Impact of soil moisture, rice straw, and nitrogen fertilizer on greenhouse gas emissions from agricultural soils
文献类型: 外文期刊
作者: Shaaban, Muhammad;Khalid, Muhammad Salman;Wu, Lei;Wu, Yupeng;Hu, Ronggui
作者机构:
期刊名称: JOURNAL OF ENVIRONMENTAL QUALITY
ISSN: 0047-2425
年卷期: 2025 年 55 卷 1 期
页码:
收录情况: SCIE(2025版) ; ; EI(2025版)
摘要: Soil moisture, carbon, and nitrogen are vital factors affecting greenhouse gas (GHG) emissions in agricultural soils. However, research on GHG dynamics across different soil moisture regimes, ranging from simultaneous flooding-to-upland conversion, transition phases, to continuous flooding, and their interaction with crop straw and nitrogen (N) fertilizer amendments remains limited. To address this research problem, we conducted a laboratory study to investigate the impact of water regimes, rice straw (Oryza sativa L.), and N fertilizer on GHGs. The addition of rice straw and fertilizer significantly increased GHG emissions. N2O and CO2 emissions increased as soil moisture levels were converted from flooded conditions to 60% water-filled pore space (WFPS), while CH4 emissions decreased. The highest cumulative N2O and CH4 emissions were 0.85 mg N2O-N kg(-1) and 65.21 mg CH4-C kg(-1), respectively, in rice straw treatment, while cumulative CO2 emissions were highest (2003.69 mg CO2-C kg(-1)) in rice straw + N fertilizer treatment. The NH4+ and NO3- levels were highest with values of 202.43 and 63.72 mg kg(-1), respectively, in the rice straw + N fertilizer treatment during the transition phase. The highest levels of dissolved organic carbon (201.31 mg kg(-1)) and microbial biomass carbon (425.92 mg kg(-1)) were recorded in the rice straw treatments during the flooding and 60% WFPS phases, respectively. Our findings emphasize the critical role of soil moisture and organic amendments in regulating soil GHG emissions. Sustainable agricultural practices should focus on balancing soil management techniques to reduce GHG emissions while promoting long-term soil health. Plain Language Summary Subject Overview Soil moisture, carbon, and nitrogen are important factors that affect the release of greenhouse gases (GHGs) in agricultural soils. These gases, like carbon dioxide (CO2), methane (CH4), and nitrous oxide (N2O), contribute to climate change. Research Purpose This study aimed to understand how different water conditions in the soil, along with rice straw and nitrogen fertilizer, influence GHG emissions from agricultural soils. Key Results Adding rice straw and nitrogen fertilizer increased GHG emissions. As soil moisture decreased, emissions of N2O and CO2 went up, while CH4 emissions went down. The highest N2O and CH4 emissions came from the rice straw treatment, while the highest CO2 emissions came from the rice straw and nitrogen fertilizer combination. Key Takeaways Soil moisture and organic materials like rice straw play a key role in regulating GHG emissions.
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