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Effect of Elevated [CO2] on Soil Bubble and CH4 Emission from a Rice Paddy: A Test by C-13 Pulse-Labeling under Free-Air CO2 Enrichment

机译:升高的[CO2]对稻田土壤气泡和CH4排放的影响:在自由空气CO2富集下通过C-13脉冲标签进行的测试

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摘要

A C-13 pulse-labeling experiment was conducted under ambient CO2 and free-air CO2 enrichment (FACE) conditions to understand how elevated CO2 affects the CH4 in soil bubbles and CH4 emissions from rice paddies. Two hills of rice plants enclosed by frames in ambient CO2 and FACE plots were labeled with (CO2)-C-13 at the panicle formation stage, and plants and soil bubbles were collected 2 and 51 days after the pulse labeling. CH4 and (CH4)-C-13 emissions were also measured by the closed-chamber method between the 2 bubble samplings. Conversion of photosynthate carbon to CH4 entrapped in soil bubbles and CH4 emission to the atmosphere occurred quickly, suggesting that recent photosynthates can be an important source of carbon for methanogenesis. About 1% of the C-13-labeled C taken up through photosynthesis was emitted as (CH4)-C-13 during the 7 weeks of measurement, most during the first 3 weeks after labeling. Total CH4 and (CH4)-C-13 emissions did not differ between the ambient CO2 and FACE treatments, because the entrapped CH4 in the soil and the root biomass were not affected by elevated CO2 levels in this study.
机译:在环境CO2和自由空气CO2浓缩(FACE)条件下进行了C-13脉冲标记实验,以了解升高的CO2如何影响土壤气泡中的CH4和稻田中的CH4排放。在穗形成阶段,用环境(CO2)-C-13标记在环境CO2和FACE图中被框架包围的两座水稻植株,在脉冲标记后第2天和第51天收集植物和土壤气泡。 CH4和(CH4)-C-13的排放也通过两次气泡采样之间的封闭室方法进行了测量。光合产物碳迅速转化为截留在土壤气泡中的CH4,并迅速向大气中排放CH4,这表明最近的光合产物可能是甲烷生成的重要碳源。通过光合作用吸收的C-13标记的碳中约有1%在测量的7周内以(CH4)-C-13的形式释放出来,大部分在标记后的前3周内释放出来。在本研究中,总的CH4和(CH4)-C-13排放总量在环境CO2和FACE处理之间没有差异,因为土壤和根生物量中截留的CH4不受CO2浓度升高的影响。

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