Beta-FeOOH nanoparticles: a promising nano-based material for water treatment and remediation

被引:0
作者
Michael Ovbare Akharame
Bamidele Oladapo Fagbayigbo
Omoniyi Pereao
Ogheneochuko Utieyin Oputu
Daniel Ikudayisi Olorunfemi
Olalekan Siyanbola Fatoki
Beatrice Olutoyin Opeolu
机构
[1] Cape Peninsula University of Technology,Department of Chemistry
[2] University of Benin,Department of Environmental Management and Toxicology
[3] Cape Peninsula University of Technology,Department of Environmental and Occupational Health
来源
Journal of Nanoparticle Research | 2021年 / 23卷
关键词
Beta-FeOOH; Nanoparticles; Nanotechnology; Water treatment and remediation; Environmental effects;
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摘要
The use of nanomaterials in water treatment operations has taken a prominent position in recent years due to the perceived outstanding efficiencies and outputs. The selection of appropriate nanoparticles from the plethora available for application in large-scale projects is still a daunting challenge. Beta-FeOOH (β-FeOOH) has been identified as a non-toxic, low cost and easy to synthesize nanomaterial. Furthermore, it possesses adsorptive, catalytic, ion-exchange properties, and also monitoring functionalities. This review highlights the potential of β-FeOOH as a promising nano-based option for water treatment operations. The natural occurrences and reported synthesis methods and procedures are discussed, as well as the characteristics and properties which make it a choice candidate to consider for large-scale water treatment processes. Advances on the application of β-FeOOH and its composites in water treatment and remediation processes are highlighted and profiled to emphasize its potential. The future outlook on the β-FeOOH synthesis and application procedure was also discussed.
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[1]  
Akharame MO(2018)Polymeric nanocomposites (PNCs) for wastewater remediation: an overview Polym Plast Technol Eng 57 1801-1827
[2]  
Fatoki OS(2019)Regeneration and reuse of polymeric nanocomposites in wastewater remediation: the future of economic water management Polym Bull 76 647-681
[3]  
Opeolu BO(1999)β-FeOOH, a new positive electrode material for lithium secondary batteries J Power Sources 81 221-223
[4]  
Olorunfemi DI(2003)Akaganeite and goethite-type nanocrystals: synthesis and characterization Micropor Mesopor Mat 59 35-42
[5]  
Oputu OU(2009)Bromate removal from water by granular ferric hydroxide (GFH) J Hazard Mater 170 134-140
[6]  
Akharame MO(2011)Akaganéite (β-FeOOH) precipitation in inland acid sulfate soils of South-Western New South Wales (NSW), Australia Geochim Cosmochim Acta 75 6429-6438
[7]  
Fatoki OS(1989)Phase transformations of iron oxides, oxohydroxides, and hydrous oxides in aqueous media Adv Colloid Interf Sci 29 173-221
[8]  
Opeolu BO(1928)XXXII. Röntgenographische Untersuchung der mikrokristallinen Eisenhydroxydminerale Z Kristallogr Cryst Mater 68 567-585
[9]  
Amine K(2009)Photosynthetic microorganism-mediated synthesis of akaganeite (β-FeOOH) nanorods Langmuir 25 10062-10067
[10]  
Yasuda H(1989)Corrosion of Fe-Ni alloys by Cl-containing akaganeite (β-FeOOH); the antarctic meteorite case Am Mineral 74 656-667