大气CO2浓度升高和氮肥水平对麦田土壤有机碳更新的影响
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国家重点基础研究发展规划项目(CCDMCTE-2002CB412502)、中国科学院知识创新重要方向项目(KZCX3-SW-440)、国家自然科学基金重点基金项目(40231003、40110817、40271061)联合资助


Effect of elevated atmospheric pCO2 and nitrogen level on replacement rate of soil organic carbon in winter wheat field
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    摘要:

    依托FACE(Free air carbon dioxide enrichment)技术平台,采用稳定13C同位素法,通过将C3作物小麦种植于长期单作玉米的C4土壤上,研究了大气CO2浓度升高和不同氮肥水平对水稻- 小麦轮作制中冬小麦生长季土壤有机碳更新的影响。结果表明,种植一季小麦后土壤有机碳的δ13C值显著降低,小麦生长改变了土壤有机碳的组成,大气CO2浓度增加促进作物向土壤中输入更多的碳。大气CO2浓度升高增加了麦田土壤有机碳的更新率,使土壤有机碳的更新率由3.61%(施氮量为150 kg hm-2,LN)~4.59%(施氮量为250 kg hm-2,HN)提高至6.72%(LN)~8.55% (HN),分别增加72.7%和86.1%。结果表明,大气CO2浓度升高和提高氮肥用量将加快农田土壤有机碳的更新.

    Abstract:

    With the aid of the Free-Air Carbon Dioxide Enrichment (FACE) system and the isotope 13C technique, effects of elevated atmospheric p CO2 and nitrogen fertilization on replacement rate of soil organic carbon (SOC) in wheat field, through planting wheat (Triticum aestivum L. cv Yangmai 14) under a rice/wheat rotation system in a C4 soil, on which only maize had been planted for years. Results show that after one crop of wheat, the value of δ 13C in SOC fell significantly, suggesting that wheat growth had altered the composition of SOC, and that elevated atmospheric p CO2 stimulated the crop to transfer more organic carbon into the soil, thus increasing the SOC replacement rate in the wheat field from 3.61% to 6.72% when the nitrogen application rate was 150 kg hm-2, LN and from 4.59% to 8.55%, when the application rate was 250 kg hm-2, HN, or by 72.7% and 86.1%, respectively. It is quite obvious that elevated atmospheric p CO2 and higher nitrogen application rate will accelerate SOC replacement in farmland soil.

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寇太记,朱建国,谢祖彬,刘钢,曾青.大气CO2浓度升高和氮肥水平对麦田土壤有机碳更新的影响[J].土壤学报,2009,46(3):459-465. DOI:10.11766/trxb200711280312 Kou Taiji, Zhu Jianguo, Xie Zubin, Liu Gang, Zeng Qing. Effect of elevated atmospheric pCO2 and nitrogen level on replacement rate of soil organic carbon in winter wheat field[J]. Acta Pedologica Sinica,2009,46(3):459-465.

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