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营养物投加对地下甲烷氧化菌种群及三氯乙烯降解的影响。

Effects of nutrient dosing on subsurface methanotrophic populations and trichloroethylene degradation.

作者信息

Pfiffner S M, Palumbo A V, Phelps T J, Hazen T C

机构信息

Environmental Sciences Division, Oak Ridge National Laboratory, TN 37831-6036, USA.

出版信息

J Ind Microbiol Biotechnol. 1997 Feb-Mar;18(2-3):204-12. doi: 10.1038/sj.jim.2900350.

Abstract

In in situ bioremediation demonstration at the Savannah River Site in Aiken, South Carolina, trichloroethyle degrading microorganisms were stimulated by delivering nutrients to the TCE-contaminated subsurface via horizontal injection wells. Microbial and chemical monitoring of groundwater from 12 vertical wells was used to examine the effects of methane and nutrient (nitrogen and phosphorus) dosing on the methanotrophic populations and on the potential of the subsurface microbial communities to degrade TCE. Densities of methanotrophs increased 3-5 orders of magnitude during the methane- and nutrient-injection phases; this increase coinclded with the higher methane levels observed in the monitoring wells. TCE degradation capacity, although not directly tied to methane concentration, responded to the methane injection, and responded more dramatically to the multiple-nutrient injection. tion. These results support the crucial role of methane, nitrogen, and phosphorus as amended nutrients in TCE bioremediation. The enhancing effects of nutrient dosing on microbial abundance and degradative potentials, coupled with increased chloride concentrations, provided multiple lines of evidence substantiating the effectiveness of this integrated in situ bioremediation process.

摘要

在南卡罗来纳州艾肯市萨凡纳河场地进行的原位生物修复示范项目中,通过水平注入井向受三氯乙烯污染的地下层输送养分,从而刺激三氯乙烯降解微生物的生长。利用对12口垂直井中的地下水进行微生物和化学监测,来研究甲烷和养分(氮和磷)投加对甲烷营养菌数量以及地下微生物群落降解三氯乙烯潜力的影响。在甲烷和养分注入阶段,甲烷营养菌的密度增加了3至5个数量级;这一增加与监测井中观察到的较高甲烷水平相一致。三氯乙烯降解能力虽然与甲烷浓度没有直接关联,但对甲烷注入有响应,对多种养分注入的响应更为显著。这些结果支持了甲烷、氮和磷作为修正养分在三氯乙烯生物修复中所起的关键作用。养分投加对微生物丰度和降解潜力的增强作用,再加上氯化物浓度的增加,提供了多条证据证实这种综合原位生物修复过程的有效性。

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