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High selectivity and affinity of synthetic Phillipsite compared with natural Phillipsite towards ammonium (NH4+) and its potential as a slow release fertilizer

机译:合成的Phillipsite与天然Phillipsite对铵(NH4 +)相比具有很高的选择性和亲和性,并且具有作为缓释肥料的潜力

摘要

Phillipsite (PHI) was synthesized in Na-K form, ion exchanged with NH4NO3 and compared with its natural counterpart. Zeolites were then characterized before and after ion exchange by X-ray diffraction, X-ray fluorescence, Thermogravimetric analysis and scanning electron microscopy. Ammonium exchanged Phillipsites were introduced as a soil amendment (2, 4 and 8% zeolite to soiludloadings) to study the growth of maize (Zea mays) and compared with a control comprising NPK fertilizer added to soil. The affinity of the zeolite mineral Phillipsite for NH4+udin the presence of other cations is demonstrated by soil nutrient status. Results demonstrated that synthetic Phillipsite had a very high affinity towards NH4+ when introduced as a soil amendment, compared with its natural counterpart. Results were promising for ion exchange reactions in a zeolite-soil system, whereby cations present in soil exchanged for K+ more freely than NH4+ present in the synthetic Phillipsite framework.
机译:以Na-K形式合成了Phillipsite(PHI),并与NH4NO3进行了离子交换,并与其天然对位物进行比较。然后在离子交换之前和之后通过X射线衍射,X射线荧光,热重分析和扫描电子显微镜对沸石进行表征。引入铵交换的菲利普特斯作为土壤改良剂(2、4和8%沸石对土壤重载物质)以研究玉米(玉米(Zea mays))的生长,并将其与向土壤中添加NPK肥料的对照进行比较。通过土壤养分状况证明了沸石矿物辉石对其他阳离子存在下的NH4 + udin的亲和力。结果表明,与天然替代物相比,人工合成的菲利特作为土壤改良剂引入时对NH4 +具有很高的亲和力。在沸石-土壤系统中进行离子交换反应的结果令人鼓舞,据此,土壤中存在的阳离子比合成菲利普利特骨架中存在的NH4 +更自由地交换K +。

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