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首页> 外文期刊>Soil & Tillage Research >Tillage effects on soil carbon fractions in the Sanjiang Plain, Northeast China.
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Tillage effects on soil carbon fractions in the Sanjiang Plain, Northeast China.

机译:耕作对三江平原土壤碳含量的影响。

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摘要

Soil organic carbon (SOC) is important for crop production, improving soil quality, and regulating global C cycling. The objective of this study was to estimate C fraction dynamics under the influence of tillage in the Sanjiang Plain of Northeast China. Rate of decline in the free light fraction (FLF) C concentration was much greater than that of intra-aggregate light fraction (ILF) C, heavy fraction (HF) C and SOC during the initial 5 years of cultivation (p<0.05). Cultivation led to accumulation in HF-C compared to the other fractions. The contribution of different fractions to respiration varied with cultivation. In native marshland, HF-C, FLF-C and ILF-C were responsible for 33%, 63% and 4% of the soil respiration, respectively. In soil cultivated for 1 or 3 years, contributions of combined FLF-C and ILF-C to respiration were higher than HF-C. However, after 5 years of cultivation, contributions of HF-C to respiration (55%) were higher than that of combined FLF-C and ILF-C (45%). In soil cultivated for 35 years, the HF-C was responsible for almost 69% of the respiration. Therefore, C dynamics in the soil are controlled by the behaviour of LF-C in the natural soil and short-term (<5 years) cultivated soils. In long-term (>5 years) cultivated soils, C dynamics are controlled by the behaviour of HF-C..
机译:土壤有机碳(SOC)对于作物生产,改善土壤质量和调节全球碳循环很重要。这项研究的目的是估算在中国东北三江平原耕作影响下的碳组分动态。在培养的最初5年中,游离轻质分数(FLF)C浓度的下降速率远大于集内轻质分数(ILF)C,重质分数(HF)C和SOC的下降速率(p <0.05)。与其他馏分相比,培养导致HF-C积累。不同部分对呼吸的贡献随耕种而变化。在原生沼泽地,HF-C,FLF-C和ILF-C分别占土壤呼吸的33%,63%和4%。在耕种了1年或3年的土壤中,FLF-C和ILF-C组合对呼吸作用的贡献高于HF-C。然而,经过5年的耕种,HF-C对呼吸的贡献(55%)高于FLF-C和ILF-C组合(45%)。在种植了35年的土壤中,HF-C几乎占据了呼吸的69%。因此,土壤中的碳动力学受天然土壤和短期(<5年)耕作土壤中LF-C的行为控制。在长期(> 5年)的耕作土壤中,碳动力学受HF-C行为的控制。

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