Published 1998 | Version v1
Miscellaneous Open

Wastewater purification. Combined electron-beam and ozone action in the aerosol flow

  • 1. Russian Academy of Sciences, Moscow (Russian Federation). Inst. of Physical Chemistry
  • 2. State Scientific Research Laser Center 'Raduga' (Russian Federation)

Description

Complete text of publication follows. Ozone is forming with high enough radiation chemical yield during work of electron accelerator. It is useful to use oxidizing properties of ozone with combination of ionizing radiation. The combined action of ionized radiation and ozone on aqueous solutions increases efficiency of water purification. But at the same time, this kind process of water purification is characterized by some limited stages: 1. Ozone mass transfer rate from gaseous phase (where it is formed) into liquid phase (where pollutants present); 2. Small solubility ozone in water; 3. High rate constant of radiation induced decomposition of ozone. We have proposed some optimizations for this kind of process. The most effective action of ionized radiation and radiolytic ozone on polluted water is running this process in aerosol flow. The highly developed surface of phase division is provided the maximum rate of reaction of ozone with pollutants. The volatile pollutants react with radiolytic ozone in gaseous phase in ozone creation moment. Ozonoradiolysis of real municipal wastewater in an aerosol flow was investigated on a facility with electron accelerator with electron energy E=0,3 MeV, power up to 15 kWatt, productivity 500 m3/day. Density of the irradiated aerosol was 0,02-0,05 g/cm3. It is increase low-energy electron range on 1-2 orders of magnitude as compared with liquid water and increases effective depth of uniformed irradiated layer. Because aerosol density is much higher compare with air density, it is clear, that water drops in aerosol flow absorbed main energy. The treated municipal wastewater in this facility was cleaned from organic and inorganic pollutants. COD and BOD values were reduced. Water disinfecting is achieved to sanitary standards

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Part of:
9. 'Tihany' symposium on radiation chemistry. Programme and abstracts

Additional details

Publishing Information

Imprint Title
9. 'Tihany' symposium on radiation chemistry. Programme and abstracts
Imprint Pagination
[162 p.]
Journal Page Range
p. O66
Report number
INIS-HU--001

Conference

Title
9. 'Tihany' symposium on radiation chemistry
Dates
29 Aug - 3 Sep 1998
Place
Tata (Hungary)

INIS

Optional Information