4.5 Article

Synthesis of Elemental- and Nano-sulfur-enriched Bio-organic Phosphate Composites, and Their Impact on Nutrients Bioavailability and Maize Growth

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SPRINGER INT PUBL AG
DOI: 10.1007/s42729-023-01244-0

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Elemental sulfur; Nano-sulfur; Compost; Rock phosphate; Acidithiobacillus thiooxidans; Sulfur-oxidizing bacteria

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The higher pH of calcareous soils and mineral fertilizers decrease the availability of plant nutrients. Therefore, the use of suitable bioactive materials such as sulfur, organic, microbial, and nano-materials is necessary to amend the nutrient input. This study evaluated the effects of sulfur-enriched composites of organo-phosphate and bio-organic phosphate on soil and plant attributes. The results showed that sulfur-based amalgams, especially ES-BOP and NS-BOP, improved maize growth and soil nutrients status by reducing pH and increasing macronutrients.
Higher pH of calcareous soils and mineral fertilizers lowers the bioavailability of plant nutrients. Hence, it requires amending the nature of nutrients input through suitable bioactive materials, like sulfur (S), organic, microbial, and nano-materials. This study assessed the effects of S-enriched composites of organo-phosphate (OP) and bio-organic phosphate (BOP) on soil and plant attributes. Elemental sulfur (ES) and nano-sulfur (NS) were admixed separately in compost and rock phosphate (RP) with/without sulfur-oxidizing bacteria (SOB), viz., Acidithiobacillus thiooxidans. Sulfur-based amalgams were incubated at 25-35 degrees C for 60 days to develop S-enriched organo-phosphate (ES-OP) and bio-organic phosphate (ES-BOP and NS-BOP) composites. Greenhouse and micro-plot experiments were conducted to evaluate the impact of these composites on nutrients bioavailability and vegetative growth of maize. Treatments included control (no sulfur), ES (12.5 kg ha(-1)), ES-OP (50 kg ha(-1)), ES-BOP (50 kg ha(-1)), and NS-BOP (50 kg ha(-1)) application in soil. Inoculation with SOB in both ES-BOP and NS-BOP reduced the pH and increased macronutrients as compared to ES-OP. Thus, ES-BOP and NS-BOP improved maize growth and soil nutrients status. Composite NS-BOP rendered the highest N, P, K, and S concentrations in both soil and plants due to lower soil pH. Application of S-BOP containing Acidithiobacillus thiooxidans, and use of nano-S are beneficial for improving nutrients bioavailability and plant growth in calcareous soils via pH reduction. These composites are low-cost, nutrients-rich, and have greater efficiency than fertilizers in calcareous soil.

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