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Titlebook: Bioaugmentation for Groundwater Remediation; Hans F. Stroo,Andrea Leeson,C. Herb Ward Book 2013 Springer Science+Business Media New York 2

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Bioaugmentation with ,: a Decision Guide,ion on specific site conditions, as well as non-technical judgments regarding risk tolerance and economic assessments. The guidance begins with questions structured as “off ramps,” to allow rapid screening of sites where the decision is relatively easy. Later questions require more detailed informat
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Microbial Monitoring During Bioaugmentation with ,,chlorination processes. This chapter provides a practical introduction into the science behind several MBTs, as well as their value to remedial practitioners for site characterization, remedial technology screening and performance monitoring. Strategies and procedures for groundwater sampling, as we
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Bioaugmentation with , KC for Carbon Tetrachloride Remediation , with large amounts of organic carbon, minimizing accumulation of volatile fatty acids, hydrogen sulfide (H.S), ferrous iron, carbon disulfide, ammonium, methane and biomass. This chapter summarizes the rationale behind this unique bioaugmentation strategy, and reviews the laboratory and field resea
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Bioaugmentation for MTBE Remediation,tion even in relatively complex lithologic systems. Lessons learned in the course of the research on MTBE/TBA bioremediation include: (1) sufficient delineation is critical, (2) sufficient oxygen delivery is a common limitation, (3) biostimulation is typically sufficient, though a time lag may be ex
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Economics and Valuation Of Bioaugmentation,uction in regulatory oversight by achieving treatment objectives sooner; (3) reduction in the time required to return the groundwater to beneficial use by achieving treatment goals in a shorter period of time; and (4) ability to apply EISB at sites where this approach would otherwise not be effectiv
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Research Needs for Bioaugmentation,acts a balance between research ideals, regulatory requirements and remediation activities. From these three concepts, an optimal scenario for successful bioremediation is proposed. Some practical applied research needs are outlined, and finally, future perspectives are described. While not presentl
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