Enhancing soil health with increasing the nitrogen content of zeolite-based fertilizers for agricultural applications.

Zeolite-based-fertilizers can be obtained by adsorbing plant nutrients to their porous structure. In this research, the natural zeolite (0–200 μm) from Gordes/Türkiye was combined with NH4NO3 in a 1:4 solid ratio and processed at 200 °C for 2–24 hours and characterized with diffrent techniques. The...

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Publicado en:International Journal of Environmental Health Research Vol. 35; no. 10; pp. 2912 - 2929
Autores principales: Oguz, Melike, Arslan, Hakan
Formato: pictorial research tables/charts Journal Article
Publicado: Taylor & Francis Ltd Oct2025
Acceso en línea:Ver este registro en EBSCOhost
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      dt: Oct2025
      vid: 35
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      pub: Taylor & Francis Ltd
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        10.1080/09603123.2025.2465856
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        atl: Enhancing soil health with increasing the nitrogen content of zeolite-based fertilizers for agricultural applications.
      aug:
        au:
          Oguz, Melike
          Arslan, Hakan
        affil: Faculty of Science, Department of Chemistry, Mersin University, Mersin, Türkiye
      sug:
        subj:
          Soil Analysis
          Nitrogen Analysis
          Aluminum Silicates Analysis
          Fertilizers Analysis
          Adsorption
          Agriculture
          Human
          Turkiye
          Experimental Studies
          Comparative Studies
          Temperature
          X-Rays
          Microscopy, Electron
          Ammonia Analysis
          Nitrates Analysis
          Spectrophotometry, Infrared
          Nitrogen Compounds Analysis
      ab: Zeolite-based-fertilizers can be obtained by adsorbing plant nutrients to their porous structure. In this research, the natural zeolite (0–200 μm) from Gordes/Türkiye was combined with NH4NO3 in a 1:4 solid ratio and processed at 200 °C for 2–24 hours and characterized with diffrent techniques. The optimal synthesis time was 8 hours, yielding a fertilizer with 5.06% nitrogen content. The zeolite-based-fertilizer exhibited a clinoptilolite structure similar to the raw zeolite but demonstrated a greater percentage of mass loss in the DTA/TGA analyses and distinct nitrate peaks in the FTIR spectra, attributable to ammonium nitrate adsorption. The BET results showed a decrease in the BET surface area after the adsorption of NH4NO3 onto natural zeolite, with measured values of 34.56 m²/g for natural zeolite and 19.24 m²/g for zeolite-based-fertilizer. The results indicate successful synthesis of a zeolite-based nitrogen fertilizer with potential compatibility with Green Deal goals.
      pubtype: Academic Journal
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        research
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      ougenre: Article
    language: English
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