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Research Article Open access CC BY 4.0

Bioconversion of Agricultural Residues into Nutrient-Rich Compost: A Sustainable Approach to Waste Valorization

Aiswarya Prasanth, Mohammed Nabin, N. Chitra, Gowri Priya, S. Anu Rajan, K. N. Anith, V. I. Soumya

Journal of Advances in Microbiology · pp. 162–177 · Published 3 Dec 2025

10.9734/jamb/2025/v25i121036

Abstract

The rapid expansion of agro-industrial production has generated large volumes of lignocellulosic agricultural residues, many of which remain underutilized or are burned, causing nutrient loss and environmental pollution. Composting provides a sustainable pathway to convert these wastes into valuable organic amendments, yet the inherent resistance of plant structural polymers often slows decomposition and reduces compost quality. Emerging research highlights the potential of microbial consortia, combining lignocellulolytic, thermotolerant and nutrient-mobilizing microorganisms to substantially enhance biomass breakdown and  accelerate compost maturation. These tailored communities improve organic matter transformation and humus formation by coordinating complementary metabolic activities under optimized composting conditions. This review synthesizes recent advances in consortium-based composting and outlines their advantages over conventional methods. Overall, the strategic use of microbial consortia offers a cost-effective and environmentally sound approach for converting agricultural residues into high-quality compost, strengthening soil fertility and supporting sustainable land management.

Lignocellulosic agricultural residues microbial consortia composting soil fertility

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