Grain yield and nitrogen cycling under conservation agriculture and biochar amendment in agroecosystems of sub-Saharan Africa. A meta-analysis

被引:0
|
作者
Namatsheve, Talent [1 ,2 ]
Martinsen, Vegard [1 ]
Obia, Alfred [3 ]
Mulder, Jan [1 ]
机构
[1] Norwegian Univ Life Sci, Fac Environm Sci & Nat Resource Management, POB 5003, N-1432 As, Norway
[2] Marondera Univ Agr Sci & Technol, Fac Plant & Anim Sci & Technol, POB 35, Marondera, Zimbabwe
[3] Gulu Univ, Fac Agr & Environm, Dept Agron, POB 166, Gulu, Uganda
关键词
Nitrogen cycling; Productivity; Emissions; Low-input cropping systems; GREENHOUSE-GAS EMISSIONS; SUSTAINABLE INTENSIFICATION; CROP RESIDUES; MAIZE YIELD; SOIL; PRODUCTIVITY; CARBON; MINERALIZATION; OPPORTUNITIES; DECOMPOSITION;
D O I
10.1016/j.agee.2024.109243
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
Soil nitrogen (N) is one of the most limiting factors affecting crop production in sub-Saharan Africa (SSA). Here we conducted a meta-analysis on the effect of climate smart agricultural (CSA) practices (conservation agriculture (CA) and/or biochar (BC)) application on: (1) soil nitrate-N (NO3-N), nitrous oxide (N2O) emission, biological N-2-fixation, percent of nitrogen derived from the atmosphere (%Ndfa), grain yield and nitrogen use efficiency (NUE), (2) the role of soil properties and regions on grain yield and N cycling under CA and/or BC biochar application; and (3) the relationship between inorganic N fertilizer and NO3-N, N2O emissions, NUE and grain yield. We synthesized 87 unique papers, from 15 countries in SSA with 1643 paired observations. On average across all studies, CA and/or BC significantly increased grain yield and NUE, compared to conventional practices. Residue retention resulted in a significant increase in soil NO3-N and N2O emission, compared to conventional practices. Our analysis further indicates that BC application significantly increased biological N-2-fixation, grain yield and NUE. Auxiliary soil parameters also affected grain yield and N cycling. Grain yield was significantly influenced by total organic carbon classes (TOC), whereby highest grain yield was recorded under CSA in soils with 0.5-1 % TOC, compared to soils with < 0.5 % TOC and > 1 % TOC. In addition, total nitrogen (TN) significantly affected the response ratio of CSA and conventional agriculture on N2O emission and biological N-2-fixation. N2O emission increased significantly in soils with < 0.05 % TN, while biological N-2-fixation increased significantly in soils with > 0.2 % TN. Increasing N fertilizer use significantly increased the response ratio of CSA and conventional agriculture on N2O and NO3-N while significantly reducing the response ratio of yield and NUE. The gap in yield and NUE between CSA and conventional agriculture practises was more pronounced at lower N rates of 0 kg ha(-1) and narrowed as N input increased to 120 kg ha(-1); this implies that, CSA offers more benefits compared to conventional agricultural practices under low N rates.
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页数:12
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