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Aug 2026

Responses of forage sorghum early growth, biomass production, and mineral nutrient composition to biochar and manure amendments in a semi-arid environment

Abstract The overuse of inorganic fertilizers to meet the increasing demand for food supplies has mounted enormous pressure on agroecosystems, especially in the arid and semi-arid regions, leading to soil quality deterioration and eutrophication problems. Therefore, we investigated the effect of the application of organic soil amendment materials (biochar (BC), manure, and their combinations) on forage sorghum (Sorghum bicolor (L.) Moench.) performance in a two-year field experiment. The experiment consisted of six treatments: Control, Manure 100% (45 Mg ha−1), BC 5% + Manure 95% (% w/w), BC 15% + Manure 85%, BC 25% + Manure 75%, and BC 100% (11 Mg ha−1), randomized in four replications. Research results revealed that total biomass, total water use, and biomass water use efficiency (BWUE) showed no significant differences among the treatments (p < 0.05). All plant tissue macro and micronutrient concentrations were unaffected by amendment treatments. However, the year × treatment interaction effect was evident on all nutrients. Additionally, a decrease in nutrient concentrations was observed in all treatments in the second year compared to the first year, which demonstrated the environmental effect. Overall, the application of organic amendments did not statistically affect the overall yield and tissue nutrient availability during the two-year study period; it is essential to investigate the long-term effects of biochar in combination with manure on plant growth, yield, and plant nutrient uptake. CORE IDEAS Different proportions of biochar and manure, along with their sole applications, were tested in forage sorghum production Forage sorghum biomass production and biomass water use efficiency showed similar results across all treatments Forage sorghum tissue mineral nutrients were unaffected by the tested soil amendments

A. Liman, M. Darapuneni, S. Angadi et al. · 0 citations
Open access Sep 2026

Soil Nutrient Dynamics Under Organic and Inorganic Amendments Determine Chile (Capsicum annuum L.) Growth and Yield

Integrated organic–inorganic soil amendments have been proposed as a strategy to improve soil fertility while maintaining crop productivity, yet their effects on seasonal nutrient dynamics and chile (Capsicum annuum L.) performance remain unclear. Two chile cultivars (‘NuMex Odyssey’, ‘NuMex Sandia Select’) were tested to evaluate the effects of organic and inorganic amendments on soil nutrient dynamics, chile vegetative growth, and fruit yield and dimensions across key growth stages. The amendments included an unamended control (CK), half-rate (CF) and full-rate (CFCF) chemical fertilizer, and three integrated amendments consisting of composted manure–biochar blend (CFMB), composted manure (CFM), and pea residues (CFP) applied at a 1:1 ratio with chemical fertilizer on a plant-available nitrogen (PAN) basis. CFCF produced the highest early-season availability of N, P, and K, whereas CFP and CFM provided a more gradual nutrient release pattern, maintaining PAN comparable to CFCF through flowering and sustaining P and K availability through harvest. ‘NuMex Sandia Select’ exhibited greater yield responsiveness to soil amendments, while ‘NuMex Odyssey’ produced fewer but higher dimension fruits. CFP maintained fruit yields comparable to CFCF while producing lower vegetative biomass. Correlation analyses showed that significant nutrient–plant relationships were concentrated at harvest, with soil NO3−-N associated with fruit number and NH4+-N with fruit dimensions. These findings indicate that partial substitution of mineral fertilizer with organic amendments may sustain nutrient availability and chile productivity while providing a more gradual nutrient release throughout the growing season.

Roseleen Sharma, Í. Santos, Stephanie J. Walker et al. · 0 citations

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