首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Simulating the effects of soil temperature and soil moisture on CO2 and CH4 emissions in rice straw-enriched paddy soil
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Simulating the effects of soil temperature and soil moisture on CO2 and CH4 emissions in rice straw-enriched paddy soil

机译:模拟土壤温度和土壤水分对水稻稻草土壤二氧化碳和CH4排放的影响

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摘要

Paddy soil from a site in northeast China was incubated with C-13-labeled rice straw in a laboratory study, and the effects of soil temperature and moisture on CO2 and CH4 emissions were measured using stable isotope ratio mass spectrometry. Aerobic incubation experiments were conducted at three soil temperatures (-10 degrees C, 0 degrees C, and 10 degrees C) and two soil moistures (60% and 100% water-filled pore space (WFPS)) in a laboratory for 24 weeks to simulate the rice-fallow season. An anaerobic incubation experiment was carried out for 16 weeks under a soil temperature of 25 degrees C and a 1 cm submerged layer to simulate the rice-growing season. Our results showed that increases in both soil temperature and soil moisture significantly promoted the cumulative CO2 emissions from rice straw during aerobic incubation. Furthermore, during anaerobic incubation, the cumulative emissions of CO2 and CH 4 from rice straw decreased with increasing aerobic incubation soil temperature and soil moisture. The CO2 and CH4 emission ratios from rice straw throughout the incubation duration ranged from 6.6-15.7% and 0.0-3.0%, respectively. The addition of rice straw promoted a priming effect on native soil organic carbon (SOC) mineralization and produced CO2 emissions, which positively impacted priming during the aerobic (ricefallow season) and anaerobic incubation (rice-growing season). The positive priming effect of rice straw on the CO2 emission duration ranged from 75.0% to 274.3% by the end of the 40-week incubation period. Furthermore, the aforementioned effect first increased and then decreased as the aerobic incubation soil temperature increased, with the greatest effect at 0 degrees C and lowest at 10 degrees C. These results suggest that high temperature during the rice-fallow season promotes the decomposition of rice straw C and leads to a decreased positive priming effect on native SOC during the rice-fallow and rice-growing seasons under the seasonal conditions of northeast China, and that it also leads to decreased CH4 production during the rice-growing season. These results have scientific significance for rational utilization of rice straw and mitigation of greenhouse effect in northeast China.
机译:来自东北地区的稻田土壤在实验室研究中与C-13标记的稻草孵育,使用稳定同位素比质谱法测量土壤温度和水分对CO 2和CH4排放的影响。在实验室中,在三种土壤温度(-10℃,0℃和10℃)和两种土壤水分(60%和100%充水孔隙空间(WFP)中进行有氧培养实验,持续24周模拟米饭休耕。在25℃和1cm浸没层的土壤温度下进行厌氧孵育实验16周,以模拟水稻生长季节。我们的研究结果表明,土壤温度和土壤水分的增加显着促进了在有氧孵育期间稻草累积二氧化碳排放。此外,在厌氧孵育期间,随着有氧潜伏土壤温度和土壤水分的增加,稻草中CO2和CH 4的累积排放减少。在整个孵化持续时间内的二氧化碳和CH4排放比分别为6.6-15.7%和0.0-3.0%。添加水稻秸秆促进了对天然土壤有机碳(SoC)矿化和产生的二氧化碳排放的引发效果,在有氧(稻草)和厌氧孵化期间产生了积极影响的灌注(水稻生长季节)。稻草对二氧化碳排放持续时间的正灌注效应范围为40周孵化期结束的75.0%至274.3%。此外,上述效果首先增加,然后随着有氧潜伏土壤温度的增加而降低,在0℃下的效果最大,10℃下最低。这些结果表明米饭季节期间的高温促进了水稻的分解稻草C并导致在中国东北地区季节性条件下稻米休耕和水稻生长季节的天然SOC下降,并导致大米生长季节的CH4生产下降。这些结果对稻草的合理利用具有科学意义,并在东北地区的温室效应缓解。

著录项

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  • 作者单位

    Shenyang Agr Univ Key Lab Arable Land Conservat Northeast China Natl Engn Lab Efficient Utilizat Soil &

    Fertilize Coll Land &

    Environm Minist Agr Shenyang 110866 Peoples R China;

    Shenyang Agr Univ Key Lab Arable Land Conservat Northeast China Natl Engn Lab Efficient Utilizat Soil &

    Fertilize Coll Land &

    Environm Minist Agr Shenyang 110866 Peoples R China;

    Shenyang Agr Univ Key Lab Arable Land Conservat Northeast China Natl Engn Lab Efficient Utilizat Soil &

    Fertilize Coll Land &

    Environm Minist Agr Shenyang 110866 Peoples R China;

    Shenyang Agr Univ Key Lab Arable Land Conservat Northeast China Natl Engn Lab Efficient Utilizat Soil &

    Fertilize Coll Land &

    Environm Minist Agr Shenyang 110866 Peoples R China;

    Shenyang Agr Univ Key Lab Arable Land Conservat Northeast China Natl Engn Lab Efficient Utilizat Soil &

    Fertilize Coll Land &

    Environm Minist Agr Shenyang 110866 Peoples R China;

    Shenyang Agr Univ Key Lab Arable Land Conservat Northeast China Natl Engn Lab Efficient Utilizat Soil &

    Fertilize Coll Land &

    Environm Minist Agr Shenyang 110866 Peoples R China;

    Shenyang Agr Univ Key Lab Arable Land Conservat Northeast China Natl Engn Lab Efficient Utilizat Soil &

    Fertilize Coll Land &

    Environm Minist Agr Shenyang 110866 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 土壤学;地质学;
  • 关键词

    C-13-labeled rice straw; Greenhouse gas; Soil organic carbon; Priming effect;

    机译:C-13标记的稻草;温室气体;土壤有机碳;引发效果;

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