Nexus between nanotechnology and agricultural production systems: challenges and future prospects.

Autor: Rana, Lalita, Kumar, Manish, Rajput, Jitendra, Kumar, Navnit, Sow, Sumit, Kumar, Sarvesh, Kumar, Anil, Singh, S. N., Jha, C. K., Singh, A. K., Ranjan, Shivani, Sahoo, Ritwik, Samanta, Dinabandhu, Nath, Dibyajyoti, Panday, Rakesh, Raigar, Babu Lal
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Zdroj: Discover Applied Sciences; Nov2024, Vol. 6 Issue 11, p1-19, 19p
Abstrakt: Sustainable agriculture is crucial for meeting the growing global food demand. With the pressure of climate change, resource depletion, and the need for increased agricultural productivity, innovative approaches are essential. Nanotechnology is an emerging technology in achieving sustainable development goals (SDGs). Despite its promising benefits, the safe implementation of nanotechnology in agriculture requires careful consideration of potential health and environmental risks. However, there is a lack of comprehensive documentation on the application, potential and limitations of nanotechnology in the field of agriculture. To address this gap, a desk research approach was used by utilizing peer-reviewed electronic databases like PubMed, Scopus, Google Scholar, Web of Science, and Science Direct for relevant articles. Out of 157 initially identified articles, 85 were deemed pertinent, focusing primarily on potential nanotechnology in smart agricultural systems. Taking into account research findings worldwide, we found significant improvements with nanotechnology over traditional methods which underscores the practical benefits of nanotechnology, including increased crop yields, efficient resource use, and reduced environmental footprint. The objective of this systematic review is to explore the nexus between nanotechnology and agricultural systems, highlighting its potential to enhance productivity, sustainability, and resilience and to inform researchers, practitioners, and policymakers about the transformative impact of nanotechnology on sustainable agriculture and underscores the need for further research to address safety concerns and maximize its potential for agricultural advancement. Article highlights: A thorough study of nanotechnology's new method to lessen fertilizer and pesticide harmful impacts and their responsibilities. Developing an integrated approach for smart farming systems. A guide for future nanotechnology studies in agriculture suggests breakthroughs in biotic and abiotic remediation using nano-particles for a safe climate change scenario. Identifying setbacks, limitations, and solutions. [ABSTRACT FROM AUTHOR]
Databáze: Complementary Index