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A global meta‐analysis of nitrous oxide emission from drip‐irrigated cropping system
Author(s) -
Kuang Weng,
Gao Xiaopeng,
Tenuta Mario,
Zeng Fanjiang
Publication year - 2021
Publication title -
global change biology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 4.146
H-Index - 255
eISSN - 1365-2486
pISSN - 1354-1013
DOI - 10.1111/gcb.15636
Subject(s) - drip irrigation , environmental science , irrigation , fertilizer , nitrous oxide , agronomy , chemistry , biology , organic chemistry
Drip irrigation is a useful practice to enhance water and fertilizer nitrogen (N) use efficiency. However, the use of drip irrigation to mitigate nitrous oxide (N 2 O) emissions in agricultural systems globally is uncertain. Here, we performed a global meta‐analysis of 485 field measurements of N 2 O emissions from 74 peer‐reviewed publications prior to March 2021, to quantify the fertilizer‐induced N 2 O emission factor (EF) of drip irrigation and examine the influencing factors of climate, crop, soil properties, and source and rate of fertilizer N application. The results showed that drip irrigation reduced ( p < 0.05) N 2 O emissions by 32% and 46% compared to furrow and sprinkler irrigation systems, respectively. The overall average EF with drip irrigation was 0.35%, being two‐thirds lower than the IPCC Tier I default value of 1% (kg N 2 O‐N/kg added fertilizer N). The EF was not significantly affected by climate, crop, soil texture, soil organic carbon content, and pH. The EF was also not significantly ( p > 0.05) affected by synthetic N fertilizer source despite a lower numerical value with enhanced efficiency than conventional fertilizers. The EF increased significantly ( p < 0.001) with N addition rate in a binomial distribution. Using the IPCC default EF overestimated N 2 O emissions inventories for drip‐irrigated cropping systems by 7614 and 13,091 Mg per year for China and the globe, respectively. These results indicate that drip irrigation should be recommended as an essential N 2 O mitigation strategy for irrigated crop production.