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Ecotoxicity of chlorophenolic compounds depending on soil characteristics

机译:氯酚类化合物的生态毒性取决于土壤特性

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摘要

Three chlorophenolic compounds (2-chlorophenol, 2,4,6-trichlorophenol, and pentachlorophenol) were tested to assess their effects on two soils with different properties: a granitic soil (Haplic Arenosol) and a calcareous one (Calcaric Regosol). Different concentrations of the pollutants (ranging from 0.001 to 10,000 mg kg~(-1) soil, d.w.) were assayed for their effects on soil microbial activity and composition, using manometric respirometry and PCR-DGGE analysis, respectively. Other ecotoxicity tests such as lactuca sativa seedling growth in the contaminated soils and algal growth inhibition (Pseudokirschneriella subcapitata) in their water extracts were done. The behaviour of the pollutants in the soils with respect to biodegradability and volatilization was also investigated. In the Haplic Arenosol, volatilization is the main process affecting 2-chlorophenol. Degradation and fixation of this compound in the soil matrix are favored in the Calcaric Regosol. This is the least toxic pollutant assayed. For 2,4,6-trichlorophenol, the soil pH is a critical parameter in the toxicity assays due to the neutral pKa of the compound. It is toxic in the soil microbial activity assay, but some recovery of the biotic processes can be observed, particularly in the Calcaric Regosol. This compound is more toxic in the Haplic Arenosol than in the Calcaric Regosol. Pentachlorophenol is ionized in both soils due to its low pKa, increasing its water solubility. It is highly toxic to the soil microbiota, thus inhibiting respiration, biodegradation and other biotic dissipation processes. Plant and alga tests, were more sensitive than soil microbial tests, except for PCP. The microbial populations tend to show changes at lower concentrations than the microbial activity. Some soil types (abundant in the Mediterranean area), with alkaline pH and fine textures could show higher level of ecotoxicity for ionizable organic pollutants than the soil type recommended by the OECD in ecotoxicity testing.
机译:测试了三种氯酚化合物(2-氯酚,2,4,6-三氯酚和五氯酚),以评估它们对两种性质不同的土壤的影响:花岗岩土壤(Haplic Arenosol)和钙质土壤(Calcaric Regosol)。使用测压呼吸法和PCR-DGGE分析法分别测定了不同浓度的污染物(土壤的0.001至10,000 mg kg〜(-1),d.w。)对土壤微生物活性和组成的影响。还进行了其他生态毒性测试,例如受污染土壤中的紫草幼苗生长以及水提取物中的藻类生长抑制作用(Pseudokirschneriella subcapitata)。还研究了土壤中污染物在生物降解性和挥发性方面的行为。在Haplic Arenosol中,挥发是影响2-氯苯酚的主要过程。该化合物在土壤基质中的降解和固定在石灰岩雷哥索中是有利的。这是测定出的最低毒性污染物。对于2,4,6-三氯苯酚,由于化合物的中性pKa,土壤pH是毒性测定中的关键参数。在土壤微生物活性测定中它是有毒的,但是可以观察到生物过程的某些恢复,尤其是在钙生雷哥sol中。该化合物在Haplic Arenosol中的毒性比在Calcaric Regosol中更强。五氯苯酚的pKa低,在两种土壤中都被电离,从而增加了其水溶性。它对土壤微生物有剧毒,因此抑制了呼吸,生物降解和其他生物耗散过程。除PCP外,植物和藻类测试比土壤微生物测试更敏感。微生物种群往往在比微生物活性低的浓度下显示出变化。与经合组织在生态毒性测试中建议的土壤类型相比,某些具有碱性pH值和良好质地的土壤类型(在地中海地区丰富)对可电离的有机污染物表现出较高的生态毒性。

著录项

  • 来源
    《The Science of the Total Environment》 |2011年第14期|p.2707-2716|共10页
  • 作者单位

    Laboratori d'Edafologia, Facultat de Farmdcia, Universitat de Barcelona, Avda Joan XXIII s, Barcelona 08028, Spain;

    Laboratori d'Edafologia, Facultat de Farmdcia, Universitat de Barcelona, Avda Joan XXIII s, Barcelona 08028, Spain;

    Croup of Molecular Mkrobiat Ecology, Institute of Aquatic Ecology, University ofGirona, Avda Montilivi s, Cirona J7071, Spain;

    Croup of Molecular Mkrobiat Ecology, Institute of Aquatic Ecology, University ofGirona, Avda Montilivi s, Cirona J7071, Spain;

    Croup of Molecular Mkrobiat Ecology, Institute of Aquatic Ecology, University ofGirona, Avda Montilivi s, Cirona J7071, Spain;

    Laboratori d'Edafologia, Facultat de Farmdcia, Universitat de Barcelona, Avda Joan XXIII s, Barcelona 08028, Spain;

    Laboratori d'Edafologia, Facultat de Farmdcia, Universitat de Barcelona, Avda Joan XXIII s, Barcelona 08028, Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    chlorophenol; contaminated soil; ecotoxicity; respirometry; seed emergence and growth; alga growth;

    机译:氯酚;受污染的土壤;生态毒性呼吸测定法种子出苗和生长;藻类生长;
  • 入库时间 2022-08-17 13:55:23

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