数字农科院2.0

Effects of Long-Term Nitrogen Fertilization on Nitrous Oxide Emission and Yield in Acidic Tea (Camellia sinensis L.) Plantation Soils

文献类型: 外文期刊

作者: Fuying Jiang;Yunni Chang;Jiabao Han;Xiangde Yang;Zhidan Wu

作者机构:

关键词: acidic soil;driving factors;long-term N application;N2O flux;tea-plantation system

期刊名称: Agronomy

ISSN: 2073-4395

年卷期: 2025 年 15 卷 1 期

页码:

收录情况: SCIE(2025版)

摘要: The responses of nitrous oxide (N2O) emissions to nitrogen (N) application in acidic, perennial agricultural systems, and the factors driving these emissions, remain poorly understood. To address this gap, a 12-year field experiment was conducted to investigate the effects of different N application rates (0, 112.5, 225, and 450 kg N ha−1 yr−1) on N2O emissions, tea yield, and the associated driving factors in a tea plantation. The study found that soil pH significantly decreased with long-term N application, dropping by 0.32 to 0.85 units. Annual tea yield increased significantly, by 148–243%. N application also elevated N2O emission fluxes by 33–277%, with notable seasonal fluctuations observed. N2O flux was positively correlated with N rates, water-filled pore space (WFPS), soil temperature (Tsoil), and inorganic N (NH4+-N and NO3−-N), while showing a negative correlation with soil pH. Random forest (RF) modeling identified WFPS, N rates, and Tsoil as the most important variables influencing N2O flux. The cumulative N2O emissions for N112.5, N225, and N450 were 1584, 2791, and 45,046 g N ha−2, respectively, representing increases of 1.33, 2.34, and 3.77 times compared to N0. The N2O-N emission factors (EF) were 0.35%, 0.71%, and 0.74%, respectively, and increased with higher N rates. These findings highlight the importance of selecting appropriate fertilization timing and improving water and fertilizer management as key strategies for mitigating soil acidification, enhancing nitrogen use efficiency (NUE), and reducing N2O emissions in acidic tea-plantation systems. This study offers a theoretical foundation for developing rational N fertilizer management practices and strategies aimed at reducing N2O emissions in tea-plantation soils.

分类号:

  • 相关文献

[1]Opposite response of N2O emissions in different seasons to warming and precipitation addition on a temperate steppe. Wan, Zhiqiang,Gu, Rui,Ganjurjav, Hasbagan,Hu, Guozheng,Gao, Qingzhu,Chen, Xuemeng,Gu, Xiling,Chun, Xi,Zhou, Haijun. 2023

[2]The Links Between Potassium Availability A.nd Soil Exchangeable Calcium, M agnesium, And Aluminum Are Mediated By Lime In Acidic Soil. Han, TF, Cai, AD, Liu, KL, Huang, J, Wang, BR, Li, DC, Qaswar, M, Feng, G, Zhang, HM. 2019

[3]Liming decreases the emission and temperature sensitivity of N2O following labile carbon addition. Lei Wu,Qiong Xiao,Jun Wang,Yaping Huang,Di Wu,Jinwei Liu,Boren Wang,Huimin Zhang,Minggang Xu,Wenju Zhang. 2022

[4]A shift from nitrification to denitrification-dominated N2O emission in an acidic soil following organic amendment. Wang, Jing,Huang, Qiao,Li, Yong,Tu, Xiaoshun,Chen, Zhaoxiong,Elrys, Ahmed S.,Cheng, Yi,Ma, Lifeng. 2022

[5]Patterns and abiotic drivers of soil organic carbon in perennial tea (Camellia sinensis L.) plantation system of China. Xiangde Yang,Xiaoyun Yi,Kang Ni,Qunfeng Zhang,Yuanzhi Shi,Linbo Chen,Yuanyan Zhao,Yongli Zhang,Qingxu Ma,Yanjiang Cai,Lifeng Ma,Jianyun Ruan. 2023

[6]Changes of acid and alkaline phosphatase activities in long-term chemical fertilization are driven by the similar soil properties and associated microbial community composition in acidic soil. Man Man Zheng,Chao Wang,Wen Xing Li,Long Guo,Ze Jiang Cai,Bo Ren Wang,Juan Chen,Ren Fang Shen. 2021

