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Pretreatment methods ozone treatment

In recent years, efforts have been directed to develop surface pretreatment methods on PHAs for the introduction of polar groups without affecting their bulk properties. Among them, ozone, plasma, and alkali treatments are often used to modify the PHA surfaces. [Pg.152]

Many wastewater flows in industry can not be treated by standard aerobic or anaerobic treatment methods due to the presence of relatively low concentration of toxic pollutants. Ozone can be used as a pretreatment step for the selective oxidation of these toxic pollutants. Due to the high costs of ozone it is important to minimise the loss of ozone due to reaction of ozone with non-toxic easily biodegradable compounds, ozone decay and discharge of ozone with the effluent from the ozone reactor. By means of a mathematical model, set up for a plug flow reactor and a continuos flow stirred tank reactor, it is possible to calculate more quantitatively the efficiency of the ozone use, independent of reaction kinetics, mass transfer rates of ozone and reactor type. The model predicts that the oxidation process is most efficiently realised by application of a plug flow reactor instead of a continuous flow stirred tank reactor. [Pg.273]

The first method, although effective, was soon abandoned for safety reasons, while the use of chromic acid has been largely discontinued. The other two have remained the most widely used pre-treatments, not only for LDPE but also for high-density polyethylene (HDPE) and polypropylene (PP). Other methods have been found to be effective, but for reasons of cost, safety or convenience, they have not been widely used. The pre-treatments include fuming nitric acid, potassium permanganate, ammonium peroxydisulphate, ozone, fluorine, peroxides, UV radiation, grafting of polar monomers, plasmas (see Plasma pretreatment), electrochemical oxidation (see Electrochemical pre-treatment of polymers) and the use of solvent vapours. The corona, flame and plasma methods and the use of trichloroethylene are now discussed briefly the latter is included because it involves a different mechanism. [Pg.383]


See other pages where Pretreatment methods ozone treatment is mentioned: [Pg.151]    [Pg.148]    [Pg.7]    [Pg.7]    [Pg.529]    [Pg.465]    [Pg.263]    [Pg.156]    [Pg.203]    [Pg.104]    [Pg.11]    [Pg.307]    [Pg.1283]   
See also in sourсe #XX -- [ Pg.152 , Pg.154 ]




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