数字农科院2.0

Biogas slurry strategy reshapes biochar-mediated greenhouse gas emissions via soil bacterial sub-communities

文献类型: 外文期刊

作者: Xiaoyang Liang;Yongxing Wen;Chuanjuan Wang;Haitao Wang;Jiandong Wang;Xurong Mei

作者机构:

关键词: Bacterial sub-community;Biochar;Biogas slurry;Carbon and nitrogen cycle;Greenhouse gas

期刊名称: Biochar

ISSN: 2524-7867

年卷期: 2025 年 7 卷 1 期

页码:

收录情况: SCIE(2025版) ; ; CSCD(2025-2026年度) ; ; 农林核心(2024版)

摘要: Biochar addition (BA) has been considered a promising strategy for mitigating soil greenhouse gas (GHG) emissions. However, it is essential to assess whether the benefits are retained under different water and fertilizer strategies (WFSs), particularly under the biogas slurry strategy (BSS), and the specific effects of different BA ratios on GHG emissions must also be assessed. This study examined the effects of two WFSs on soil GHGs emissions and bacterial sub-communities under different BA ratios and investigated their potential mechanisms using soil column experiments. Under the conventional chemical fertilizer strategy (CFS), BA reduced CO2 emissions by 29.19–36.51%, but simultaneously increased CH4 emissions by 21.62–135.08% and N2O emissions by 48.16–51.31%. Transitioning from CFS to BSS led to a 14.89% reduction in CO2 emissions and a 71.83% reduction in N2O emissions, whereas the CH4 emissions increased by 101.72%. Concurrently, BA concentrations of 4% and 6% intensified the modulatory effect of BSS on these GHGs, whereas a 2% BA concentration had an opposing regulatory effect. Both BSS and BA were also found to enhance the abundance of rare bacterial sub-communities within the soil. Furthermore, this study revealed that BSS reshaped the GHG emission pathway regulated by BA through bacterial sub-communities, emphasizing the ''priority effect'' of these communities in controlling GHG emissions. This study has also highlighted the integral role of carbon and nitrogen turnover processes within bacterial sub-communities for the regulation of GHGs emissions. In conclusion, this study demonstrates that the effectiveness of BA in reducing soil GHGs emissions depends on the WFS.

分类号:

  • 相关文献

[1]Synergistic effect on soil health from combined application of biogas slurry and biochar. Xiaoyang Liang,Chuanjuan Wang,Haitao Wang,Xuefeng Qiu,Hongxu Ji,Hui Ju,Jiandong Wang. 2023

[2]Effects of Membrane Covers and Biochar on Compost Quality and Greenhouse Gas Reduction in Aerobic Composting. Jie Cao,Haoli Qu,Ruirong Li,Pengjun Wang,Jingjing Fu,Mingjiang Chen. 2024

[3]Biochar-enhanced ex situ fermentation for rural toilet waste treatment: GHG mitigation and humification. Luyao Li,Changxiong Zhu,Bing Geng,Liangguo Luo. 2025

[4]Nutrient supplementation increased growth and nitrate concentration of lettuce cultivated hydroponically with biogas slurry. Liu, Wen Ke,Du, Lian Feng. 2011

[5]Effects of Diluted Biogas Slurry as Fertilizer on Growth and Yield of Tomato in Greenhouse. Liu, X. R.,Jiang, W. J.,Yu, H. J.,Ning, X. J.. 2012

[6]N2O And Co2 Emissions, Nitrogen U.se Efficiency Under Biogas S lurry Irrigation: A Field Study Of Two Consecutive Wheat-Maize Rotation Cycles In The North China Plain. Yin, GF, Wang, XF, Du, HY, Shen, SZ, Liu, CR, Zhang, KQ, Li, WC. 2019

[7]The effect of biogas slurry application on biomass production and forage quality of lolium multiflorum. Xu Wenzhi,Zhu Yongqun,Wang Xie,Ji Lei,Wang Hong,Yao Li,Lin Chaowen. 2021

