Сравнение методов
Просматривайте выбранные методы рядом; строки с различиями подсвечены.
| Катионообменная емкость× | Кривая влажности почвы× | |
|---|---|---|
| Область | Агрономия | Агрономия |
| Семейство | Process / pipeline | Process / pipeline |
| Год появления≠ | 1920-1982 | 1956-1980 |
| Автор метода≠ | Georg Wiegner, Heinrich Rotter, Melvin E. Sumner | Willard Robert Gardner, Rollin H. Brooks, Arthur T. Corey |
| Тип≠ | Analytical soil characterization method | Empirical soil water retention model |
| Основополагающий источник≠ | Thomas, G. W. (1982). Exchangeable cations. In A. L. Page, R. H. Miller, & D. R. Keeney (Eds.), Methods of soil analysis. Part 2: Chemical and microbiological properties (2nd ed., pp. 159-165). American Society of Agronomy. link ↗ | Gardner, W. R. (1956). Representation of soil aggregate-size distribution by a logarithmic-normal distribution. Soil Science Society of America Journal, 20(2), 151-153. DOI ↗ |
| Другие названия≠ | CEC, Soil nutrient retention, Base saturation | Water Retention Curve, pF Curve, Characteristic Curve, SWRC |
| Связанные | 3 | 3 |
| Сводка≠ | Cation exchange capacity (CEC) is a fundamental soil property that measures the soil's ability to hold and release positively charged nutrient ions (cations: K⁺, Ca²⁺, Mg²⁺, Na⁺, H⁺, Al³⁺) in forms available to plant roots. CEC reflects the amount and type of clay minerals and organic matter in the soil—compounds with negatively charged surface sites that attract and temporarily bind cations. High CEC soils retain nutrients longer and require less frequent fertilization; low CEC soils lose nutrients rapidly through leaching. | The soil moisture curve (or soil water retention curve, SWRC) describes the relationship between soil water content and soil matric potential (water tension). It characterizes how tightly water is bound in pores of different sizes: large pores drain at low tensions (wet soils), while smaller pores retain water at high tensions (dry soils). Quantifying this relationship is essential for water balance modeling, unsaturated flow prediction, and assessing plant-available water. |
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