Mandal Manas, Singh Lodhi Roop, Chourasia Shivangi, Das Subhasis, Das Paramita
Department of Chemical Engineering, Indian Institute of Science Education and Research Bhopal, Bhopal, 462066, Madhya Pradesh, India.
Environmental and Industrial Biotechnology Division, The Energy and Resources Institute, New Delhi, 110003, India.
Chempluschem. 2025 Mar;90(3):e202400643. doi: 10.1002/cplu.202400643. Epub 2025 Jan 16.
The agricultural sector of any country plays a pivotal role in its economy. Irrigation and the provision of appropriate nutrient levels in soil are essential for optimizing plant growth and enhancing crop productivity. To support the increasing need for food due to the growing population worldwide, synthetic fertilizers have been widely used in the agricultural sector. These fertilizers could readily dissolve in the irrigation water or soil moisture, causing excessive release of the nutrients that plants cannot uptake from the root zone. The excess nutrients in the soil further harm the environment via surface run-off, leaching, and volatilization. Thus, materials with high water absorption and retention capacity, and precise control over the prolonged fertilizer release offer a potential solution to address these issues. To meet these requirements, the development of slow-release fertilizer hydrogels (SRFHs) represents a promising approach. SRFHs serve as natural agrochemicals to enhance crop growth and yield through controlled and self-sustained delivery of water and nutrients. This review provides a comprehensive study on the recent advancements in SRFHs, including their preparation methods, properties, slow-release behavior, and applications in smart agriculture. The response of soil microbial diversity to slow-release fertilizers is briefly discussed, and the future potential of SRFHs is highlighted herein.
任何国家的农业部门在其经济中都起着关键作用。灌溉以及在土壤中提供适当的养分水平对于优化植物生长和提高作物产量至关重要。为了满足全球人口增长对粮食日益增长的需求,合成肥料已在农业部门广泛使用。这些肥料很容易溶解在灌溉水或土壤水分中,导致养分过度释放,而植物无法从根区吸收这些养分。土壤中的过量养分通过地表径流、淋溶和挥发进一步危害环境。因此,具有高吸水和保水能力以及对延长肥料释放进行精确控制的材料为解决这些问题提供了一种潜在的解决方案。为了满足这些要求,缓释肥料水凝胶(SRFHs)的开发是一种很有前景的方法。SRFHs作为天然农用化学品,通过可控和自持的水和养分输送来促进作物生长和提高产量。本综述对SRFHs的最新进展进行了全面研究,包括其制备方法、性质、缓释行为以及在智能农业中的应用。简要讨论了土壤微生物多样性对缓释肥料的响应,并在此强调了SRFHs的未来潜力。