[8]Biogas slurry topdressing as replacement of chemical fertilizers reduces leaf senescence of maize by up-regulating tolerance mechanisms. Xiaoyang Liang,Chuanjuan Wang,Haitao Wang,Zonglu Yao,Xuefeng Qiu,Jiandong Wang,Wenqing He. 2023

[9]Biogas slurry application could potentially reduce N2O emissions and increase crop yield. Md Arifur Rahaman,Qingwen Zhang,Yulong Shi,Xiaoying Zhan,Guichun Li. 2021

[10]Replacing Process Water And Nitrogen S.ources With Biogas Slurry D uring Cellulosic Ethanol Production. You, Y, Wu, B, Yang, YW, Wang, YW, Liu, S, Zhu, QL, Qin, H, Tan, FR, Ruan, ZY, Ma, KD, Dai, LC, Zhang, M, Hu, GQ, He, MX. 2017

[11]Biogas slurry application could potentially reduce N2O emissions and increase crop yield. Md Arifur Rahaman,Qingwen Zhang,Yulong Shi,Xiaoying Zhan,Guichun Li. 2021

[12]Temporal Effects Of Repeated Application Of Biogas Slurry On Soil Antibiotic Resistance Genes And Their Potential Bacterial Hosts. Liu, C, Chen, YX, Li, XH, Zhang, YR, Ye, J, Huang, HK, Zhu, CX. 2020

[13]The Combined Process Of Paper F.iltration And Ultrafiltration For T he Pretreatment Of The Biogas Slurry From Swine Manure. Zhan, YH, Dong, HM, Yin, FB, Yue, CD. 2018

[14]Effects of Biogas Slurry on Crop Yield, Physicochemical Properties and Aggregation Characteristics of Lime Concretion Soil in Wheat-Maize Rotation in the North China Plain. Tang, Jiao,Davy, Anthony J.,Wang, Wei,Zhang, Xihuan,Wu, Dafu,Hu, Lin,Yin, Jinzhong. 2022

[15]Investigation of distribution uniformity of distributor for biogas slurry application based on CFD analysis. Jingjing Fu,Yongsheng Chen,Binxing Xu,Biao Ma,Pengjun Wang,Aibing Wu,Mingjiang Chen. 2023

[16]Comprehensive Risk Assessment of Applying Biogas Slurry in Peanut Cultivation. Qingyu Liu,Zixuan Zhao,Zhiping Xue,Ding Li,Zhining Wen,Yi Ran,Zili Mei,Li He. 2021

[17]Solubilization and Uptake of Phosphorus (P) by Wheat and Maize Crops from Indigenous Rock Phosphate Applied with Biogas Slurry and Bagasse Ash. Ammara Farooq,Bushra Saeed,Hafiz Muhammad Bilal,Muhammad Aamer Maqsood,Muhammad Nasim,Tariq Aziz,Minggang Xu. 2023

[18]Long-term biogas slurry application increases microbial necromass but not plant lignin contribution to soil organic carbon in paddy soils as regulated by fungal community. Zhaoming Chen,Jinchuan Ma,Junwei Ma,Jing Ye,Qiaogang Yu,Ping Zou,Wanchun Sun,Hui Lin,Feng Wang,Xinlin Zhao,Qiang Wang. 2024

[19]Anaerobic digester liquor replacing chemical fertilizer in reducing greenhouse gas emissions under drip irrigation: Factors, pathways, and strategies. Haitao Wang,Xiaoyang Liang,Xuefeng Qiu,Zonglu Yao,Jiandong Wang. 2024

[20]Optimal Application of Biogas Slurry in Paddy Fields under the Dual Constraints of Agronomy and Environment in the Yangtze River Delta Region. Linlin Shi,Huawei Jiang,Tengfei Liu,Yuan Shen,Linlin Dong,Changying Lu,Haihou Wang,Ruirong Li. 2024

作者其他论文 更多>>