Lasab Belachew Eshete, Augustine Talababie Phiri, Hongyan Zhang, Qihui Chen, Frank Mnthambala
Efficient nitrogen (N) management in calcareous soils remains challenging due to limited nutrient availability, poor synchronization between N supply and crop demand, and low fertilizer use efficiency. While black soldier fly frass (BSFF) represents an emerging organic amendment, its comparative effects relative to vermicompost (VC) and mineral N fertilizers under calcareous soil conditions remain insufficiently understood. In this study, we evaluated the effects of BSFF- and VC-based integrated organic-mineral fertilization strategies involving urea (U) and ammonium sulfate (AS) on maize productivity, nitrogen use efficiency (NUE), and selected soil chemical properties. A two-year field experiment was conducted at Quzhou Experimental Station, China Agricultural University, using a randomized complete block design (RCBD) with nine treatments: unfertilized control (CK), sole mineral fertilizers (U and AS), sole organic amendments (BSFF and VC), and integrated combinations (UBSFF, UVC, ASBSFF, and ASVC). All fertilizer treatments received 180 kg N ha-1 and were replicated three times. Our results showed that ASBSFF increased maize grain yield by 101.9-114.6% compared with CK across both growing seasons, while ASVC increased yield by 92.5-103.9%. ASBSFF also resulted in the highest N uptake, increasing it by 121.3% compared with CK, and achieved the highest agronomic efficiency (26.01-27.51 kg grain kg-1 N applied), apparent recovery efficiency (63.2%), and physiological efficiency (57.13-59.18 kg grain kg-1 N uptake). BSFF-based integrated treatments increased soil NH4+-N, NO3--N, available phosphorus, and available potassium compared with VC-based treatments, likely due to differences in nutrient composition between BSFF and VC. Overall, combining BSFF with mineral N fertilizers, particularly AS, improved maize productivity and NUE in calcareous soils, demonstrating its potential as a sustainable nutrient management strategy.