < 0.05) in both lower and upper roots and tillers of Vetiver grass for Cd + Pb + Cu + Zn + EDTA treatments as compared with the control. The single Zn + EDTA treatment accumulated the highest overall total amount of Zn (8068 +/- 407 mg/kg) while the highest accumulation for Cu (1977 +/- 293 mg/kg) and Pb (1096 +/- 75 mg/kg) were recorded in the mixed Cd + Pb + Cu + Zn + EDTA treatment, respectively. Generally, the overall heavy metal accumulation trends of Vetiver grass were in the order of Zn > Cu > Pb Cd for all treatments. Furthermore, both upper roots and tillers of Vetiver grass recorded high tendency of accumulation for appreciably greater amounts of all heavy metals, regardless of single and/or mixed metal treatments. Thus, Vetiver grass can be recommended as a potential phytoextractor for all types of heavy metals, whereby its tillers will act as the sink for heavy metal accumulation in the presence of EDTA for all treatments.
机译:多年来,乙二胺四乙酸酯(EDTA)已被广泛用于许多目的。但是,在香根草中使用EDTA进行的植物评估研究不足。因此,本研究评估了单一和混合重金属(Cd,Pb,Cu和Zn)二元EDTA EDTA中香根草,香根草Nash的植物学评估(生长性能,累积趋势和金属吸收能力)。 -增强了被污染的土壤。彻底检查了植物生长,金属积累以及不同植物部位(下根,上根,下分till和上分till)对金属吸收的总体效率。研究了香根草根和分till的相对生长性能,金属耐性和重金属含量的植物学评价。酸消解后,使用火焰原子吸收光谱法(F-AAS)测量植物中的金属。分-(R / T)比,生物富集因子(BCF),生物累积系数(BAC),耐受指数(TI),转运因子(TF)和金属吸收功效被用来估计金属累积的潜力和香根草的易位。与对照相比,Cd + Pb + Cu + Zn + EDTA处理的香根草的上下根和分till中所有重金属的积累均显着较高(p <0.05)。单一Zn + EDTA处理累积的锌总量最高(8068 +/- 407 mg / kg),而Cu(1977 +/- 293 mg / kg)和Pb(1096 +/- 75 mg / kg)最高。分别记录在混合Cd + Pb + Cu + Zn + EDTA处理中。通常,所有处理中香根草的总体重金属积累趋势为锌>铜>铅>镉。此外,香根草的上根和分till均记录了较高的积累趋势,对于所有重金属的含量都明显较高,无论使用单金属和/或混合金属处理如何。因此,香根草可被推荐用作所有类型重金属的潜在植物提取物,因此在所有处理中,在EDTA存在下,其分till将充当重金属积累的汇。

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