Synthesis of a novel Fe-Mn binary oxide-modified lava adsorbent and its effect on ammonium removal from aqueous solutions

© 2019 Water Environment Federation.

Détails bibliographiques
Publié dans:Water environment research : a research publication of the Water Environment Federation. - 1998. - 92(2020), 6 vom: 18. Juni, Seite 850-864
Auteur principal: Zhao, Ziyi (Auteur)
Autres auteurs: He, Shuang, Li, Fayong, Jin, Yingbing, Khan, Sangar, Liu, Feng, Liang, Xinqiang
Format: Article en ligne
Langue:English
Publié: 2020
Accès à la collection:Water environment research : a research publication of the Water Environment Federation
Sujets:Journal Article Fe-Mn binary oxide adsorption mechanism ammonium adsorption aqueous solutions modified lava Ammonium Compounds Oxides Solutions
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520 |a Ammonium is strongly related to eutrophication and a key control of eutrophication in aquatic systems, especially in agricultural runoff. In this study, a novel Fe-Mn binary oxide-modified lava (FMML) granular adsorbent was synthesized for ammonium removal from aqueous solutions by co-precipitation method. The kinetic data were described by pseudo-second-order kinetic model well and intraparticle diffusion had effects on ammonium adsorption. For pH between 4.0 and 10.0, the adsorption efficiency was >80%, and its optimum was recorded at pH 7.0. FMML exhibited strong ammonium adsorption selectivity under the single presence of cations like Na+ , K+ , Ca2+ , and Mg2+ . The optimum adsorbent dose and particle size were 4 g/L and 3-5 mm, respectively, for an aqueous solution containing 10 mg/L of ammonium under normal conditions (298 K and pH 7.0). Furthermore, the adsorption process was endothermic, following both the Langmuir (R2  > 0.98) and Freundlich (R2  > 0.96) models. Compared with other adsorbents, the FMML can be prepared following a simpler protocol. After 30 times of adsorption-regeneration cycle, the FMML also had a relatively high ammonium adsorption capacity; hence, we see it as a prospective adsorbent for ammonium adsorption from aqueous solutions. PRACTITIONER POINTS: Fe-Mn binary oxide-modified lava with Fe/Mn ratio 3:1 was prepared using co-precipitation method. Adsorption maximum of modified lava was 20.8 mg/g (298 K and pH 7.0). Adsorption was sensitive to changes in adsorbent dose, particle size, and pH. Inorganic cations decreased ammonium adsorption in order of Na+  > K+  > Ca2+  > Mg2+ . Mechanisms for ammonium removal by FMML include diffusion, electrostatic attraction, oxidation, and complexation reaction 
650 4 |a Journal Article 
650 4 |a Fe-Mn binary oxide 
650 4 |a adsorption mechanism 
650 4 |a ammonium adsorption 
650 4 |a aqueous solutions 
650 4 |a modified lava 
650 7 |a Ammonium Compounds  |2 NLM 
650 7 |a Oxides  |2 NLM 
650 7 |a Solutions  |2 NLM 
700 1 |a He, Shuang  |e verfasserin  |4 aut 
700 1 |a Li, Fayong  |e verfasserin  |4 aut 
700 1 |a Jin, Yingbing  |e verfasserin  |4 aut 
700 1 |a Khan, Sangar  |e verfasserin  |4 aut 
700 1 |a Liu, Feng  |e verfasserin  |4 aut 
700 1 |a Liang, Xinqiang  |e verfasserin  |4 aut 
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773 1 8 |g volume:92  |g year:2020  |g number:6  |g day:18  |g month:06  |g pages:850-864 
856 4 0 |u http://dx.doi.org/10.1002/wer.1277  |3 Volltext 
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