Published July 1995 | Version v1
Journal article

Organic analyses of an actual and simulated mixed waste. Hanford's organic complexant waste revisited

  • 1. Southwest Missouri State Univ., Springfield, MO (United States). Dept. of Chemistry
  • 2. Applied Automation, Bartlesville, OK (United States).

Description

Reanalysis of the organics in a mixed waste, an organic complexant waste, from the U.S. Department of Energy's Hanford Site, has yielded an 80.4% accounting of the waste's total organic content. In addition to several complexing and chelating agents (citrate, EDTA, HEDTA and NTA), 38 chelator/complexor fragments have been identified, compared to only 11 in the original analysis, all presumably formed via organic degradation. Moreover, a mis identification, methanetricarboxylic acid, has been re-identified as the chelator fragment N-(methylamine)imino-diacetic acid (MAIDA). A nonradioactive simulant of the actual waste, containing the parent organics (citrate, EDTA, HEDTA and NTA), was formulated and stored in the dark at ambient temperature for 90 days. Twenty chelator and complexor fragments were identified in the simulant, along with several carboxylic acids, confirming that myriad chelator and complexor fragments are formed via degradation of the parent organics. Moreover, their abundance in the simulant (60.9% of the organics identified) argues that the harsh chemistries of mixed wastes like Hanford's organic degradation, even in the absence of radiation. (author). 26 refs., 2 tabs

Part of:
Software ASPRO-NUC. Gamma-ray spectrometry, routine NAA, isotope identification and data management

Additional details

Publishing Information

Journal Title
Journal of Radioanalytical and Nuclear Chemistry
Journal Volume
194
Journal Issue
1
Journal Page Range
p. 25-34.
ISSN
0236-5731
CODEN
JRNCDM

Conference

Title
3. International conference on methods and applications of radioanalytical chemistry.
Acronym
MARC-III
Dates
10-16 Apr 1994.
Place
Kailua-Kona, HI (United States).

Optional Information