The Effect of Environmental Relative Humidity on Carbonation and Oxidation in a Cementitious Waste Form - 18448
Creators
- 1. Vanderbilt University, Department of Civil and Environmental Engineering, Nashville, Tennessee (United States)
Description
Cementitious material has been developed and used for the nuclear waste disposal. Cast Stone, a type of cementitious waste form, is considered for solidification and immobilization of part of low activity radioactive waste (LAW) at DOE Hanford Site in Richland, WA. During its life cycle, the waste form, which is produced from Portland cement, fly ash, blast furnace slag and liquid waste, is subject to reaction with carbon dioxide and oxygen, both in gaseous and dissolved form. The reactions may alter the physical and chemical properties of the waste form and thus change its retention ability for the radionuclides. Therefore, understanding the rate and the impact of oxidation and carbonation in the material is important for projecting the long-term performance of Cast Stone. However, the rate of carbonation and oxidation in Cast Stone closely depends on the moisture content in the material, which varies largely with the environmental relative humidity (RH). In this study, experiments are carried out to study the effect of environmental relative humidity on the carbonation and oxidation rate as well as the leaching of the constituents from Cast Stone. Cast Stone samples doped with Cr as a reaction indicator are aged for 16 to 32 weeks under N2, air, and 2% CO2 (in nitrogen) environments with various relative humidities (15%, 40%, 68%, 100%). After aging, samples were tested for the pH-dependent leaching (EPA Method 1313) and mass transfer rate under diffusion-controlled leaching (EPA Method 1315) of constituents. The progress of the carbonation was measured for each condition to determine the rate of carbonation front ingress. The results show that environmental relative humidity strongly influences carbonation and oxidation in Cast Stone; however, the impact is different for the rate of reaction and for the extent of reactions. The former refers to the rate at which the reaction front ingresses, while the latter refers to the fraction of the material reacted. For both carbonation and oxidation, the largest impact of the reactions at the exposure surface is observed at intermediate relative humidity (68%). However, for carbonation, the reaction front evolves more rapidly under drier conditions, with the highest rate observed at 15% RH. As a result, carbonation and oxidation have different degree of impact on the leaching behavior of Cast Stone samples aged under various relative humidities. (authors)
Availability note (English)
Available from: WM Symposia, Inc., PO Box 27646, 85285-7646 Tempe, AZ (United States)Additional details
Identifiers
Publishing Information
- Imprint Pagination
- 11 p.
- Report number
- INIS-US--20-WM-18448
Conference
- Title
- 44. Annual Waste Management Conference
- Acronym
- WM2018
- Dates
- 18-22 Mar 2018
- Place
- Phoenix, AZ (United States)
INIS
- Country of Publication
- United States
- Country of Input or Organization
- France
- INIS RN
- 52017787
- Subject category
- S12: MANAGEMENT OF RADIOACTIVE WASTES, AND NON-RADIOACTIVE WASTES FROM NUCLEAR FACILITIES;
- Resource subtype / Literary indicator
- Conference, Non-conventional Literature
- Descriptors DEI
- BLAST FURNACES; CARBON DIOXIDE; CEMENTITE; CHEMICAL PROPERTIES; DOPED MATERIALS; FLY ASH; HANFORD RESERVATION; HUMIDITY; LEACHING; LIQUID WASTES; LOW-LEVEL RADIOACTIVE WASTES; NITROGEN; OXIDATION; OXYGEN; PH VALUE; PORTLAND CEMENT; RADIOACTIVE WASTE DISPOSAL; RETENTION; SLAGS; SOLIDIFICATION; WASTE FORMS
- Descriptors DEC
- AEROSOL WASTES; ALLOYS; ASHES; BUILDING MATERIALS; CARBIDES; CARBON COMPOUNDS; CARBON OXIDES; CEMENTS; CHALCOGENIDES; CHEMICAL REACTIONS; COMBUSTION PRODUCTS; DISSOLUTION; ELEMENTS; FURNACES; INTERMETALLIC COMPOUNDS; IRON CARBIDES; IRON COMPOUNDS; MANAGEMENT; MATERIALS; MOISTURE; NATIONAL ORGANIZATIONS; NONMETALS; OXIDES; OXYGEN COMPOUNDS; PHASE TRANSFORMATIONS; RADIOACTIVE MATERIALS; RADIOACTIVE WASTE MANAGEMENT; RADIOACTIVE WASTES; RESIDUES; SEPARATION PROCESSES; TRANSITION ELEMENT COMPOUNDS; US DOE; US ERDA; US ORGANIZATIONS; WASTE DISPOSAL; WASTE MANAGEMENT; WASTES
Optional Information
- Notes
- 13 refs.; Available online at: https://www.xcdsystem.com/wmsym/2018/index.html