Verma Lahur Mani, Kumar Ajay, Kumar Ashwani, Singh Garima, Singh Umesh, Chaudhary Shivani, Kumar Sachin, Sanwaria Anita Raj, Ingole Pravin P, Sharma Satyawati
Biomass Technology Laboratory, Centre for Rural Development and Technology (CRDT), Indian Institute of Technology Delhi (IITD), Room No. 289, Block-III, Main Building Hauz Khas, New Delhi, 110016, India.
Electrophysical Laboratory, Department of Chemistry, IIT Delhi, New Delhi, 110016, India.
Sci Rep. 2024 Feb 19;14(1):4074. doi: 10.1038/s41598-024-53682-0.
Nanotechnology appears to be a promising tool to redefine crop nutrition in the coming decades. However, the crucial interactions of nanomaterials with abiotic components of the environment like soil organic matter (SOM) and carbon‒sequestration may hold the key to sustainable crop nutrition, fortification, and climate change. Here, we investigated the use of sugar press mud (PM) mediated ZnO nanosynthesis for soil amendment and nutrient mobilisation under moderately alkaline conditions. The positively charged (+ 7.61 mv) ZnO sheet-like nanoparticles (~ 17 nm) from zinc sulphate at the optimum dose of (75 mg/kg blended with PM (1.4% w/w) were used in reinforcing the soil matrix for wheat growth. The results demonstrated improved agronomic parameters with (~ 24%) and (~ 19%) relative increases in yield and plant Zn content. Also, the soil solution phase interactions of the ZnO nanoparticles with the PM-induced soil colloidal carbon (- 27.9 mv and diameter 0.4864 μm) along with its other components have influenced the soil nutrient dynamics and mineral ecology at large. Interestingly, one such interaction seems to have reversed the known Zn-P interaction from negative to positive. Thus, the study offers a fresh insight into the possible correlations between nutrient interactions and soil carbon sequestration for climate-resilient crop productivity.
在未来几十年里,纳米技术似乎是重新定义作物营养的一种很有前景的工具。然而,纳米材料与土壤有机质(SOM)等非生物环境成分的关键相互作用以及碳固存可能是可持续作物营养、强化和应对气候变化的关键。在此,我们研究了在中等碱性条件下,利用糖厂滤泥(PM)介导的氧化锌纳米合成进行土壤改良和养分活化。在最佳剂量(75毫克/千克与1.4%(w/w)的PM混合)下,由硫酸锌制备的带正电荷(+7.61毫伏)的片状氧化锌纳米颗粒(约17纳米)被用于强化土壤基质以促进小麦生长。结果表明,农艺参数得到改善,产量和植株锌含量分别相对增加了约24%和约19%。此外,氧化锌纳米颗粒与PM诱导的土壤胶体碳(-27.9毫伏,直径0.4864微米)及其其他成分在土壤溶液相中的相互作用,在很大程度上影响了土壤养分动态和矿物生态。有趣的是,其中一种相互作用似乎使已知的锌-磷相互作用从负相关转变为正相关。因此,该研究为气候适应型作物生产力的养分相互作用与土壤碳固存之间的可能关联提供了新的见解。