Economic Techniques for Effluent Treatment - Development of Ion Exchange Resins of Natural Polymers & Zeolite from Fly Ash for Effluent Treatment

by Solanki, Parag
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Solanki, Parag Economic Techniques for Effluent Treatment - Development of Ion Exchange Resins of Natural Polymers & Zeolite from Fly Ash for Effluent Treatment
Solanki, Parag - Economic Techniques for Effluent Treatment - Development of Ion Exchange Resins of Natural Polymers & Zeolite from Fly Ash for Effluent Treatment

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Description

Water is an essential resource for living systems, industrial processes, agricultural production and domestic use. It is one of the most precious gift of nature without which no life could survive on earth. In the recent past several studies have reported the water bodies becoming increasingly contaminated due to domestic and industrial waste. Water pollution affects our oceans, lakes, rivers, and drinking water, making it a widespread and global concern. This research focuses on synthesis of natural polymer based new resins and fly ash based zeolites for developing a cost effective technology for treatment of heavy metals, contaminated industrial waste water. Main toxic hazardous metal ions present in the various effluents are Fe, Cu, Pb, Al, Cr, Cd, Zn, Ni etc. Fly ash is byproduct of thermal power plants. This ash is waste for them so it is easily available & economy. Synthesis of zeolites from fly ash is a better way for utilization of waste fly ash for the effluent treatment.

Contributors

Author:
Solanki, Parag
Gupta, Vikal

Further information

Biography Artist:
Dr.Parag Solanki has obtained PhD degree in Applied Chemistry from J.N.V.University,Jodhpur,India. Since then he has worked in different projects in the field of Thermal Power Plant,Cement Industries & Construction Chemicals. He is the author of several articles published in the reputed journals.
Language:
English
Number of Pages:
188
Media Type:
Softcover
Publisher:
LAP Lambert Academic Publishing

Master Data

Product Type:
Paperback book
Release date:
10 July 2012
Package Dimensions:
0.22 x 0.15 x 0.011 m; 0.327 kg
GTIN:
09783659152399
DUIN:
C0HV1UKM3V8
£53.90
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