Literature DB >> 11057603

Quantitation of hydroxyl radical during fenton oxidation following a single addition of iron and peroxide.

M E Lindsey1, M A Tarr.   

Abstract

Chemical probes were used to study the formation of hydroxyl radical in aqueous iron-hydrogen peroxide reaction. Hydroxyl radical formation rate and time dependent concentration were determined in pure water, in aqueous fulvic acid (FA) and humic acid (HA) solutions, and in natural surface waters. Indirect determinations of hydroxyl radical were made by quantitating hydroxyl radical reactions with probe compounds under controlled conditions. High probe concentrations were used to determine radical formation rates and low probe concentrations were used to determine time dependent radical concentration. Two independent probes were used for intercomparison: benzoic acid and 1-propanol. Good agreement between the two probes was observed. Natural water matrices resulted in lower radical formation rates and lower hydroxyl radical concentrations, with observed formation rate and yield in natural waters up to four times lower than in pure water. HA and FA also reduced hydroxyl radical formation under most conditions, although increased radical formation was observed with FA at certain pH values. Hydroxyl radical formation increased linearly with hydrogen peroxide concentration.

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Year:  2000        PMID: 11057603     DOI: 10.1016/s0045-6535(99)00296-9

Source DB:  PubMed          Journal:  Chemosphere        ISSN: 0045-6535            Impact factor:   7.086


  15 in total

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Authors:  Jie-Chung Lou; Yu-Jen Huang
Journal:  Environ Monit Assess       Date:  2008-04-16       Impact factor: 2.513

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Authors:  Guo-Xin Sun; Jian-Jiang Zhong
Journal:  Appl Environ Microbiol       Date:  2006-09-22       Impact factor: 4.792

3.  Hydrothermal electrocatalytic oxidation for the treatment of herbicides wastewater.

Authors:  Hanshuang Xiao; Baoying Lv; Junxia Gao; Guohua Zhao
Journal:  Environ Sci Pollut Res Int       Date:  2016-02-11       Impact factor: 4.223

4.  Organic additives enhance Fenton treatment of nitrobenzene at near-neutral pH.

Authors:  Gang Xie; Lincheng Zhou; Weijie Gao; Yanfeng Li
Journal:  Environ Sci Pollut Res Int       Date:  2014-12-12       Impact factor: 4.223

5.  Effect of benzoic acid on the removal of 1,2-dichloroethane by a siderite-catalyzed hydrogen peroxide and persulfate system.

Authors:  Shengpin Li; Mengjiao Li; Ximing Luo; Guoxin Huang; Fei Liu; Honghan Chen
Journal:  Environ Sci Pollut Res Int       Date:  2015-08-27       Impact factor: 4.223

6.  Impact of ultrasonic treatment on dewaterability of sludge during Fenton oxidation.

Authors:  Jianguo Jiang; Changxiu Gong; Sicong Tian; Shihui Yang; Yujing Zhang
Journal:  Environ Monit Assess       Date:  2014-08-10       Impact factor: 2.513

7.  Degradation of trichloroethene by siderite-catalyzed hydrogen peroxide and persulfate: Investigation of reaction mechanisms and degradation products.

Authors:  Ni Yan; Fei Liu; Qiang Xue; Mark L Brusseau; Yali Liu; Junjie Wang
Journal:  Chem Eng J       Date:  2015-08-15       Impact factor: 13.273

8.  Solar photo-Fenton treatment of microcystin-LR in aqueous environment: Transformation products and toxicity in different water matrices.

Authors:  Akin Karci; Elizabeth M Wurtzler; Armah A de la Cruz; David Wendell; Dionysios D Dionysiou
Journal:  J Hazard Mater       Date:  2018-01-02       Impact factor: 10.588

9.  Degradation of 1,2-dichloroethane from wash water of ion-exchange resin using Fenton's oxidation.

Authors:  Miia Vilve; Sari Vilhunen; Mikko Vepsäläinen; Tonni Agustiono Kurniawan; Niina Lehtonen; Hannu Isomäki; Mika Sillanpää
Journal:  Environ Sci Pollut Res Int       Date:  2010-01-26       Impact factor: 4.223

10.  Preparation and Application of Immobilized Surfactant-Modified PANi-CNT/TiO₂ under Visible-Light Irradiation.

Authors:  Ching Yuan; Chung-Hsuang Hung; Chung-Shin Yuan; Huei-Wen Li
Journal:  Materials (Basel)       Date:  2017-07-29       Impact factor: 3.623

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