This report describes work performed to develop and test new glass and feed formulations in order to increase glass melting rates in high waste loading glass formulations for HLW with high concentrations of iron. Testing was designed to identify glass and melter feed formulations that optimize waste loading and waste processing rate while meeting all processing and product quality requirements. The work included preparation and characterization of crucible melts to assess melt rate using a vertical gradient furnace system and to develop new formulations with enhanced melt rate. Testing evaluated the effects of waste loading on glass properties and the maximum waste loading that can be achieved. The results from crucible-scale testing suppor...
The principal objectives of the DM1200 melter tests were to determine the effects of feed rheology, ...
The principal objective of this report was to summarize the testing experience on the DuraMelter 120...
High-level liquid waste at the Savannah River Site (SRS) will be processed into borosilicate glass a...
This report describes the development and testing of new glass formulations for high aluminum waste ...
The principal objective of the work reported here was to develop and identify HLW glass compositions...
This paper presents the results of glass formulation development and melter testing to identify high...
The principal objective of the work described in this Final Report is to develop and identify glass ...
High-level waste (HLW) throughput (i.e., the amount of waste processed per unit time) is a function ...
This report provides data, analyses, and conclusions from a series of tests that were conducted at t...
The U.S. Department of Energy (DOE) is currently processing high-level waste (HLW) through a Joule-h...
This report describes work conducted to support the development and testing of new glass formulation...
Eight tests using different HLW feeds were conducted on the DM100-BL to determine the effect of vari...
Numerous bench-scale and pilot-scale tests have been conducted to support high-level waste vitrifica...
This report documents the preliminary results of glass formulation and characterization accomplished...
The principal objective of this work was to determine the glass production rate increase and ancilla...
The principal objectives of the DM1200 melter tests were to determine the effects of feed rheology, ...
The principal objective of this report was to summarize the testing experience on the DuraMelter 120...
High-level liquid waste at the Savannah River Site (SRS) will be processed into borosilicate glass a...
This report describes the development and testing of new glass formulations for high aluminum waste ...
The principal objective of the work reported here was to develop and identify HLW glass compositions...
This paper presents the results of glass formulation development and melter testing to identify high...
The principal objective of the work described in this Final Report is to develop and identify glass ...
High-level waste (HLW) throughput (i.e., the amount of waste processed per unit time) is a function ...
This report provides data, analyses, and conclusions from a series of tests that were conducted at t...
The U.S. Department of Energy (DOE) is currently processing high-level waste (HLW) through a Joule-h...
This report describes work conducted to support the development and testing of new glass formulation...
Eight tests using different HLW feeds were conducted on the DM100-BL to determine the effect of vari...
Numerous bench-scale and pilot-scale tests have been conducted to support high-level waste vitrifica...
This report documents the preliminary results of glass formulation and characterization accomplished...
The principal objective of this work was to determine the glass production rate increase and ancilla...
The principal objectives of the DM1200 melter tests were to determine the effects of feed rheology, ...
The principal objective of this report was to summarize the testing experience on the DuraMelter 120...
High-level liquid waste at the Savannah River Site (SRS) will be processed into borosilicate glass a...