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Effects of a combined use of macronutrients nitrate, ammonium, and phosphate on cadmium absorption by Egeria densa Planch. and its phytoremediation applicability

机译:常规硝酸盐,铵和磷酸盐组合使用的效果对Egeria Densa Planch的镉吸收。 及其植物化修复适用性

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摘要

Phosphorus and nitrogen fertilizers represent a source of cadmium (Cd) which may be leached into aquatic systems. Macrophytes accumulate contaminants, and Egeria densa has been shown to grow in aquatic environments polluted with trace elements. In this study, Cd accumulation by E. densa exposed to two Cd treatments (3 and 5 mg L-1) was evaluated under increasing nutrient levels (NP as N-NO3 (-), N-NH4 (+), and P-PO4 (3-), in concentrations 5-, 10- and 100-fold higher (NP5, NP10 and NP100) than in the sampling site) to simulate different levels of eutrophication. Bioaccumulation factors and Cd recovery were calculated and effects on plants were evaluated based on chloroplastidic pigment concentrations (chlorophylls a and b, and carotenoids). We conclude that Cd accumulation by Egeria densa is positively influenced by increasing availability of N and P at the level of around NP10 and probably at a broader concentration range not defined in this study. A further increase in N and P, however, does not generate a significant increase in Cd accumulation. Chloroplastidic pigment concentrations were not linearly correlated with Cd accumulation and the NP10 experiment produced less damage to macrophyte when compared to NP5 and NP100 experiments. Under controlled conditions, it was possible to satisfactorily model Cd bioaccumulation over time, in order to provide essential data for E. densa use in phytoremediation processes. The Cd residence in the macrophyte tissue is increased in eutrophic environments, which puts at risk the whole food chain of the aquatic ecosystem, mainly the primary consumers.
机译:磷和氮肥代表镉(CD)的来源,其可以浸入水生系统中。 Macrophytes积累污染物,并且Egeria Densa已被证明在用微量元素污染的水生环境中生长。在该研究中,在增加营养水平的增加(N-NO 3( - ),N-NH4(+)和P-中,评价暴露于两种CD处理(3和5mg L-1)的E. Densa的CD累积。 PO4(3-),浓度为5-,10-和100倍(NP5,NP10和NP100),比在采样位点中)以模拟不同水平的富营养化。计算生物累积因子和CD回收,基于叶绿体颜料浓度(叶绿素A和B和类胡萝卜素)评估对植物的影响。我们得出结论,Egeria Densa的CD积累通过增加NP10左右的N和P的可用性积极影响,并且可能在本研究中未定义的更广泛的浓度范围内。然而,N和P的进一步增加不会产生CD累积的显着增加。与NP5和NP100实验相比,叶绿体颜料浓度与CD累积没有线性相关,NP10实验在巨级细胞产生较小的损伤。在受控条件下,可以令人满意地模拟CD BioAccumulatulatulation随着时间的推移,为了提供E. Densa在植物修复过程中的基本数据。富科菌组织中的CD住院在富营养化的环境中增加,其危险为水生生态系统的整个食物链,主要是主要消费者。

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  • 来源
    《Aquatic Ecology》 |2018年第1期|共14页
  • 作者单位

    Univ Estadual Norte Fluminense Ctr Biociencias &

    Biotecnol Lab Ciencias Ambientais Ave Alberto Lamego 2000 Parque California BR-28035200 Rio De Janeiro Brazil;

    Univ Estadual Norte Fluminense Ctr Biociencias &

    Biotecnol Lab Ciencias Ambientais Ave Alberto Lamego 2000 Parque California BR-28035200 Rio De Janeiro Brazil;

    Univ Estadual Norte Fluminense Ctr Biociencias &

    Biotecnol Lab Ciencias Ambientais Ave Alberto Lamego 2000 Parque California BR-28035200 Rio De Janeiro Brazil;

    Univ Estadual Norte Fluminense Ctr Biociencias &

    Biotecnol Lab Ciencias Ambientais Ave Alberto Lamego 2000 Parque California BR-28035200 Rio De Janeiro Brazil;

    Univ Estadual Norte Fluminense Ctr Biociencias &

    Biotecnol Lab Ciencias Ambientais Ave Alberto Lamego 2000 Parque California BR-28035200 Rio De Janeiro Brazil;

    Univ Estadual Norte Fluminense Ctr Biociencias &

    Biotecnol Lab Ciencias Ambientais Ave Alberto Lamego 2000 Parque California BR-28035200 Rio De Janeiro Brazil;

    Univ Estadual Norte Fluminense Ctr Biociencias &

    Biotecnol Lab Ciencias Ambientais Ave Alberto Lamego 2000 Parque California BR-28035200 Rio De Janeiro Brazil;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水生生物学;
  • 关键词

    Cadmium; Chloroplastidic pigments; Eutrophication; Macrophyte; Phytoremediation;

    机译:镉;叶绿体颜料;富营养化;麦细胞;植物修复;
  • 入库时间 2022-08-20 01:18:37

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