Development, Operation, and Long-Term Performance of a Full-Scale Biocurtain Utilizing Bioaugmentation

生物强化 斯氏假单胞菌 反硝化细菌 化学 含水层 羽流 硝酸盐 环境化学 地下水 环境工程 生物修复 污染 反硝化 环境科学 细菌 地质学 氮气 热力学 岩土工程 有机化学 物理 生物 生态学 古生物学
作者
Michael J. Dybas,D. W. Hyndman,R. Heine,James Tiedje,Katrina D. Linning,D. C. Wiggert,Thomas C. Voice,Xianda Zhao,Leslie Dybas,Craig S. Criddle
出处
期刊:Environmental Science & Technology [American Chemical Society]
卷期号:36 (16): 3635-3644 被引量:80
标识
DOI:10.1021/es0114557
摘要

A full-scale field evaluation of bioaugmentation was conducted in a carbon tetrachloride (CT)- and nitrate-impacted aquifer at Schoolcraft, MI. The added organism was Pseudomonas stutzeri KC (strain KC), a denitrifying bacterium that cometabolically degrades CT without producing chloroform (CF). To introduce and maintain strain KC in the aquifer, a row of closely spaced (1-m) injection/extraction wells were installed normal to the direction of groundwater flow near the leading edge of the CT plume. The resulting system of wells was used to establish and maintain a "biocurtain" for CT degradation through the intermittent addition of base to create favorable pH conditions; inoculation; and weekly addition of acetate (electron donor), alkali, and phosphorus. Although half of the test zone was inoculated twice, the long-term performance of both sections was indistinguishable: both had high CT removal efficiencies (median of 98-99.9%) and similar levels of strain KC colonization (>10(5) strain KC/g). Sustained and efficient (98%) removal of CT has now been observed over 4 yr. Transient low levels of CF (<20 ppb) and H2S (<2 ppm) were observed, but both disappeared when the concentration of acetate in the weekly feed was reduced. Nitrate removal efficiencies ranged from 60% at low acetate concentrations to nearly 100% at high acetate concentrations. We conclude that closely spaced wells and intermittent substrate addition are effective means of delivering organisms and substrates to subsurface environments. At the Schoolcraft site, we achieved uniform removal efficiencies over a significant vertical depth (15 m), despite significant variability in hydraulic conductivity. This was accomplished by pumping 65% (v/v) of the natural gradient flow passing through the biocurtain during a given week in a single 6-h pumping event. Approximately 18,600 m3 of contaminated groundwater was treated during the project.
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