
Ferrocyanide Safety Project: Comparison of actual and simulated ferrocyanide waste properties
Author(s) -
R.D. Scheele,
L.L. Burger,
Rachel L. Sell,
Paul R. Bredt,
R.J. Barrington
Publication year - 1994
Language(s) - English
Resource type - Reports
DOI - 10.2172/29444
Subject(s) - ferrocyanide , waste management , radioactive waste , chemistry , uranium , nitric acid , environmental science , human decontamination , spent nuclear fuel , mixed waste , transuranium element , radiochemistry , nuclear chemistry , materials science , inorganic chemistry , metallurgy , electrode , engineering
In the 1950s, additional high-level radioactive waste storage capacity was needed to accommodate the wastes that would result from the production of recovery of additional nuclear defense materials. To provide this additional waste storage capacity, the Hanford Site operating contractor developed a process to decontaminate aqueous wastes by precipitating radiocesium as an alkali nickel ferrocyanide; this process allowed disposal of the aqueous waste. The radiocesium scavenging process as developed was used to decontaminate (1) first-cycle bismuth phosphate (BiPO{sub 4}) wastes, (2) acidic wastes resulting from uranium recovery operations, and (3) the supernate from neutralized uranium recovery wastes. The radiocesium scavenging process was often coupled with other scavenging processes to remove radiostrontium and radiocobalt. Because all defense materials recovery processes used nitric acid solutions, all of the wastes contained nitrate, which is a strong oxidizer. The variety of wastes treated, and the occasional coupling of radiostrontium and radiocobalt scavenging processes with the radiocesium scavenging process, resulted in ferrocyanide-bearing wastes having many different compositions. In this report, we compare selected physical, chemical, and radiochemical properties measured for Tanks C-109 and C-112 wastes and selected physical and chemical properties of simulated ferrocyanide wastes to assess the representativeness of stimulants prepared by WHC