[7]Long-Term Green Manure Rotations Improve Soil Biochemical Properties, Yield Sustainability And Nutrient Balances In Acidic Paddy Soil Under A Rice-Based Cropping System. Qaswar, M, Huang, J, Ahmed, W, Li, DC, Liu, SJ, Ali, S, Liu, KL, Xu, YM, Zhang, L, Liu, LS, Gao, JS, Zhang, HM. 2019

[8]Fertilization Strategies Affect Soil Properties And Abundance Of N-Cycling Functional Genes In An Acidic Agricultural Soil. Li, WX, Wang, C, Zheng, MM, Cai, ZJ, Wang, BR, Shen, RF. 2020

[9]Biogeographic patterns and co-occurrence networks of diazotrophic and arbuscular mycorrhizal fungal communities in the acidic soil ecosystem of southern China. Wang C.,Zheng M.M.,Song W.F.,Chen R.F.,Zhao X.Q.,Wen S.L.,Zheng Z.S.,Shen R.F.. 2021

[10]Understanding phosphorus mobilization mechanisms in acidic soil amended with calcium-silicon-magnesium-potassium fertilizer. Lei J.,Yin J.,Chen S.,Fenton O.,Liu R.,Chen Q.,Fan B.,Zhang S.. 2024

[11]Microbial communities overwhelm environmental controls in explaining nitrous oxide emission in acidic soils. Shengwen Xu,Yongxiang Yu,Haoxin Fan,Nataliya Bilyera,Xiangtian Meng,Jiantao Xue,Zhong Lu,Zhihan Yang,Stephen J. Chapman,Fuyun Gao,Wenyan Han,Yaying Li,Ningguo Zheng,Huaiying Yao,Yakov Kuzyakov. 2024

[12]Insight into the sorption and desorption pattern of pyrrolizidine alkaloids and their N-oxides in acidic tea ( Camellia sinensis ) plantation soils. Lu, Yuting,Han, Haolei,Yi, Yuexing,Chai, Yunfeng,Wang, Chen,Zhang, Xiangchun,Yang, Xiangde,Chen, Hongping. 2025

[13]Machine learning unveils the role of biochar application in enhancing tea yield by mitigating soil acidification in tea plantations. Rongxiu Yin,Xin Li,Yating Ning,Qiang Hu,Yihu Mao,Xiaoqin Zhang,Xinzhong Zhang. 2025

[14]Inorganic amendments increase soil carbon sequestration across global acidic agroecosystems: A meta-analysis. Tianfu Han,Zhe Shen,Kailou Liu,Jing Huang,Muhammad Numan Khan,Minggang Xu,Huimin Zhang,Andong Cai. 2025

[15]HUMAN DRIVING FORCES OF OASIS EXPANSION IN NORTHWESTERN CHINA DURING THE LAST DECADE-A CASE STUDY OF THE HEIHE RIVER BASIN. Zhou, Dingyang,Wang, Xiaojun,Shi, Minjun.

[16]Quantifying the Influences of Driving Factors on Land Surface Temperature during 2003–2018 in China Using Convergent Cross Mapping Method. Yanru Yu,Guofei Shang,Sibo Duan,Wenping Yu,Jélila Labed,Zhaoliang Li. 2022

[17]Spatio-Temporal Distribution Characteristics and Driving Factors of Main Grain Crop Water Productivity in the Yellow River Basin. Yan Zhang,Feiyu Wang,Zhenjie Du,Ming Dou,Zhijie Liang,Yun Gao,Ping Li. 2023

[18]Estimation of soil organic carbon stock and its controlling factors in cropland of Yunnan Province, China. Tao SUN,Wen jie TONG,Nai jie CHANG,Ai xing DENG,Zhong long LIN,Xing bing FENG,Jun ying LI,Zhen wei SONG. 2022

[19]Manure application: A trigger for vertical accumulation of antibiotic resistance genes in cropland soils. Meirui Mu,Fengxia Yang,Bingjun Han,Xueli Tian,Keqiang Zhang. 2022

[20]Effects of various driving factors on potential evapotranspiration trends over the main grain-production area of China while accounting for vegetation dynamics. Haigen Zhao,Yanfei Ma. 2021

作者其他论文 更多>>