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Journal ArticleDOI

60Co radiolysis of potassium dichromate in acid solution

A R Anderson, +1 more
- 01 Jan 1963 - 
- Vol. 59, pp 1299-1309
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This article is published in Transactions of The Faraday Society.The article was published on 1963-01-01. It has received 27 citations till now. The article focuses on the topics: Potassium dichromate & Radiation chemistry.

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Reduction and removal of aqueous Cr(VI) by glow discharge plasma at the gas-solution interface.

TL;DR: Fourier transform-infrared spectroscopy and X-ray diffraction analysis confirmed that the main constituent of the sediment is chromium hydroxide, and the optimum pH values for Cr(VI) removal were within 6.0-7.0.
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Kinetics and spectroscopy of the SO4− radical in aqueous solution

TL;DR: In this paper, the authors used laser flash photolysis of S2O82− at 248 nm and 266 nm to investigate the kinetics and spectroscopy of the SO4− radical in aqueous solution.
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The radiation chemistry of metal ions in aqueous solution

TL;DR: A. Actinides as discussed by the authors discusses the radiation chemistry of water and the reaction of the carboxyl and hydroxymethyl radicals with metal ions, and proposes a method to reduce the trivalent ion reduction.
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Plasma-induced reduction of chromium(VI) in an aqueous solution.

TL;DR: Experimental results show that Cr(VI) could be smoothly reduced to trivalent state [Cr(III)] by using GDP with 500 V as the optimum operating voltage and the rate of Cr( VI) reduction was enhanced by either decreasing the solution pH or adding radical scavengers to the solution.
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Acidic aqueous dichromate solutions as reference dosimeters in the 10–40 kGy range

TL;DR: The radiolytic reduction of dichromate ion in acidic aqueous solution has been investigated as a potential dosimetry system for the 10 −40 kGy range of absorbed dose as mentioned in this paper.