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首页> 外文期刊>Journal of environmental sciences >Elevated CO2 facilitates C and N accumulation in a rice paddy ecosystem
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Elevated CO2 facilitates C and N accumulation in a rice paddy ecosystem

机译:升高的二氧化碳促进稻田生态系统中的碳和氮积累

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摘要

Elevated CO2 can stimulate wetland carbon (C) and nitrogen (N) exports through gaseous and dissolved pathways, however, the consequent influences on the C and N pools are still not fully known. Therefore, we set up a free-air CO2 enrichment experiment in a paddy field in Eastern China. After five year fumigation, we studied C and N in the plant-water-soil system. The results showed: (1) elevated CO2 stimulated rice aboveground biomass and N accumulations by 19.1% and 12.5%, respectively. (2) Elevated CO2 significantly increased paddy soil TOC and TN contents by 12.5% and 15.5%, respectively in the 0-15 cm layer, and 22.7% and 26.0% in the 15-30 cm soil layer. (3) Averaged across the rice growing period, elevated CO2 greatly increased TOC and TN contents in the surface water by 7.6% and 11.4%, respectively. (4) The TOC/TN ratio and natural delta 15N value in the surface soil showed a decreasing trend under elevated CO2. The above results indicate that elevated CO2 can benefit C and N accumulation in paddy fields. Given the similarity between the paddies and natural wetlands, our results also suggest a great potential for long-term C and N accumulation in natural wetlands under future climate patterns. (C) 2015 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences.
机译:升高的CO2可以通过气态和溶解途径刺激湿地碳(C)和氮(N)的出口,但是,对碳和氮库的结果影响尚不完全清楚。因此,我们在中国东部的稻田中建立了空气中二氧化碳富集实验。熏蒸五年后,我们研究了植物-水-土壤系统中的碳和氮。结果表明:(1)CO2刺激水稻地上生物量和氮积累量分别增加了19.1%和12.5%。 (2)升高的CO2分别使0-15 cm层稻田土壤TOC和TN含量分别增加12.5%和15.5%,而15-30 cm土层稻田土壤总有机碳和TN含量分别增加22.5%和26.0%。 (3)在整个水稻生育期,平均CO2升高使地表水中TOC和TN含量分别大大增加7.6%和11.4%。 (4)表层土壤的TOC / TN比和天然δ15N值在CO2升高时呈下降趋势。以上结果表明,升高的CO2可以使稻田中的C和N积累受益。考虑到稻田和自然湿地之间的相似性,我们的研究结果还表明,在未来气候模式下,自然湿地中长期碳和氮积累的潜力很大。 (C)2015年中国科学院生态环境研究中心。

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