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Soil structure quality indicators and their limit values

机译:土壤结构质量指标及其极限值

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摘要

Most soil functions, such as food production, carbon and nutrient cycling or water regulation and filtration strongly depend on soil structure quality (SSQ). But SSQ is increasingly threatened by compaction, carbon loss and erosion. SSQ should be protected by environmental regulations, however, reliable and easy methods for SSQ assessment are still missing. The aim of this study was to define a classification scheme and its indicators for soil structure protection regulation. Therefore, the physical properties of soil samples were determined with shrinkage analysis and their structure quality was scored with CoreVESS to provide a classification scheme independent from the indicators. We collected 185 undisturbed samples from the A horizon of Cambi-Luvisols across western Switzerland. CoreVESS score (Sq) 2 was used to identify the target value corresponding to good structure quality. Sq 3 was used to identify the trigger value, i.e. the limit between good and poor SSQ. Sq 4 was used to identify the remediation value. We found that structural porosity and gravimetric air content at -100 hPa (A(-100)) determined on undisturbed samples equilibrated free to swell in the laboratory were the best suited parameter to assess SSQ. They were correlated to SOC for soils with good SSQ, but not for soils with poor SSQ. As SOC was highly correlated to gravimetric water content at -100 hPa (W-100), it was possible to approximate SOC by W-100 in order to simplify the method for application. A(-100) and W-100 are easy and inexpensive to determine and are therefore proposed as indicators. The limit values of A(-100) were identified as following: target is 0.023 + 0.288W(-100) cm(3)g(-1), trigger is 0.068 cm(3)g(-1) and remediation is 0.045 cm(3)g(-1). These values were designed to be useful to the Swiss environmental law. They apply to the Cambi-luvisol A horizons, and their applicability to subsoil or other soil types should be further studied.
机译:大多数土壤功能,例如食品生产,碳和养分循环或水的调节和过滤,在很大程度上取决于土壤结构质量(SSQ)。但是SSQ越来越受到压实,碳损失和侵蚀的威胁。 SSQ应该受到环境法规的保护,但是,仍然缺少可靠且简便的SSQ评估方法。这项研究的目的是为土壤结构保护法规定义分类方案及其指标。因此,通过收缩分析确定土壤样品的物理性质,并使用CoreVESS对它们的结构质量进行评分,以提供独立于指标的分类方案。我们从瑞士西部的Cambi-Luvisols A地平线收集了185个不受干扰的样本。 CoreVESS分数(Sq)2用于识别与良好结构质量相对应的目标值。 Sq 3用于标识触发值,即SSQ良好与不良之间的界限。使用平方4来确定修复值。我们发现,在实验室自由平衡溶胀的未扰动样品上确定的-100 hPa(A(-100))的结构孔隙率和重量空气含量是评估SSQ的最合适参数。 SSQ良好的土壤与SOC相关,SSQ较差的土壤与SOC相关。由于SOC与-100 hPa(W-100)的重量水含量高度相关,因此有可能通过W-100近似SOC,以简化应用方法。 A(-100)和W-100易于确定且价格便宜,因此建议用作指标。 A(-100)的极限值确定如下:目标为0.023 + 0.288W(-100)cm(3)g(-1),触发条件为0.068 cm(3)g(-1),补救条件为0.045厘米(3)克(-1)。这些值旨在对瑞士环境法有用。它们适用于Cambi-luvisol A地层,应进一步研究其在地下土壤或其他土壤类型中的适用性。

著录项

  • 来源
    《Ecological indicators》 |2019年第9期|686-694|共9页
  • 作者单位

    Swiss Fed Res Stn Agroscope, Soil Fertil & Soil Protect Grp, Dept Nat Resources & Agr, Reckenholzstr 191, CH-8046 Zurich, Switzerland;

    Swiss Fed Res Stn Agroscope, Soil Fertil & Soil Protect Grp, Dept Nat Resources & Agr, Reckenholzstr 191, CH-8046 Zurich, Switzerland;

    Swiss Fed Inst Technol, Inst Terr Ecosyst, CH-8092 Zurich, Switzerland;

    Univ Appl Sci Western Switzerland Hepia, Soils & Substrates Grp, Inst Land Nature Environm, Route Presinge 150, CH-1254 Geneva, Switzerland;

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

    Soil health; Soil physical properties; Air content; Porosity; VESS; Visual examination;

    机译:土壤健康;土壤物理性质;空气含量;孔隙率;VESS;外观检查;

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