首页> 美国卫生研究院文献>PLoS Clinical Trials >Novel Applications for Oxalate-Phosphate-Amine Metal-Organic-Frameworks (OPA-MOFs): Can an Iron-Based OPA-MOF Be Used as Slow-Release Fertilizer?
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Novel Applications for Oxalate-Phosphate-Amine Metal-Organic-Frameworks (OPA-MOFs): Can an Iron-Based OPA-MOF Be Used as Slow-Release Fertilizer?

机译:草酸盐-磷酸盐-胺金属有机框架(OPA-MOF)的新应用:铁基OPA-MOF可以用作缓释肥料吗?

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摘要

A porous iron-based oxalate-phosphate-amine metal-organic framework material (OPA-MOF) was investigated as a microbially-induced slow-release nitrogen (N) and phosphorus (P) fertilizer. Seedling growth, grain yields, nutrient uptake of wheat plants, and soil dynamics in incubated soil, were investigated using OPA-MOF vs standard P (triple-superphosphate) and N (urea) fertilizers in an acidic Ferralsol at two application rates (equivalent 120 and 40 kg N ha-1). While urea hydrolysis in the OPA-MOF treatment was rapid, conversion of ammonium to nitrate was significantly inhibited compared to urea treatment. Reduced wheat growth in OPA-MOF treatments was not caused by N-deficiency, but by limited P-bioavailability. Two likely reasons were slow P-mobilisation from the OPA-MOF or rapid P-binding in the acid soil. P-uptake and yield in OPA-MOF treatments were significantly higher than in nil-P controls, but significantly lower than in conventionally-fertilised plants. OPA-MOF showed potential as enhanced efficiency N fertilizer. However, as P-bioavailability was insufficient to meet plant demands, further work should determine if P-availability may be enhanced in alkaline soils, or whether central ions other than Fe, forming the inorganic metal-P framework in the MOF, may act as a more effective P-source in acid soils.
机译:研究了一种多孔的铁基草酸盐-磷酸盐-胺金属-有机骨架材料(OPA-MOF),它是微生物诱导的缓释氮(N)和磷(P)肥料。使用OPA-MOF与标准P(三重过磷酸钙)和N(尿素)肥料在酸性Ferralsol中以两种施用量(相当于120)进行研究,研究了幼苗的生长,谷物产量,小麦植物的养分吸收以及培养土壤中的土壤动力学。和40 kg N ha -1 )。尽管尿素水解在OPA-MOF处理中迅速进行,但与尿素处理相比,氨向硝酸盐的转化受到显着抑制。 OPA-MOF处理中小麦生长减少的原因不是由于氮缺乏,而是由于磷的生物利用度有限。两种可能的原因是OPA-MOF的P迁移缓慢或在酸性土壤中的P快速结合。 OPA-MOF处理中的P吸收和产量显着高于nil-P对照,但显着低于常规受精植物。 OPA-MOF具有提高氮肥利用率的潜力。但是,由于磷的生物利用度不足以满足植物的需求,因此应进一步开展工作,以确定是否可以在碱性土壤中提高磷的利用度,或者除铁以外的形成MOF中无机金属-P骨架的中心离子是否可以用作磷。在酸性土壤中更有效的磷源。

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