Published February 10, 1996 | Version v1
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Hydrogen anode for nitrate waste destruction. Revision 2

  • 1. Westinghouse Savannah River Co., Aiken, SC (United States)
  • 2. Univ. of South Carolina, Columbia, SC (United States). Dept. of Chemical Engineering

Description

Large quantities of radioactive and hazardous wastes have been generated from nuclear materials production during the past fifty years. Processes are under evaluation to separate the high level radioactive species from the waste and store them permanently in the form of durable solids. The schemes proposed will separate the high level radioactive components, cesium-137 and strontium-90, into a small volume for incorporation into a glass wasteform. The remaining low-level radioactive waste contain species such as nitrites and nitrates that are capable of contaminating ground water. Electrochemical destruction of the nitrate and nitrite before permanent storage has been proposed. Not only will the electrochemical processing destroy these species, the volume of the waste could also be reduced. The use of a hydrogen gas-fed anode and an acid anolyte in an electrochemical cell used to destroy nitrate was demonstrated. A mixed Na2SO4/H2SO4 anolyte was shown to favor the nitrate cell performance, and the generation of a higher hydroxide ion concentration in the catholyte. The suggested scheme is an apparent method of sodium sulfate disposal and a possible means through which ammonia (to ammonium sulfate, fertilizer) and hydrogen gas could be recycled through the anode side of the reactor. This could result in a substantial savings in the operation of a nitrate destruction cell

Availability note (English)

MF available from INIS under the Report Number; Also available from OSTI as DE97000431; NTIS; US Govt. Printing Office Dep.

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Additional details

Publishing Information

Imprint Pagination
24 p.
Report number
WSRC-MS--95-0193-Rev.2

Optional Information

Contract/Grant/Project number
Contract AC09-89SR18035
Funding organization
USDOE, Washington, DC (United States).