Legume straw incorporation with optimal nitrogen fertilizer improves soil quality and reduces the carbon footprint of farmland ecosystems in semiarid areas
作者:Jingrong Song, Yang Jiao, Wenqi Wu, Xufeng Wang, Kangmin Gu, Qiang Liu, Shushang Bao, Xueqin Kong, Shanchao Yue, Shiqing Li, Yufang Shen · 发表于:Industrial Crops and Products · 年份:2025 · DOI:10.1016/j.indcrop.2025.121081 · 被引用次数:10 · 研究领域:Soil Carbon and Nitrogen Dynamics、Crop Yield and Soil Fertility、Bioenergy crop production and management
Optimizing nitrogen fertilizer and straw application is essential for sustainable agricultural development. However, the effects of variations and related factors associated with nitrogen fertilizer reduction combined with different straws on soil quality and greenhouse gas emissions remain unclear. Hence, a two−year field experiment was conducted to comprehensively assess the effects of nitrogen fertilizer application rate and different straws incorporation on maize growth, the soil quality index (SQI), direct global warming potential (GWP direct ) and carbon footprint (CF). The treatments included: no nitrogen fertilizer (CK), conventional nitrogen fertilizer 225 kg ha −1 (N 225 ), 20 % reduction of conventional nitrogen fertilizer (N 180 ), N 180 with soybean straw incorporation-legume crop straw (SN 180 ) and N 180 with maize straw incorporation-gramineous crop straw (MN 180 ). Results revealed that the N 180 treatment produced comparable yield to that of the N 225 treatment and significantly increased nitrogen agronomic efficiency (NAE) by 16.54 %–16.98 %; however, SOC content decreased by 0.12 g kg −1 . Compared with N 180 , the SN 180 treatment significantly increased the SQI by 9.20 % in 2022 and 10.76 % in 2023, and the MN 180 treatment increased the SQI by 3.19 % in 2022 and 8.69 % in 2023, respectively. Although the SN 180 and MN 180 treatments had higher the GWP direct by 92.60 %–95.31 % and 49.67 %–53.51 % than the N 225 treatment, the greater SOC sequestration r...