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Titlebook: Chlorinated Solvent Source Zone Remediation; Bernard H. Kueper,Hans F. Stroo,C. Herb Ward Book 2014 Springer Science+Business Media New Yo

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楼主: finesse
发表于 2025-3-28 15:10:01 | 显示全部楼层
https://doi.org/10.1007/978-981-99-5792-7e physics and biogeochemistry of DNAPL source zones, more rigorous mathematical descriptions of the relationships between multiphase flow, groundwater flow, contaminant transport, mass transfer and species reactions, and superior numerical algorithms and computing power. Models are available for a w
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https://doi.org/10.1007/978-981-19-1324-2riables, including the fraction of mass remaining in the source compared to the plume, source concentration compared to regulatory limits, ratio of plume decay rates to groundwater velocity, relationship between source mass removal and source discharge, and local diffusive effects in the plume. As d
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Pragya Rawal,Harish Sharma,Nirmala Sharmaizontal drains. This chapter focuses primarily on the application of hydraulic displacement at sites impacted by chlorinated solvent DNAPLs, although some discussion of other types of DNAPLs also is included. The chapter begins with screening calculations including examples, followed by a discussion
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Atul Kumar Uttam,Sasmita Beheraf chlorinated solvent dense nonaqueous phase liquid (DNAPL) source zones. A variety of oxidants are discussed including hydrogen peroxide, potassium permanganate, sodium persulfate and ozone. Current practices along with remedial design issues and approaches for application of ISCO to DNAPL source z
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https://doi.org/10.1007/978-981-13-2685-1aminants. ISCR has been used for over 15 years for plume treatment, but its use for source treatment is more recent. This chapter provides the first integrated assessment of the entire suite of ISCR technologies, and describes the technical basis, engineering aspects, past experiences and future pro
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