首页> 外文期刊>Journal of Contaminant Hydrology >Do CSIA data from aquifers inform on natural degradation of chlorinated ethenes in aquitards?
【24h】

Do CSIA data from aquifers inform on natural degradation of chlorinated ethenes in aquitards?

机译:含水层的CSIA数据是否能说明a鱼中氯化乙烯的自然降解?

获取原文
获取原文并翻译 | 示例
           

摘要

Back-diffusion of chlorinated ethenes (CEs) from low-permeability layers (LPLs) causes contaminant persistence long after the primary spill zones have disappeared. Naturally occurring degradation in LPLs lowers remediation time frames, but its assessment through sediment sampling is prohibitive in conventional remediation projects. Scenario simulations were performed with a reactive transport model (PHT3D in FloPy) accounting for isotope effects associated with degradation, sorption, and diffusion, to evaluate the potential of CSIA data from aquifers in assessing degradation in aquitards. The model simulated a trichloroethylene (TCE) DNAPL and its pollution plume within an aquifer-aquitard-aquifer system. Sequential reductive dechlorination to ethene and sorption were uniform in the aquitard and did not occur in the aquifer. After 10 years of loading the aquitard through diffusion from the plume, subsequent source removal triggered release of TCE by back-diffusion. In the upper aquifer, during the loading phase, delta C-13-TCE was slightly enriched (up to 2 parts per thousand) due to diffusion effects stimulated by degradation in the aquitard. In the upper aquifer, during the release phase, (i) source removal triggered a huge delta C-13 increase especially for higher CEs, (ii) moreover, downstream decreasing isotope ratios (caused by downgradient later onset of the release phase) with temporal increasing isotope ratios reflect aquitard degradation (as opposed to downstream increasing and temporally constant isotope ratios in reactive aquifers), and (iii) the carbon isotope mass balance (CIMB) enriched up to 4 parts per thousand as lower CEs (more depleted, less sorbing) have been transported deeper into the aquitard. Thus, enriched CIMB does not indicate oxidative transformation in this system. The CIMB enrichment enhanced with more sorption and lower aquitard thickness. Thin aquitards are quicker flushed from lower CEs leading to faster CIMB enrichment over time. CIMB enrichment is smaller or nearly absent when daughter products accumulate. Aquifer CSIA patterns indicative of aquitard degradation were similar in case of linear decreasing rate constants but contrasted with previous simulations assuming a thin bioactive zone. The Rayleigh equation systematically underestimates the extent of TCE degradation in aquifer samples especially during the loading phase and for conditions leading to long remediation time frames (low groundwater flow velocity, thicker aquitards, strong sorption in the aquitard). The Rayleigh equation provides a good and useful picture on aquitard degradation during the release phase throughout the sensitivity analysis. This modelling study provides a framework on how aquifer CSIA data can inform on the occurrence of aquitard degradation and its pitfalls.
机译:氯乙烯(CE)从低渗透层(LPL)的反向扩散会导致污染物的持久性,在主要溢出区消失之后很久。 LPL中自然发生的降解降低了修复时间,但是在常规修复项目中,通过沉积物采样对其进行评估是禁止的。使用反应输运模型(FloPy中为PHT3D)进行了情景模拟,考虑了与降解,吸附和扩散相关的同位素效应,以评估含水层CSIA数据在评估a鱼的降解中的潜力。该模型模拟了三氯乙烯(TCE)DNAPL及其在含水层-aquitard-含水层系统中的污染羽流。依次进行的还原性脱氯为乙烯和吸附在阿基塔德中是均匀的,在含水层中没有发生。经过从烟羽中扩散而来的无水芒草加载了10年后,随后的去除源触发了TCE的反向扩散释放。在上层含水层中,在加载阶段,由于阿奎塔德中的降解所激发的扩散效应,δC-13-TCE略有富集(千分之二)。在上层含水层中,在释放阶段,(i)源的去除触发了C-13的巨大增加,特别是对于较高的CE,(ii)此外,随着时间的流逝,下游的同位素比值下降(由释放阶段后期的下降引起)不断增加的同位素比反映了阿奎德的降解(与反应性含水层中下游增加的同位素比和时间上恒定的同位素相对),以及(iii)碳同位素质量平衡(CIMB)随最高CE浓度增加至千分之四(消耗更多,吸附更少) )已被更深地运送到了阿奎德。因此,富集的CIMB在该系统中并不表示氧化转化。 CIMB富集随着更多的吸附和更小的阿奎塔尔厚度而增强。稀薄的a鱼可以从较低的CE中更快地冲洗掉,从而随着时间的流逝更快地实现CIMB富集。当子产物积累时,CIMB富集较小或几乎不存在。在线性降低速率常数的情况下,指示无水期退化的含水层CSIA模式相似,但是与先前的假定生物活性带较薄的模拟相反。瑞利方程系统地低估了含水层样品中三氯乙烯的降解程度,特别是在加载阶段以及导致较长修复时间框架的情况下(地下水流速低,阿克拉德较厚,在阿奎达中的吸附力强)。在整个敏感性分析中,瑞利方程为释放阶段的无水草降解提供了良好而有用的图像。这项建模研究提供了一个框架,用于说明含水层CSIA数据如何告知有关阿卡德退化的发生及其缺陷的信息。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号