Published 2016 | Version v1
Miscellaneous Open

Degradation Of Aggregate Pollutant In Textiles Wastewater By Electron Beam Irradiation

  • 1. Malaysian Nuclear Agency, Bangi, Kajang, Selangor (Malaysia), Radiation Processing Technology Div.
  • 2. Universiti Kebangsaan Malaysia (UKM), Bangi, Kajang, Selangor (Malaysia)

Description

Aggregate pollutant were refer to the mixture of the excess material that is used in the manufacturing proses of textiles, present in wastewater. This paper studies the effect of the beam energy, beam current and absorbed dose on degradation of aggregate pollutant in textiles effluent which was indicate by COD, pH and UV-Vis spectrum. The impact of beam energy was conducted when sample were exposed to the irradiation at various beam energy (1 to 3 MeV) at 20 mA and 17 kGy. The COD reduced from 495 mg/l to the range 398.00 -358 mg/l at beam energy 1 MeV to 3 MeV. The irradiated sample also slightly become more acidic at higher beam energy. While 1 MeV beam energy was sufficient to eliminate the exposed peak at wavelength of 425 nm, 550 nm and 650 nm in the UV spectrum. In the case effect of current, the COD effluent tested at constant beam energy of 1 MeV and 3 MeV at various beam current (3 mA, 5 mA, 10 mA, 15 mA and 20 mA) decreased with higher beam current. While interested peak in UV spectrum of irradiated samples was varnish at 3 mA beam current and 1 MeV energy applied. Considering to the 19.66 % COD removal and electric power used, 1 MeV beam energy and 20 mA beam current was the optimum irradiation parameter selected for this study. At 1 MeV:20 mA textiles wastewater irradiated at various dose of 17, 20, 25, 30, 35, 100 and 200 kGy shows removal of COD, were in the range 4.42 % - 30.09 %. (author)

Availability note (English)

Also available in Malaysian Nuclear Agency Document Delivery Center by email: mohdhafizal@nuclearmalaysia.gov.my

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Additional details

Publishing Information

Imprint Pagination
14 p.
Report number
INIS-MY--2017-018

Conference

Title
Research and Development Seminar 2016
Acronym
R&D Seminar 2016
Dates
8-10 Nov 2016
Place
Bangi (Malaysia)

Optional Information

Notes
Oral presentation