土壤科学
环境科学
土壤水分
灵敏度(控制系统)
土壤健康
土壤质量
降级(电信)
土壤退化
土壤有机质
计算机科学
工程类
电子工程
电信
作者
Yakov Kuzyakov,Anna Gunina,Kazem Zamanian,Tian Jing,Yu Luo,Xingliang Xu,Anna Yudina,Humberto Aponte,Hattan A. Alharbi,Lilit Ovsepyan,I. N. Kurganova,Tida Ge,Thomas Guillaume
标识
DOI:10.15302/j-fase-2020338
摘要
Assessment of soil health requires complex evaluation of properties and functions responsible for a broad range of ecosystem services. Numerous soil quality indices (SQI) have been suggested for the evaluation of specific groups of soil functions, but comparison of various SQI is impossible because they are based on a combination of specific soil properties. To avoid this problem, we suggest an SQI-area approach based on the comparison of the areas on a radar diagram of a combination of chemical, biological and physical properties. The new approach is independent of the SQI principle and allows rapid and simple comparison of parameter groups and soils. Another approach analyzing the resistance and sensitivity of properties to degradation is suggested for a detailed evaluation of soil health. The resistance and sensitivity of soil properties are determined through comparison with the decrease of soil organic carbon (SOC) as a universal parameter responsible for many functions. The SQI-area and resistance/sensitivity approaches were tested based on the recovery of Phaeozems and Chernozems chronosequences after the abandonment of agricultural soils. Both the SQI-area and the resistance/sensitivity approaches are useful for basic and applied research, and for decision-makers to evaluate land-use practices and measure the degree of soil degradation.
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