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Responses of CO2 efflux from an alpine meadow soil on the Qinghai Tibetan Plateau to multi-form and low-level N addition

机译:青藏高原高寒草甸土壤CO2排放对多种形态和低水平氮添加的响应

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摘要

To assess the effects of atmospheric N deposition on the C budget of an alpine meadow ecosystem on the Qinghai-Tibetan Plateau, it is necessary to explore the responses of soil-atmosphere carbon dioxide (CO2) exchange to N addition. Based on a multi-form, low-level N addition experiment, soil CO2 effluxes were monitored weekly using the static chamber and gas chromatograph technique. Soil variables and aboveground biomass were measured monthly to examine the key driving factors of soil CO2 efflux. The results showed that low-level N input tended to decrease soil moisture, whereas medium-level N input maintained soil moisture. Three-year N additions slightly increased soil inorganic N pools, especially the soil NH (4) (+) -N pool. N applications significantly increased aboveground biomass and soil CO2 efflux; moreover, this effect was more significant from NH (4) (+) -N than from NO (3) (-) -N fertilizer. In addition, the soil CO2 efflux was mainly driven by soil temperature, followed by aboveground biomass and NH (4) (+) -N pool. These results suggest that chronic atmospheric N deposition will stimulate soil CO2 efflux in the alpine meadow on the Qinghai-Tibetan Plateau by increasing available N content and promoting plant growth.
机译:为了评估大气氮沉积对青藏高原高寒草甸生态系统碳平衡的影响,有必要探讨土壤-大气二氧化碳(CO2)交换对氮添加的响应。基于多种形式的低水平氮添加实验,使用静态室和气相色谱技术每周监测土壤CO2排放量。每月测量土壤变量和地上生物量,以检查土壤CO2排放的关键驱动因素。结果表明,低水平的氮输入倾向于减少土壤水分,而中水平的氮输入保持土壤水分。三年添加氮会稍微增加土壤无机氮库,特别是土壤NH(4)(+)-N库。氮肥的施用显着增加了地上生物量和土壤CO 2的释放;此外,NH(4)(+)-N的这种作用比NO(3)(-)-N的肥料更显着。此外,土壤CO2排放主要由土壤温度驱动,其次是地上生物量和NH(4)(+)-N库。这些结果表明,长期的大气氮沉降将通过增加有效氮含量并促进植物生长来刺激青藏高原高寒草甸土壤CO 2的外流。

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