Microbiologically influenced corrosion (MIC) may decrease the functional lifetime of nuclear waste packaging materials in the potential geologic repository at Yucca Mountain (YM), Nevada. Biochemical contributions to corrosion of package materials are being determined in reactors containing crushed repository-site rock with the endogenous microbial community, and candidate waste package materials. These systems are being continually supplied with simulated ground water. Periodically, bulk chemistries are analyzed on the system outflow, and surfacial chemistries are assessed on withdrawn material coupons. Both Fe and Mn dissolved from C1020 coupons under conditions that included the presence of YM microorganisms. Insoluble corrosion products...
A laboratory system for studying the microbiological corrosion of stainless steel decommissioning wa...
A laboratory system for studying the microbiological corrosion of stainless steel decommissioning wa...
The study summarises current knowledge on microbial corrosion in a deep nuclear-waste repository. Th...
The U.S. Department of Energy has been charged with assessing the suitability of a geologic nuclear ...
The U.S. Department of Energy is contributing to the design of a potential nuclear-waste repository ...
The U.S. Department of Energy is engaged in a suitability study for a potential deep geological repo...
Microorganisms may enhance corrosion of components of planned engineered barriers within the propose...
The contribution of bacterial activities to corrosion of nuclear waste package materials must be det...
Microbially induced corrosion in deep bedrock is important when evaluating long-term safety of dispo...
Low- and intermediate-level radioactive waste (LLW/ILW) is produced during the operation and decommi...
Low- and intermediate-level radioactive waste (LLW/ILW) is produced during the operation and decommi...
International audienceThis study emphasizes different experimental approaches and provides perspecti...
Low and intermediate level radioactive waste (LLW and ILW) comprises of radiation- contaminated mate...
Low and intermediate level radioactive waste (LLW and ILW) comprises of radiation- contaminated mate...
Microbiologically influenced corrosion (MIC) is a serious concern when considering measures to guard...
A laboratory system for studying the microbiological corrosion of stainless steel decommissioning wa...
A laboratory system for studying the microbiological corrosion of stainless steel decommissioning wa...
The study summarises current knowledge on microbial corrosion in a deep nuclear-waste repository. Th...
The U.S. Department of Energy has been charged with assessing the suitability of a geologic nuclear ...
The U.S. Department of Energy is contributing to the design of a potential nuclear-waste repository ...
The U.S. Department of Energy is engaged in a suitability study for a potential deep geological repo...
Microorganisms may enhance corrosion of components of planned engineered barriers within the propose...
The contribution of bacterial activities to corrosion of nuclear waste package materials must be det...
Microbially induced corrosion in deep bedrock is important when evaluating long-term safety of dispo...
Low- and intermediate-level radioactive waste (LLW/ILW) is produced during the operation and decommi...
Low- and intermediate-level radioactive waste (LLW/ILW) is produced during the operation and decommi...
International audienceThis study emphasizes different experimental approaches and provides perspecti...
Low and intermediate level radioactive waste (LLW and ILW) comprises of radiation- contaminated mate...
Low and intermediate level radioactive waste (LLW and ILW) comprises of radiation- contaminated mate...
Microbiologically influenced corrosion (MIC) is a serious concern when considering measures to guard...
A laboratory system for studying the microbiological corrosion of stainless steel decommissioning wa...
A laboratory system for studying the microbiological corrosion of stainless steel decommissioning wa...
The study summarises current knowledge on microbial corrosion in a deep nuclear-waste repository. Th...