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August 16, 2026Eurasian Soil Science

Application of Macrokinetic Model of Biological Growth for Developing Soil Quality Standards

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Authors

MEM. V. EvdokimovaAYA. S. Yakovlev

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Overview

Bioindication modeling study demonstrates dose-response thresholds in mining-polluted soils, suggesting an effective framework for national soil quality standards.

Key Points

  • To establish a scientific framework for setting soil quality standards in areas affected by tin-ore processing waste using biological growth macrokinetics and integrated soil condition indicators.
  • Assessed dose-effect relationships across contaminated soils using bioindication markers, including soil respiration intensity, soil microbial biomass, and vegetation indices.
  • Approximated soil condition response functions using a macrokinetic model of biological growth to identify specific transition thresholds.
  • Divided the full range of soil condition variation into five distinct soil quality categories based on mathematical threshold points in biological growth curves.
  • Established boundary values and acceptable background deviation limits for copper (Cu), arsenic (As), and sulfur (S) in podzols under diverse land uses.

Cite This Study

Evdokimova et al. (2026) studied this question.

synapsesocial.com/papers/6a817a60f2fb91fc834ae18bhttps://doi.org/10.1134/s1064229326600089
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