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- W2499974370 abstract "Remediation of groundwater contaminated by chlorinated solvents is one of the more complex technical challenges faced by environmental engineers and scientists. Early efforts to remediate chlorinated solvent contaminated groundwater involved extraction and treatment of groundwater with the objective of restoring aquifers to pristine conditions. However as these operations continued, it became apparent that restoration of groundwater would not occur within a reasonable period of time. Groundwater scientists attributed the difficulty remediating to the complexity of the aquifer systems and the presence of DNAPLs, the separate phase liquid form of the chlorinated solvents that act as a continuing source of contamination to groundwater. Several leading practitioners have proposed that subsurface soil and groundwater systems contaminated by DNAPLs cannot be completely remediated. Other environmental practitioners have accepted this as an opportunity to advance the development of existing and new, more innovative remediation technologies and solutions. This paper presents an overview of in-situ physical, chemical, and biological processes being used and developed for remediating sites contaminated by chlorinated solvents and DNAPLs. Physical processes involve use and manipulation of the physical properties of chlorinated solvents and DNAPLs to effect their removal from contaminated soil and groundwater. Chemical processes involve the destruction of chlorinated solvents using reductive or oxidative chemical reactions. Biological processes involve the destruction of chlorinated solvents using natural or enhanced biological means. Physical, chemical and biological processes can be and have been used for the in-situ treatment of chlorinated solvents through source zone treatment and reactive treatment zones." @default.
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- W2499974370 date "2002-11-10" @default.
- W2499974370 modified "2023-09-26" @default.
- W2499974370 title "Chlorinated Solvent and DNAPL Remediation: An Overview of Physical, Chemical, and Biological Processes" @default.
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- W2499974370 doi "https://doi.org/10.1021/bk-2002-0837.ch001" @default.
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