首页> 外文期刊>Applied Soil Ecology >Soil carbon dynamics as affected by long-term contrasting cropping systems and tillages under semiarid Mediterranean climate.
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Soil carbon dynamics as affected by long-term contrasting cropping systems and tillages under semiarid Mediterranean climate.

机译:在半干旱地中海气候下,土壤碳动态受长期不同的耕作制度和耕作的影响。

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摘要

In a dryland Mediterranean agrosystem (Sicily, Italy) a comparative study was carried out among two crop systems (wheat/wheat and wheat/bean) after 19 years under three most used tillage managements (conventional, dual layer and no-tillage), in order to ascertain the effects of those experimental factors, single and combined, on various soil organic C pools (total and extractable organic C, microbial biomass C, basal respiration). Field CO2 fluxes from soil, throughout a year, were also determined. Moreover, C input and output were assessed, as well as microbial and metabolic quotients. Tillage management more than cropping system affected the soil organic C stored in the first 15 cm of soil. After 19 years, no-tillage caused a 3.6 Mg ha-1 increase of C content in wheat/faba rotation while of 5.6 Mg ha-1 in wheat monoculture. The higher soil total organic C content in wheat monoculture was ascribed to a lower quality of residues supplied (higher both C/N ratio and acid detergent fibre (ADF) content). Moreover, wheat/bean rotation increased soil microbial biomass C, basal respiration and microbial quotient, thus suggesting that crop rotation more than tillage management was the driving factor in improving soil biochemical indicators.
机译:在一个干旱的地中海农业系统(意大利西西里岛)中,在三种耕作管理(常规,双层和免耕)下19年后,对两种作物系统(小麦/小麦和小麦/豆)进行了比较研究。为了确定这些实验因素(单一的和组合的)对各种土壤有机碳库(总有机碳和可提取有机碳,微生物生物量碳,基础呼吸)的影响。还确定了一年中土壤中的CO 2 通量。此外,评估了碳的输入和输出以及微生物和代谢商。除耕作制度外,耕作管理对土壤中最初15 cm的土壤有机碳的影响更大。 19年后,免耕导致小麦/农作物轮作中的C含量增加3.6 Mg ha -1 ,而小麦单作中的C含量增加5.6 Mg ha -1 。小麦单一栽培中较高的土壤总有机碳含量归因于所提供的残留物质量较低(C / N比和酸性洗涤剂纤维(ADF)含量均较高)。此外,小麦/大豆轮作增加了土壤微生物量碳,基础呼吸和微生物商,因此表明轮作大于耕作管理是改善土壤生化指标的驱动因素。

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