Nitrogen Flows, Nitrogen Use Efficiency, Nitrogen Footprint and Mitigation Strategies in a Large-Scale Dairy Farm: A High-Resolution Case Study in China
Shangru Li, Jingjun Wang, Wen Jiang, Boyan Ma, Tianle He, Xinqi Shu, Qianchengqian Liu, Xinyu Xiao, Tengyu Gao, Zhixin Huang, Tianyu Chen, Hanqing Zhang, Mei Ma, Shuai Liu, Zhijun Cao, Jiaying MaLarge-scale dairy farms with anaerobic digestion (AD) are expanding rapidly in China, yet high-resolution assessments of N flows, N use efficiency (NUE), and N footprint remain limited. This study conducted a process-based N accounting and N footprint assessment for a large-scale commercial dairy farm with AD in China using farm-specific data on herd structure, feed intake, milk production, manure management, feed production, transportation, and on-farm energy use. Whole-farm N flows were traced from feed inputs to animal products, manure excretion, manure treatment, field application, soil deposition, and environmental losses. Total herd N intake was 3.12 × 106 kg N yr−1, of which 5.83 × 105 kg N was exported in milk, and 2.45 × 106 kg N was excreted. Lactating cow milk NUE was 28.11%, while whole-herd milk-only and product NUE were 18.70% and 19.90%, respectively. The milk-allocated N footprint was 7.21 g N kg−1 fat- and protein-corrected milk (FPCM) under the cradle-to-farm-gate boundary and increased to 13.56 g N kg−1 FPCM when manure land application was included. Feed production was the largest contributor under the cradle-to-farm-gate boundary, whereas manure management dominated under the expanded boundary. Scenario analysis showed that the largest simulated reductions were 30.52% for dietary mitigation under the cradle-to-farm-gate boundary and 18.77% for combined manure-management mitigation under the expanded boundary. These results highlight the need for coordinated improvements in feeding, herd management, and manure management.