Exploring the insights of bioslurry-Nanoparticle amalgam for soil amelioration.

Ritika Chauhan, Vishnu D Rajput, Tatiana Minkina, Ram Prasad, Abhinav Singh, Arti Goel

Journal: Environmental science and pollution research international 2024;31(48):58310-58323

PMID: 39307866

Abstract

In response to global agricultural challenges, this review examines the synergistic impact of bioslurry and biogenic nanoparticles on soil amelioration. Bioslurry, rich in N, P, K and beneficial microorganisms, combined with zinc oxide nanoparticles synthesized through eco-friendly methods, demonstrates remarkable soil improvement capabilities. Their synergistic effects include enhanced nutrient availability through increased soil enzymatic activities, improved soil structure via stable aggregate formation, stimulated microbial activity particularly beneficial groups, enhanced water retention due to increased organic matter and modified soil surface properties and reduced soil pH fluctuations. These mechanisms significantly impact soil physico-chemical properties including cation exchange capacity, electrical conductivity and nutrient dynamics. This review analyses these effects and their implications for sustainable agricultural practices, focusing on crop yield improvements, reduced chemical fertilizer dependence and enhanced plant stress tolerance. Knowledge gaps such as long-term nanoparticle accumulation effects and impacts on non-target organisms are identified. Future research directions include optimizing bioslurry-nanoparticle ratios for various soil types and developing "smart" nanoparticle-enabled biofertilizers with controlled release properties. This innovative approach contributes to environmentally friendly farming practices, potentially enhancing global food security and supporting sustainable agriculture transitions. The integration of bioslurry and biogenic nanoparticles presents a promising solution to soil degradation and agricultural sustainability challenges.

© 2024. The Author(s), under exclusive licence to Springer-Verlag GmbH Germany, part of Springer Nature.

Address: Amity Institute of Microbial Technology, Amity University, Noida, 201313, India.; Academy of Biology and Biotechnology, Southern Federal University, Rostov-on-Don, 344090, Russia.; Department of Botany, Mahatma Gandhi Central University, Motihari, 845801, Bihar, India.; Amity Institute of Microbial Technology, Amity University, Noida, 201313, India. [email protected].

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