2024/11/01 by Setiaji, Arkan, Santoso, Budi, Wibisono, Hendrawan
#Maize growth #Nutrient use efficiency #Organomineral fertilizer #Plant growth #Sugar industry waste
paper · doi:10.57647/ijrowa.2023.1973162.1559
Purpose: One of the primary wastes of the sugar industry that has the potential to be converted into fertilizer is filter cake. Organomineral fertilizer is proposed as a promising approach. Therefore, this research evaluated the efficiency of various filter cake-based organomineral formulations for sweet maize growth under different fertilization rates. Method: The treatments comprised of seven formulations of filter cake-based fertilizers (filter cake (F), biochar (B), organomineral filter cake, organomineral biochar (OB), organomineral filter cake + humic acid, organomineral biochar + humic acid, and conventional mineral fertilizer (M)) and four rates (40, 80, 120, and 160 kg N haâ1) based on the nitrogen (N) contents of each fertilizer. Furthermore, fertilizers applied to maize, and growth performance, nutrient use efficiency (NUE), and soil quality were assessed. Results: Maize fertilization using F, B, and OB at different rates resulted in the highest vegetative growth performance, NUE, and residual soil status. F fertilizer produced the optimal plant height, leaf area, and stem diameter for maize. The application of OB fertilizer was most efficient in N uptake, potassium uptake, and potassium recovery, demonstrating values of 42.56%, 91.8%, and 115.4%, respectively. B fertilizer provided a better residual of P (93.4%) than M and a higher organic matter content (224.7%) than the negative control. As per our findings, OB is the best treatment for increasing growth performance, NUE, and soil quality with an optimal dose of 0.96 t haâ1. Conclusion: Fertilization using OB has significantly improved sweet maize agronomic traits and soil quality. Highlights • The type and rate of fertilizers significantly affected nitrogen, phosphorus, and potassium accumulation in the shoots of maize. • Organomineral fertilizers not only provided equivalent nutrient content but also performed substantially better than mineral fertilizers. • Organomineral fertilizers improved soil organic matter and showed positive effects on plant biomass. • Filter cake-based organomineral fertilizers had limitations and potential phytotoxicity, but could enhance soil quality and crop productivity when combined with other materials.