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首页> 外文期刊>Water, air and soil pollution >Phytoremediation Potentials of Sunflowers (Tithonia diversifolia and Helianthus annuus) for Metals in Soils Contaminated with Zinc and Lead Nitrates
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Phytoremediation Potentials of Sunflowers (Tithonia diversifolia and Helianthus annuus) for Metals in Soils Contaminated with Zinc and Lead Nitrates

机译:向日葵(Tithonia diversifolia和Helianthus annuus)对锌和硝酸铅污染的土壤中金属的植物修复潜力

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摘要

Two species of sunflower, i.e., Tithonia diversifolia and Helianthus annuus, were investigated for their potential to remove heavy metals from contaminated soils. Dried and mature T. diversifolia (Mexican flower) seeds were collected along roadsides, while H. annuus (sunflower) seeds were sourced from the Department of PBST, University of Agriculture Abeokuta, Nigeria. The contaminants were added as lead nitrate (Pb (NO_3)_2) and zinc nitrate (Zn (NO_3)_2) at 400 mg/kg which represents upper critical soil concentration for both Pb and Zn. The results indicated that T. diversifolia mopped up substantial concentrations of Pb in the above-ground biomass compared to concentrations in the roots. The concentrations in the leaf compartment were 87.3, 71.3, and 71.5 mg/kg at 4, 6, and 8 weeks after planting (AP), respectively. In roots, it was 99.4 mg/kg, 97.4 mg/g, and 77.7 mg/kg while 79.3,rn77.8, and 60.7 mg/kg were observed in the stems at 4, 6, and 8 weeks AP, respectively. Observations with H. annuus followed the pattern found with T. diversifolia, showing significant (p<0.05) accumulation of Pb in the above-ground biomass. Results obtained from Zn contaminated soils showed significant (p<0.05) accumulation in the above-ground compartments of T. diversifolia and H. annuus compared with root. However, the highest accumulation of Zn was observed in the leaf. The translocation factor and enrichment coefficient of Pb and Zn with these plant species are greater than 1, indicating that these metals moved more easily in these plants. However, this result also showed that the translocation of Zn from root to the shoot of the two plants was higher than Pb. In conclusion, this experiment showed that these plants accumulated substantial Pb and Zn in their shoots (leaf and stem) at 4 weeks AP which diminished with time. This implies that the efficiency of these plants in cleaning the contaminated soils was at the early stage of their growth.
机译:研究了两种向日葵,即Tithonia diversifolia和Helianthus annuus,它们具有从受污染的土壤中去除重金属的潜力。沿路边收集了干燥成熟的T. diversifolia(墨西哥花)种子,而H. annuus(向日葵)种子则来自尼日利亚农业大学的PBST系。分别以400 mg / kg的硝酸铅(Pb(NO_3)_2)和硝酸锌(Zn(NO_3)_2)的形式添加污染物,这代表了Pb和Zn的最高临界土壤浓度。结果表明,与根中的浓度相比,顶叶锥虫清除了地上生物量中的大量铅。种植后第4、6和8周,叶室内的浓度分别为87.3、71.3和71.5 mg / kg。在根中,其为AP的第4、6和8周分别为99.4 mg / kg,97.4 mg / g和77.7 mg / kg,而茎中分别观察到79.3,rn77.8和60.7 mg / kg。对H. annuus的观察遵循了T. diversifolia发现的模式,显示了地上生物量中Pb的显着(p <0.05)积累。从锌污染的土壤中获得的结果表明,与根部相比,杂色菊和黄花菊的地上部分明显积聚(p <0.05)。然而,在叶片中观察到锌的最高积累。这些植物物种中Pb和Zn的转运因子和富集系数大于1,表明这些金属在这些植物中更容易移动。但是,该结果还表明,Zn从两株植物的根部向芽的转运高于Pb。总之,该实验表明,这些植物在AP的第4周时其茎(叶和茎)中积累了大量Pb和Zn,随时间的推移逐渐减少。这意味着这些植物清洁受污染土壤的效率处于其生长的早期阶段。

著录项

  • 来源
    《Water, air and soil pollution》 |2010年第4期|195-201|共7页
  • 作者单位

    Department of Soil Science and Land Management, University of Agriculture, P.M. B 2240, Abeokuta 110001 Ogun-State, Nigeria;

    Department of Plant Physiology and Crop Production, University of Agriculture, P.M. B 2240, Abeokuta 110001 Ogun-State, Nigeria;

    Department of Soil Science and Land Management, University of Agriculture, P.M. B 2240, Abeokuta 110001 Ogun-State, Nigeria;

    Department of Soil Science and Land Management, University of Agriculture, P.M. B 2240, Abeokuta 110001 Ogun-State, Nigeria;

    Department of Soil Science and Land Management, University of Agriculture, P.M. B 2240, Abeokuta 110001 Ogun-State, Nigeria;

    Department of Soil Science and Land Management, University of Agriculture, P.M. B 2240, Abeokuta 110001 Ogun-State, Nigeria;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    phytoremediation; heavy metals; sunflowers; translocation factor; enrichment coefficient;

    机译:植物修复;重金属;向日葵易位因子富集系数;

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