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Thermally Modified Palygorskite Usage as Adsorbent in Fixed-Bed Reactor for High Concentration NH(4)(+)-N Removal and Further Application as N—Fertilizer in Hydroponic Cultivation

Palygorskite sample (Pal) underwent thermal treatment at 400 °C (T-Pal) to be used as adsorbent for the removal of 200 mg NH(4)(+)-N/L from artificial solution. After thermal treatment, the sample was characterized via X-ray diffraction (XRD) and scanning electron microscopy (SEM). For NH(4)(+)-N re...

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Autores principales: Lazaratou, Christina Vasiliki, Panagopoulos, Stylianos Dimitrios, Vayenas, Dimitrios V., Panagiotaras, Dionisios, Papoulis, Dimitrios
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9573168/
https://www.ncbi.nlm.nih.gov/pubmed/36233891
http://dx.doi.org/10.3390/ma15196541
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author Lazaratou, Christina Vasiliki
Panagopoulos, Stylianos Dimitrios
Vayenas, Dimitrios V.
Panagiotaras, Dionisios
Papoulis, Dimitrios
author_facet Lazaratou, Christina Vasiliki
Panagopoulos, Stylianos Dimitrios
Vayenas, Dimitrios V.
Panagiotaras, Dionisios
Papoulis, Dimitrios
author_sort Lazaratou, Christina Vasiliki
collection PubMed
description Palygorskite sample (Pal) underwent thermal treatment at 400 °C (T-Pal) to be used as adsorbent for the removal of 200 mg NH(4)(+)-N/L from artificial solution. After thermal treatment, the sample was characterized via X-ray diffraction (XRD) and scanning electron microscopy (SEM). For NH(4)(+)-N removal, T-Pal was added as a bed matrix in fixed-bed reactor experiments and the effect of flow rate was determined. It was indicated that with the flow rate increase from 10 mL/min to 50 mL/min, fewer liters of the solution were purified, rendering a longer residual time of interactions, which is optimal for NH(4)(+)-N removal from T-Pal. The maximum removed amount was calculated at 978 mg NH(4)(+)-N (q(total)), suggesting T-Pal is a promising ammonium adsorbent. The data of kinetic experiments were applied to Clark, Yoon–Nelson, and Thomas kinetic models, with Clark having the best fit, highlighting a heterogenous adsorption. At the end of kinetic experiments, T-Pal applied in hydroponic cultivations and presented a sufficient release rate, which was found utilizable for saturated T-Pal usage as N fertilizer that satisfactory results were deemed concerning lettuces characteristics and growth.
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spelling pubmed-95731682022-10-17 Thermally Modified Palygorskite Usage as Adsorbent in Fixed-Bed Reactor for High Concentration NH(4)(+)-N Removal and Further Application as N—Fertilizer in Hydroponic Cultivation Lazaratou, Christina Vasiliki Panagopoulos, Stylianos Dimitrios Vayenas, Dimitrios V. Panagiotaras, Dionisios Papoulis, Dimitrios Materials (Basel) Article Palygorskite sample (Pal) underwent thermal treatment at 400 °C (T-Pal) to be used as adsorbent for the removal of 200 mg NH(4)(+)-N/L from artificial solution. After thermal treatment, the sample was characterized via X-ray diffraction (XRD) and scanning electron microscopy (SEM). For NH(4)(+)-N removal, T-Pal was added as a bed matrix in fixed-bed reactor experiments and the effect of flow rate was determined. It was indicated that with the flow rate increase from 10 mL/min to 50 mL/min, fewer liters of the solution were purified, rendering a longer residual time of interactions, which is optimal for NH(4)(+)-N removal from T-Pal. The maximum removed amount was calculated at 978 mg NH(4)(+)-N (q(total)), suggesting T-Pal is a promising ammonium adsorbent. The data of kinetic experiments were applied to Clark, Yoon–Nelson, and Thomas kinetic models, with Clark having the best fit, highlighting a heterogenous adsorption. At the end of kinetic experiments, T-Pal applied in hydroponic cultivations and presented a sufficient release rate, which was found utilizable for saturated T-Pal usage as N fertilizer that satisfactory results were deemed concerning lettuces characteristics and growth. MDPI 2022-09-21 /pmc/articles/PMC9573168/ /pubmed/36233891 http://dx.doi.org/10.3390/ma15196541 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lazaratou, Christina Vasiliki
Panagopoulos, Stylianos Dimitrios
Vayenas, Dimitrios V.
Panagiotaras, Dionisios
Papoulis, Dimitrios
Thermally Modified Palygorskite Usage as Adsorbent in Fixed-Bed Reactor for High Concentration NH(4)(+)-N Removal and Further Application as N—Fertilizer in Hydroponic Cultivation
title Thermally Modified Palygorskite Usage as Adsorbent in Fixed-Bed Reactor for High Concentration NH(4)(+)-N Removal and Further Application as N—Fertilizer in Hydroponic Cultivation
title_full Thermally Modified Palygorskite Usage as Adsorbent in Fixed-Bed Reactor for High Concentration NH(4)(+)-N Removal and Further Application as N—Fertilizer in Hydroponic Cultivation
title_fullStr Thermally Modified Palygorskite Usage as Adsorbent in Fixed-Bed Reactor for High Concentration NH(4)(+)-N Removal and Further Application as N—Fertilizer in Hydroponic Cultivation
title_full_unstemmed Thermally Modified Palygorskite Usage as Adsorbent in Fixed-Bed Reactor for High Concentration NH(4)(+)-N Removal and Further Application as N—Fertilizer in Hydroponic Cultivation
title_short Thermally Modified Palygorskite Usage as Adsorbent in Fixed-Bed Reactor for High Concentration NH(4)(+)-N Removal and Further Application as N—Fertilizer in Hydroponic Cultivation
title_sort thermally modified palygorskite usage as adsorbent in fixed-bed reactor for high concentration nh(4)(+)-n removal and further application as n—fertilizer in hydroponic cultivation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9573168/
https://www.ncbi.nlm.nih.gov/pubmed/36233891
http://dx.doi.org/10.3390/ma15196541
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