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<Articles><Article><Journal><PublisherName></PublisherName><JournalTitle>Journal of Environmental Health Science &amp; Engineering</JournalTitle><Volume>8</Volume><Issue>1</Issue></Journal><ArticleTitle>REMOVAL OF METHYLENE BLUE DYE FROM TEXTILE SIMULATED SAMPLE USING TUBULAR REACTOR AND TiO2/UV-C PHOTOCATALYTIC PROCESS</ArticleTitle><FirstPage>34</FirstPage><LastPage>40</LastPage><AuthorList><Author><FirstName>M.</FirstName><LastName>Ehrampoosh</LastName></Author><Author><FirstName>GH .</FirstName><LastName>Moussavi</LastName></Author><Author><FirstName>M.</FirstName><LastName>Ghaneian</LastName></Author><Author><FirstName>S.</FirstName><LastName>Rahimi</LastName></Author><Author><FirstName>M.</FirstName><LastName>Ahmadian</LastName></Author></AuthorList><History><PubDate PubStatus="received"><Year>2015</Year><Month>12</Month><Day>09</Day></PubDate></History><Abstract>In this study, photocatalytic degradation of methylene blue was examined using different concentrations of TiO2 nano-particles (diameters less than 21 nm) and ultraviolet (UV-C) radiation in a tubular reactor. Different concentrations of catalyst (0.3-1.2 g/L), different pH conditions (3, 7 and 9) and dye concentration (15, 30 and 60 mg/L) as well as sample rotation level (125 mL/min) were studied. The sample passed 1-7 times through the quartz reactor exposed to UV-C ray (constant intensity = 2.8 mW/cm2) (every rotation time was 8 min). Results of this research showed clearly that methylene blue is significantly degradable by TiO2 and UV-C radiation. Increasing dye concentration resulted in decreased efficiency and thus, as more samples passed through quarts tube, removal efficiency increased. Methylene blue with concentration of 15 mg/L and after 7 rotations in the reactor (56 min) was removed with the efficiency of 98%. Subsequent to dye removal, 47% of initial COD decreased simultaneously.</Abstract><web_url>https://ijehse.tums.ac.ir/index.php/jehse/article/view/282</web_url><pdf_url>https://ijehse.tums.ac.ir/index.php/jehse/article/download/282/281</pdf_url></Article></Articles>
