Soil Organic Carbon Pools After 12 Years in No‐Till Dryland Agroecosystems

农学 农业生态系统 土壤碳 种植制度 环境科学 总有机碳 种植 生物量(生态学) 多年生植物 粟粒圆锥花序 土壤水分 免耕农业 化学 土壤科学 生物 生态学 作物 土壤肥力 农业 环境化学
作者
Lucretia A. Sherrod,G. A. Peterson,D. G. Westfall,Lajpat R. Ahuja
出处
期刊:Soil Science Society of America Journal [Wiley]
卷期号:69 (5): 1600-1608 被引量:123
标识
DOI:10.2136/sssaj2003.0266
摘要

Previous studies of no‐till management in the Great Plains have shown that increased cropping intensity increased soil organic carbon (SOC). The objectives of this study were to (i) determine which soil C pools (active, slow, and passive) were impacted by cropping intensity after 12 yr of no‐till across potential evapotranspiration (PET) and slope position gradients; (ii) relate C pool sizes to the levels found in total SOC; and (iii) determine C pool sizes relative to C levels found in a grass treatment (G). Cropping systems were wheat ( Triticum aestivum )‐fallow (WF), wheat‐corn ( Zea mays L.)‐fallow (WCF), wheat‐corn‐millet ( Panicum miliaceum )‐fallow (WCMF), and continuous cropping (CC) at three PET sites in Colorado. Active C (Soil microbial biomass C [SMBC]); and slow pool C (particulate organic matter C; POM‐C) increased as cropping intensity increased, dependent on PET. Passive C (mineral associated organic C [MAOC]) was strongly influenced by a site‐by‐slope position interaction but not by cropping system. Toeslope soils had 35% higher POM‐C compared with summits and sideslopes. All C pools were strongly correlated with total SOC, with the variability decreasing as C pool turnover time increased. Carbon pool sizes in cropping systems relative to levels found in G were independently influenced by cropping system. The highest were found in the CC system, which had 91, 78, and 90% of the amounts of C found in the perennial G system in the active, slow, and passive C pools, respectively.
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