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<Articles><Article><Journal><PublisherName></PublisherName><JournalTitle>Journal of Environmental Health Science &amp; Engineering</JournalTitle><Volume>8</Volume><Issue>2</Issue></Journal><ArticleTitle>A COMPARATIVE STUDY ON ARSENIC (III) REMOVAL FROM AQUEOUS SOLUTION USING NANO AND MICRO SIZED ZERO-VALENT IRON</ArticleTitle><FirstPage>157</FirstPage><LastPage>166</LastPage><AuthorList><Author><FirstName>A.</FirstName><LastName>Rahmani</LastName></Author><Author><FirstName>H.</FirstName><LastName>Ghaffari</LastName></Author><Author><FirstName>M.</FirstName><LastName>Samadi</LastName></Author></AuthorList><History><PubDate PubStatus="received"><Year>2015</Year><Month>12</Month><Day>09</Day></PubDate></History><Abstract>The present study was conducted for Arsenic (III) removal, one of the
 most poisonous groundwater pollutants, by synthetic nano and micro size
 zerovalent iron (n-mZVI). Batch experiments were performed to 
investigate the influence of As (III), nZVI and mZVI concentration, pH 
of solution and reaction time on the efficiency of As (III) removal by 
Fe0 particles. Nano ZVI was synthesized by reduction of ferric chloride 
by sodium borohydrid. Scanning Electron microscope and X-Ray diffraction
 were used to determine particle size and characterization of produced 
nanoparticles. Results showed up to 99.9% removal efficiency for arsenic
 (III) that was obtained by nZVI dosage of 1 g/L at equal time of 10 min
 and pH=7. The maximum removal efficiency by mZVI obtained in initial 
arsenic concentration of 1 mg/L and mZVI dosage of 10 g/L after 120 min.
 and pH=7. It could be concluded that the removal efficiency was 
enhanced with increasing n-mZVI dosage and reaction time, but decreased 
with increasing of arsenic concentration and pH for both nano and micro 
sized ZVI. Nano ZVI presented an outstanding ability to remove As (III) 
due to not only a high surface area and low particle size but also to 
high inherent activity.</Abstract><web_url>https://ijehse.tums.ac.ir/index.php/jehse/article/view/292</web_url><pdf_url>https://ijehse.tums.ac.ir/index.php/jehse/article/download/292/291</pdf_url></Article></Articles>
