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Technogenic soils (Technosols) developed from mine spoils containing Fe sulphides: Microbiological activity as an indicator of soil development following land reclamation

机译:从矿物质破坏含有Fe硫酸的粪便(Technosols):微生物活性作为土地填海后土壤发展的指标

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摘要

Restoration of ecological functions by reclamation of post-mining areas stimulates soil-formation processes and initiates biological activity on the surfaces of disposal sites. The purpose of this investigation was to study the relationships between soil properties, microbiological activity and diversity in Technosols 45 years following land reclamation. The study area was located in the vicinity of the former Fe sulphide and uranium mine in Rudki village (Holy Cross Mts., Poland). The soils developed from tailings containing Fe sulphides (profile R1 and R2) and Fe sulphide and dolomite-bearing post-flotation sludge covered with loamy material (profile R3) were studied. Soil properties and enzyme (dehydrogenase, arylsulphatase, beta-glucosidase, urease) activities, respiration activity (RA) and total microbial counts (TMC) were determined, as well as molecular analyses were performed. The most important soil properties influencing enzyme activities, RA and TMC were pH and soil salinity. Biological parameters were also dependent on TOC, TN, exchangeable K and available P contents. Enzyme activity, RA and TMC were significantly lower in strongly acidic and saline profile R1 than in profiles R2 and R3, which represent areas where land reclamation was successful. Moreover, a decrease of enzyme activities, RA and TMC were observed with increasing depth of soil profiles. The lower activity of arylsulphatase, beta-glucosidase and RA in A horizon of profile R3 in comparison with similar horizon in profile R2 may reflect the pollution of R3 topsoil by trace elements. Molecular analysis revealed that Bacillus genus predominate in the studied profiles. Soil properties (particularly pH) that are a repercussion of reclamation works seem to be the main variables conditioning biodiversity at the bacterial strains and species level. The obtained results indicated that enzyme activity, RA and TMC are sensitive indicators of microbiological activity and can be a measure in the assesment of soil biological activity following land reclamation.
机译:通过垦区恢复恢复生态功能刺激土壤形成过程,并在处理场所的表面上启动生物活性。该调查的目的是研究土壤填海45年来的土壤性质,微生物活性和多样性之间的关系。该研究区位于鲁基村(Rudki Village(Holy Cross Mts)的前Fe硫化物和铀矿附近。从含有Fe硫化物(型材R1和R2)和Fe硫化物和白细胞携带含有橡胶材料(型材R3)的硫化物和白细胞携带的浮动后浮选污泥的土壤。测定土壤性质和酶(脱氢酶,芳基硫酸酯,β-葡糖苷酶,脲酶),呼吸活性(RA)和总微生物计数(TMC),以及分子分析。影响酶活性的最重要的土壤性质,RA和TMC是pH和土壤盐度。生物学参数也取决于TOC,TN,可更换的K和可用的P含量。酶活性,Ra和TMC在型曲线R2和R3中的强酸性和盐水型R1显着较低,这代表了土地回收成功的区域。此外,随着土壤剖面的深度观察到酶活性,Ra和TMC的降低。与型材R2相似地平线的概况R3的地平线中芳基硫酸盐酶,β-葡萄糖苷酶和Ra的较低活性可以反映通过微量元素的R3甲虫的污染。分子分析显示,芽孢杆菌属占据研究的曲线。土壤性质(特别是pH)是对填海工程的影响似乎是细菌菌株和物种水平的主要变量调节生物多样性。所得结果表明,酶活性,Ra和TMC是微生物活性的敏感指标,并且可以是土壤填海后土壤生物活性的衡量标准。

著录项

  • 来源
    《Applied Soil Ecology》 |2020年第1期|共12页
  • 作者单位

    Warsaw Univ Life Sci SGGW Inst Agr Dept Soil Sci Nowoursynowska 159 Str Bldg 37 PL-02776 Warsaw Poland;

    John Paul II Catholic Univ Lublin Fac Sci &

    Hlth Dept Biol &

    Biotechnol Microorganisms Konstantynow 1i Str PL-20708 Lublin Poland;

    Agr Univ Krakow Fac Forestry Dept Ecol &

    Silviculture 29 Listopada 46 Str PL-31425 Krakow Poland;

    John Paul II Catholic Univ Lublin Fac Sci &

    Hlth Dept Biol &

    Biotechnol Microorganisms Konstantynow 1i Str PL-20708 Lublin Poland;

    John Paul II Catholic Univ Lublin Fac Sci &

    Hlth Dept Biol &

    Biotechnol Microorganisms Konstantynow 1i Str PL-20708 Lublin Poland;

    Warsaw Univ Life Sci SGGW Inst Agr Dept Soil Sci Nowoursynowska 159 Str Bldg 37 PL-02776 Warsaw Poland;

    Warsaw Univ Life Sci SGGW Inst Agr Dept Soil Sci Nowoursynowska 159 Str Bldg 37 PL-02776 Warsaw Poland;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 土壤生态学;
  • 关键词

    Technosols; Mine wastes; Land restoration; Enzyme activity; Microbial respiration; Bacillus sp;

    机译:Technosols;矿山废物;土地恢复;酶活性;微生物呼吸;芽孢杆菌SP;

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