科技报告详细信息
Microbially Mediated Immobilization of Contaminants Through In Situ Biostimulation: Scale up of EMSP project 55267
Jardin, Philip M. ; Brooks, Scott C. ; Fendorf, Scott E.
Oak Ridge National Laboratory
关键词: Management;    Microorganisms;    Bacteria;    Bioremediation;    Radioisotopes;   
DOI  :  10.2172/834466
RP-ID  :  EMSP-73784-2002
RP-ID  :  FG07-00ER15119
RP-ID  :  834466
美国|英语
来源: UNT Digital Library
PDF
【 摘 要 】

The overall goal of the proposed research is to provide an improved understanding and predictive capability of the mechanisms that allow metal-reducing bacteria to be effective in the bioremediation of redox sensitive toxic metals and radionuclides. The study is motivated by the likelihood that subsurface metal-reducing bacteria can be stimulated to effectively alter the redox state of contaminants so that they are immobilized in situ for long time periods. The work described in this proposal will advance the technological and scientific needs associated with the long-term management of the enormous inground inventories of Cr, U, Tc, and Co present at numerous DOE installations throughout the country. The objectives of our project are to (1) develop an improved understanding and predictive capability of the rates and mechanisms controlling microbially mediated reduction of toxic metals and radionuclides in heterogeneous field settings, (2) quantify the impacts of hydrological and geochemical processes on the effectiveness of indigenous microorganisms to transform and immobilize radionuclides and metals in situ, (3) provide an improved understanding of the importance of microbial consortia interactions in the bacterial immobilization of radionuclides and toxic metals, and (4) determine intrinsic bioreduction rate parameters to improve our generic predictive capability of in situ microbially metal reduction.

【 预 览 】
附件列表
Files Size Format View
834466.pdf 513KB PDF download
  文献评价指标  
  下载次数:31次 浏览次数:40次