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首页> 外文期刊>Journal of Contaminant Hydrology >The variability and intrinsic remediation of a BTEX plume in anaerobic sulphate--rich groundwater
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The variability and intrinsic remediation of a BTEX plume in anaerobic sulphate--rich groundwater

机译:富含厌氧硫酸盐的地下水中BTEX羽的变异性和内在修复

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Data from long--term groundwater sampling, limited coring, and associated studies are synthe- sised to assess the variability and intrinsic remediationatural attenuation of a dissolved hydrocarbon plume in sulphate-rich anaerobic groundwater. Fine vertical scale (0.25-- and 0.5-m depth intervals) and horizontal plume--scale (> 400 m) characteristics of the plume were mapped over a 5-year period from 1991 to 1996. The plume of dissolved BTEX (benzene, toluene, ethylbenzene, xylene) and other organic compounds originated from leakage of gasoline from a subsurface fuel storage tank. The plume was up to 420 m long, less than 50 m wide and 3 m thick. In the first few years of monitoring, BTEX concentrations near the point of leakage were in approximate equilibrium with non-aqueous phase liquid (NAPL) gasoline. NAPL composition of core material and long-term trends in ratios of BTEX concentrations in groundwater indicated significant depletion (water washing, volatilisation and possibly biodegradation) of benzene from residual NAPL after 1992. Large fluctuations in BTEX concentrations in individual boreholes were shown to be largely attributable to seasonal groundwater flow variations. A combination of temporal and spatial groundwater quality data was required to adequately assess the stationarity of plumes, so as to allow inference of intrinsic remediation. Contoured concentration data for the period 1991 to 1996 indicated that plumes of toluene and o-xylene were, at best. only partially steady state (pseudo--steady state) due to seasonal groundwater flow changes. From this analysis, it was inferred that significant remediation by natural biodegradation was occurring for BTEX component plumes such as toluene and o-xylene, but provided no conclusive evidence of benzene biodegradation.
机译:合成了来自长期地下水采样,有限取心和相关研究的数据,以评估富含硫酸盐的厌氧地下水中溶解烃羽流的变异性和内在修复/自然衰减。在1991年至1996年的5年期间,绘制了羽状流的精细垂直尺度(深度为0.25-和0.5-m间隔)和水平羽状尺度(> 400 m)特征。溶解的BTEX(苯,甲苯,乙苯,二甲苯)和其他有机化合物是由于汽油从地下燃料储罐泄漏而产生的。烟羽长达420 m,宽度小于50 m,厚度小于3 m。在监测的最初几年中,泄漏点附近的BTEX浓度与非水相液体(NAPL)汽油近似平衡。核心材料的NAPL组成和地下水中BTEX浓度比率的长期趋势表明,1992年后残留NAPL会严重消耗苯(水洗,挥发和可能的生物降解)。各个井眼中BTEX浓度的较大波动很大归因于季节性地下水流量变化。需要结合时间和空间地下水质量数据来充分评估羽流的平稳性,以便推断出内在的补救措施。 1991年至1996年期间的等高线浓度数据表明,甲苯和邻二甲苯的羽状物充其量是最多的。由于季节性地下水流量的变化,仅部分处于稳态(伪稳态)。从该分析中可以推断出,对于自然生物降解,甲苯,邻二甲苯等BTEX组分羽流正在发生明显的修复,但没有提供苯生物降解的确凿证据。

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