Ferrate (Fe(VI)) has high potentials as a multi-purpose water treatment chemical acting as an oxidant, coagulant, and disinfectant, but little detail has been reported concerning its biocidal ability. In this study, the inactivation efficiencies of three Fe(VI) species (HxFeO4x-2, x = 0, 1, 2) are quantified using Escherichia coli as a model microorganism. E. coli inactivation by Fe(VI) was performed in solutions buffered with 25 mM phosphate in the pH range of 5.6-8.2 and at 25 degrees C. Kinetics of E. coli inactivation were successfully fitted to the Modified Delayed Chick-Watson model in the tested pH range, indicating that log inactivation level of E. coli is linearly proportional to exposure amount of E. coli to Fe(VI). The rate const...
This study demonstrates the inactivation of MS2 coliphage (MS2) by nano particulate zerovalent iron ...
The mechanism of Escherichia coli inactivation by nanoparticulate zerovalent iron (nZVI) and Fe(II) ...
This paper aims to explore potassium ferrate(VI) (K2FeO4) as an alternative water treatment chemical...
The use of potassium ferrate(VI) as an alternative water remediation chemical has been studied and i...
Electrochemical ferrous iron (Fe2+) wastewater treatment is gaining momentum for treating municipal ...
Iron(VI) and iron(V), known as ferrates, are powerful oxidants and their reactions with pollutants a...
This study examined whether ferrate could meet the international standards for successful ballast wa...
Electrochemical water treatment is gaining increasing popularity due to its wide range of potential ...
Zero-valent iron nanoparticles (nano-Fe0) in aqueous solution rapidly inactivated Escherichia coli. ...
This work assesses the potential activation of peroxymonosulfate (PMS, HSO5 −) and persulfate (PS, S...
This study examined whether ferrate could meet the international standards for successful ballast wa...
Ferrate [Fe(VI); FeO<sub>4</sub><sup>2–</sup>] is an emerging oxidizing agent capable of controllin...
Due to the quick growth in human population and subsequently a high rate of urbanization, fresh wate...
Practical applications of disinfection technologies for engineered waters require an in‒depth under-...
Iron-based disinfection has been promoted as a potential low-cost, low-byproduct means of virus miti...
This study demonstrates the inactivation of MS2 coliphage (MS2) by nano particulate zerovalent iron ...
The mechanism of Escherichia coli inactivation by nanoparticulate zerovalent iron (nZVI) and Fe(II) ...
This paper aims to explore potassium ferrate(VI) (K2FeO4) as an alternative water treatment chemical...
The use of potassium ferrate(VI) as an alternative water remediation chemical has been studied and i...
Electrochemical ferrous iron (Fe2+) wastewater treatment is gaining momentum for treating municipal ...
Iron(VI) and iron(V), known as ferrates, are powerful oxidants and their reactions with pollutants a...
This study examined whether ferrate could meet the international standards for successful ballast wa...
Electrochemical water treatment is gaining increasing popularity due to its wide range of potential ...
Zero-valent iron nanoparticles (nano-Fe0) in aqueous solution rapidly inactivated Escherichia coli. ...
This work assesses the potential activation of peroxymonosulfate (PMS, HSO5 −) and persulfate (PS, S...
This study examined whether ferrate could meet the international standards for successful ballast wa...
Ferrate [Fe(VI); FeO<sub>4</sub><sup>2–</sup>] is an emerging oxidizing agent capable of controllin...
Due to the quick growth in human population and subsequently a high rate of urbanization, fresh wate...
Practical applications of disinfection technologies for engineered waters require an in‒depth under-...
Iron-based disinfection has been promoted as a potential low-cost, low-byproduct means of virus miti...
This study demonstrates the inactivation of MS2 coliphage (MS2) by nano particulate zerovalent iron ...
The mechanism of Escherichia coli inactivation by nanoparticulate zerovalent iron (nZVI) and Fe(II) ...
This paper aims to explore potassium ferrate(VI) (K2FeO4) as an alternative water treatment chemical...