Catholic University of Zimbabwe Library
Online Public Access Catalogue
(OPAC)

Chemistry of Ozone in Water and Wastewater Treatment Clemens von Sonntag, Urs von Gunten.

By: von Sonntag, Clemens [author.]Contributor(s): von Gunten, Urs [author.]Material type: TextTextPublisher: IWA Publishing, Description: 1 online resource (1 p.)ISBN: 9781780400839Subject(s): Science / Applied Sciences | Technology & Engineering / Environmental | Science / Environmental Science (see Also Chemistry / Environmental) | ScienceGenre/Form: Electronic books.Online resources: View this content on Open Research Library. Summary: Even though ozone has been applied for a long time for disinfection and oxidation in water treatment, there is lack of critical information related to transformation of organic compounds. This has become more important in recent years, because there is considerable concern about the formation of potentially harmful degradation products as well as oxidation products from the reaction with the matrix components. In recent years, a wealth of information on the products that are formed has accumulated, and substantial progress in understanding mechanistic details of ozone reactions in aqueous solution has been made. Based on the latter, this may allow us to predict the products of as yet not studied systems and assist in evaluating toxic potentials in case certain classes are known to show such effects.  Keeping this in mind, Chemistry of Ozone in Water and Wastewater Treatment: From Basic Principles to Applications discusses mechanistic details of ozone reactions as much as they are known to date and applies them to the large body of studies on micropollutant degradation (such as pharmaceuticals and endocrine disruptors) that is already available. Extensively quoting the literature and updating the available compilation of ozone rate constants gives the reader a text at hand on which his research can be based. Moreover, those that are responsible for planning or operation of ozonation steps in drinking water and wastewater treatment plants will find salient information in a compact form that otherwise is quite disperse. A critical compilation of rate constants for the various classes of compounds is given in each chapter, including all the recent publications.  This is a very useful source of information for researchers and practitioners who need kinetic information on emerging contaminants. Furthermore, each chapter contains a large selection of examples of reaction mechanisms for the transformation of micropollutants such as pharmaceuticals, pesticides, fuel additives, solvents, taste and odor compounds, cyanotoxins.
Tags from this library: No tags from this library for this title.
Star ratings
    Average rating: 0.0 (0 votes)
Holdings
Item type Current library Call number URL Status Date due Barcode Item holds
eBook eBook Digital Library

Resources in this library are accessible in digital format e.g. eBooks or eJournals accessible online.

Online Access
Link to resource Available
Total holds: 0

Access copy available to the general public. Unrestricted star

Even though ozone has been applied for a long time for disinfection and oxidation in water treatment, there is lack of critical information related to transformation of organic compounds. This has become more important in recent years, because there is considerable concern about the formation of potentially harmful degradation products as well as oxidation products from the reaction with the matrix components. In recent years, a wealth of information on the products that are formed has accumulated, and substantial progress in understanding mechanistic details of ozone reactions in aqueous solution has been made. Based on the latter, this may allow us to predict the products of as yet not studied systems and assist in evaluating toxic potentials in case certain classes are known to show such effects.  Keeping this in mind, Chemistry of Ozone in Water and Wastewater Treatment: From Basic Principles to Applications discusses mechanistic details of ozone reactions as much as they are known to date and applies them to the large body of studies on micropollutant degradation (such as pharmaceuticals and endocrine disruptors) that is already available. Extensively quoting the literature and updating the available compilation of ozone rate constants gives the reader a text at hand on which his research can be based. Moreover, those that are responsible for planning or operation of ozonation steps in drinking water and wastewater treatment plants will find salient information in a compact form that otherwise is quite disperse. A critical compilation of rate constants for the various classes of compounds is given in each chapter, including all the recent publications.  This is a very useful source of information for researchers and practitioners who need kinetic information on emerging contaminants. Furthermore, each chapter contains a large selection of examples of reaction mechanisms for the transformation of micropollutants such as pharmaceuticals, pesticides, fuel additives, solvents, taste and odor compounds, cyanotoxins.

Description based on print version record.

KU Select 2019: STEM Backlist Books

There are no comments on this title.

to post a comment.

OPENING HOURS

Weekdays: 0815hrs - 1800hrs
Weekends:0900hrs - 1200hrs

Closed for Mass:

Mon, Thur: 1200hrs - 1300hrs
Sunday & Public Holiday’s

CALL SUPPORT

0242-570570, 0242-570169
09200664, +263 8644140602

LOCATION

18443, Cranborne Avenue, Hatfield, Harare

Other Links


©2021 | CUZ Library