Plume persistence due to aquitard back diffusion following dense nonaqueous phase liquid source removal or isolation
نویسندگان
چکیده
منابع مشابه
Technologies for Dense Nonaqueous Phase Liquid Source Zone Remediation
s of Remediation Case Studies: EPA 542-R-95-001, Documents project design, operation, performance, cost, and lessons learned. The reports should be useful to those evaluating the feasibility or design of these technologies at similar sites. [clu-in.com] Bioremediation Field Initiative Site Profiles. Current information on the status of bioremediation nationally as well as information on sites w...
متن کاملDense Nonaqueous Phase Liquids
The Regional Superfund Ground Water Forum is a group of EPA professionals representing EPA’s Regional Superfund Offices, committed to the identification and the resolution of ground water issues impacting the remediation of Superfund sites. The Forum is supported by and advises the Superfund Technical Support Project. Dense nonaqueous phase liquids is an issue identified by the Forum as a conce...
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[1] A new technology, hydraulic/partitioning tracer tomography (HPTT), is proposed to survey spatial distributions of hydraulic properties and dense nonaqueous phase liquids (DNAPLs) in the subsurface. HPTT is nothing more than a set of multiple hydraulic/ partitioning tracer tests and synthesis of all the tests to map the spatial distributions. It involves injection of water at one borehole in...
متن کاملStatic and push-pull methods using radon-222 to characterize dense nonaqueous phase liquid saturations.
Naturally occurring radon in ground water can potentially be used as an in situ partitioning tracer to characterize dense nonaqueous phase liquid (DNAPL) saturations. The static method involves comparing radon concentrations in water samples from DNAPL-contaminated and noncontaminated portions of an aquifer, while the push-pull method involves the injection (push) and extraction (pull) of a rad...
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[1] The influence of aquifer property correlation on multiphase fluid migration and entrapment was explored through the use of correlated and uncorrelated porosity, permeability, and capillary pressure-saturation (Pc-Sat) parameter fields in a crosssectional numerical multiphase flow model. Data collected from core samples in a nonuniform sandy aquifer were used to generate three-dimensional aq...
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ژورنال
عنوان ژورنال: Water Resources Research
سال: 2005
ISSN: 0043-1397
DOI: 10.1029/2005wr004224