Wu Ke, Xu Xuebin, Ma Fei, Du Changwen
The State Key Laboratory of Soil and Sustainable Agriculture, Institute of Soil Science Chinese Academy of Sciences, Nanjing210008, China.
College of Environment and Ecology, Jiangsu Open University, Nanjing210017China.
ACS Omega. 2022 Sep 30;7(40):35970-35980. doi: 10.1021/acsomega.2c05093. eCollection 2022 Oct 11.
Due to the controlled-delivery function of metal-organic frameworks (MOFs) for gases, drugs, and pesticides, iron-based MOFs (Fe-MOFs) were explored in the laboratory as a novel fertilizer, which showed potential for use in the fertilizer industry; the challenge in the industrial scale application of Fe-MOFs in practical crop production was mainly the impact of scaling-up to energy and heat transfer, as well as the reaction yield. In this study, Fe-MOFs were hydrothermally synthesized both in the laboratory scale and in the pilot scale, their structure and components were characterized using various spectroscopic techniques, and then their nutrient release and degradation behaviors were investigated. The results showed that Fe-MOFs were successfully synthesized in both scales with similar yields around 27%, and the Fe-MOFs showed a similar structure with the molecular formula of CHFeNOP. The nutrients N, P, and Fe were present in the Fe-MOFs with the average contents of 6.03, 14.48, and 14.69%, respectively. Importantly, the nutrient release rate and pattern of Fe-MOFs well matched with the crop growth, which greatly promoted the rice yield. Therefore, the environmentally friendly compounds of Fe-MOFs could be industrially produced and used as an innovative fertilizer with unique features of varied nutrients and controlled release.
由于金属有机框架材料(MOFs)对气体、药物和农药具有控释功能,实验室对铁基金属有机框架材料(Fe-MOFs)作为新型肥料进行了探索,其在肥料行业显示出应用潜力;Fe-MOFs在实际作物生产中的工业规模应用面临的挑战主要是放大过程对能量和热传递以及反应产率的影响。本研究在实验室规模和中试规模上均水热合成了Fe-MOFs,利用各种光谱技术对其结构和成分进行了表征,然后研究了它们的养分释放和降解行为。结果表明,两个规模均成功合成了Fe-MOFs,产率相似,约为27%,且Fe-MOFs显示出相似的结构,分子式为CHFeNOP。Fe-MOFs中存在养分氮、磷和铁,平均含量分别为6.03%、14.48%和14.69%。重要的是,Fe-MOFs的养分释放速率和模式与作物生长良好匹配,极大地提高了水稻产量。因此,Fe-MOFs这种环境友好型化合物可以进行工业化生产,并用作具有多种养分和控释独特特性的创新肥料。