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양이온 교환 용량×디지털 토양 매핑×
분야농학농학
계열Process / pipelineProcess / pipeline
기원 연도1920-1982Late 1990s – early 2000s (formalised ~2003)
창시자Georg Wiegner, Heinrich Rotter, Melvin E. SumnerMultiple contributors; foundational framework by Alex McBratney and colleagues
유형Analytical soil characterization methodSpatial prediction and mapping pipeline
원전Thomas, 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 ↗McBratney, A. B., Mendonca Santos, M. L., & Minasny, B. (2003). On digital soil mapping. Geoderma, 117(1–2), 3–52. DOI ↗
별칭CEC, Soil nutrient retention, Base saturationDSM, predictive soil mapping, quantitative soil-landscape modelling, geostatistical soil mapping
관련31
요약Cation 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.Digital Soil Mapping (DSM) is a quantitative, data-driven pipeline that predicts the spatial distribution of soil properties and classes across a landscape by statistically linking field observations to environmental covariates — terrain attributes, remote sensing imagery, climate surfaces, and geology layers. The approach replaces or augments traditional expert-drawn soil surveys with reproducible, spatially explicit models, and is applied in agronomy, land management, food security, and environmental assessment.
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ScholarGate방법 비교: Cation Exchange Capacity · Digital Soil Mapping. 2026-06-18에 다음에서 검색함: https://scholargate.app/ko/compare