Assessment of Microbial Processes on Radionuclide Mobility in Shallow Land Burial. [West Valley, NY ; Beatty, Nevada ; Maxey Flats, Kentucky].

Assessment of Microbial Processes on Radionuclide Mobility in Shallow Land Burial. [West Valley, NY ; Beatty, Nevada ; Maxey Flats, Kentucky].
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Download or read book Assessment of Microbial Processes on Radionuclide Mobility in Shallow Land Burial. [West Valley, NY ; Beatty, Nevada ; Maxey Flats, Kentucky]. written by and published by . This book was released on 1982 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: The impact of microbial metabolism of the organic substituents of low level radioactive wastes on radionuclide mobility in disposal sites, the nature of the microbial transformations involved in this metabolism and the effect of the prevailing environmental parameters on the quantities and types of metabolic intermediates accumulated were examined. Since both aerobic and anaerobic periods can occur during trench ecosystem development, oxidation capacities of the microbial community in the presence and absence of oxygen were analyzed. Results of gas studies performed at three commercial low level radioactive waste disposal sites were reviewed. Several deficiencies in available data were determined. Further research needs are suggested. This assessment has demonstrated that the biochemical capabilities expressed within the low level radioactive waste disposal site are common to a wide variety of soil bacteria. Hence, assuming trenches would not be placed in sites with such extreme abiotic conditions that all microbial activity is precluded, the microbial populations needed for colonization and decomposition of the organic waste substances are readily provided from the waste itself and from the soil of existing and any proposed disposal sites. Indeed, considering the ubiquity of occurrence of the microorganisms responsible for waste decomposition and the chemical nature of the organic waste material, long-term prevention of biodecomposition is difficult, if not impossible.


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