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Application of geophysical techniques to monitor natural attenuation at contaminated sites

机译:应用地球物理技术监测受污染场地的自然衰减

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Hazardous waste site deposits, disposed in the past without special precautions or preparations of the geological underground, led in present to frequent soil and groundwater pollution by leaking of contaminant solutions. To avoid further damages of the environment, generally remediation measures can stop the leaking of more contaminants from the waste site. But for the surrounding already polluted soil and groundwater, the way of a so-called natural attenuation, by migration processes, adsorption or degradation of the contaminants is chosen frequently. For the control of these natural attenuation, adequate monitoring methods are necessary. In this paper an example is presented where the downstream contaminated environment of a former hazardous waste site in SW-Germany, was left for natural attenuation. Remediation measures, including the construction of a slurry wall encircling the whole site, a surface cover as well as a pump and treat system of the leachate, was installed to prevent further leaking of contaminants. To supervise and to monitor the evolution and the extend of the untreated contamination plume in the downstream area of the waste site, beside classical hydrogeological and hydrochemical techniques, geophysical methods were applied. Since 9 years, complex geoelectrical techniques, including resistivity, induced polarisation and mise-a-la-masse measurements, were periodically applied, proving an ongoing but slow natural attenuation of the contaminated area. The applied techniques have proved, as fast and cost efficient tools, for monitoring of natural attenuation processes.
机译:过去,在没有特殊预防措施或地质地下准备的情况下处置的危险废物现场沉积物,目前导致由于污染物溶液的泄漏而频繁污染土壤和地下水。为了避免对环境的进一步破坏,通常的补救措施可以阻止更多的污染物从废物现场泄漏出去。但是对于周围已经污染的土壤和地下水,经常选择所谓的自然衰减的方式,即通过迁移过程,污染物的吸附或降解。为了控制这些自然衰减,必须使用适当的监视方法。本文以一个示例为例,该示例中保留了德国西南部一个以前的危险废物站点的下游污染环境以自然衰减的方式。采取了补救措施,包括建造围绕整个场地的泥浆墙,表面覆盖物以及渗滤液的泵处理系统,以防止污染物进一步泄漏。为了监督和监视废物场下游区域中未经处理的污染羽流的演变和扩展,除了经典的水文地质和水化学技术外,还应用了地球物理方法。自9年以来,定期应用了复杂的地电技术,包括电阻率,感应极化和ms-a-la-mass测量,证明了受污染地区的自然衰减正在持续进行,但缓慢。实践证明,所应用的技术是用于监视自然衰减过程的快速且经济高效的工具。

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