Nanotechnology for waste water treatment

Nanotechnology for waste water treatment

Paperback (21 Aug 2012)

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Publisher's Synopsis

The photocatalytic degradation processes are gaining importance in the area of wastewater treatment, not only in academics also in industries, since these processes result in complete mineralization with operation at mild conditions of temperature & pressure. In this new era of nanotechnology Carbon based TiO2 composites have attracted much attention and become a very active field of research due to their unique properties & promising applications for the big problem of pollution. Our work deals with the comparison between photo-catalytic degradation of some textile Acid dyes using nano sized TiO2 & MWCNT-TiO2 thin films coated on various substrates. The synergistic effect has observed for nanocomposites of MWCNT/TiO2 on the photocatalytic degradation of acid-azo dyes. The higher photo-catalytic activity of the MWCNT-TiO2 composites might be attributed to the homogenous distribution of MWCNT-TiO2 complexes and play important role as an energy sensitizer for improving the quantum efficiency & a charge transfer of the MWCNT. From the experimental data it can be concluded that, the new hybrid MWCNTs/TiO2 composite are about 18 - 22 % efficient than pristine TiO2 as a photocatalyst.

About the Publisher

LAP Lambert Academic Publishing

Since Lambert Academic Publishing's foundation, thousands of top researchers and renowned scientists have embraced its unprecedented approach to free publishing, thereby making it a leader in the book publishing industry today. Research projects, dissertations, diploma theses, master theses and doctoral theses are given unparalleled visibility and global readership. Our catalogue consists of over 40,000 dissertations and theses, which are produced in the form of high-quality paperbacks in the USA, UK and Germany and distributed through an extensive network of major retailers.

Book information

ISBN: 9783659221316
Publisher: KS Omniscriptum Publishing
Imprint: LAP Lambert Academic Publishing
Pub date:
Language: English
Number of pages: 60
Weight: 100g
Height: 229mm
Width: 152mm
Spine width: 4mm