工业地区土壤中污染物储存量估算的案例研究

G. Karancsi, Emőke Kiss, D. Beres, Dániel Balla
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摘要

土壤中污染物的主要来源之一是工业活动,这已成为近几十年来主要的环境问题之一。地理信息学的发展以及标准和法规的引入导致土壤污染风险的降低和修复活动的成本效益优化。基于上述,我们研究的目的是展示在位于大匈牙利平原的一个工业区进行修复的地理信息处理,特别是关于土壤中积累的污染物的数量和扩散的估计。为了揭示调查区域的岩性和水文地质性质以及地下区域的环境状况,我们进行了大量的浅层陆地钻探(115)。在现场取样期间,从钻头中收集了1000-1500克样品,并在认可的实验室进行了处理。根据创建的浓度和体积模型,可以得出结论,通过建模进行的估计,我们能够从污染的角度定位最关键的区域。结果表明,污染物在土壤中聚集的焦点在调查区域的中部。此外,该模型还证明了岩性因素的影响,因为与多孔岩石相比,污染物往往在粘性土壤中积聚得更多。含水层中污染物浓度随深度的减小而增大;然而,在到达地面粘土后,污染物浓度的程度开始下降。最接近地表的岩性层含有最多的污染物。
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Case study for estimation of the amount of contaminants stored in soil in an industrial area
One of the main sources of contaminants in the soil is industrial activity which has become one of the major environmental problems of the last few decades. The development of geoinformatics as well as the introduction of standards and regulations has led to a decreased risk of soil contamination and the cost-effective optimization of remediation activities. Based on the above, the aim of our study is to demonstrate the geoinformation processing of the remediation performed in an industrial area located in the Great Hungarian Plain, with special regard to the estimation of the amount and spread of the contaminants accumulated in the soil. In order to reveal the lithological and hydrogeological properties of the investigated area and the environmental status of the underground areas, we performed a large number of shallow land drillings (115). During the field sampling, 1000–1500 grams of samples were collected from the drill bit and were processed in an accredited laboratory. Based on the concentration and volume models created it can be concluded that with the estimations performed via modeling, we were able to locate the most critical areas from the standpoint of contamination. It was revealed that the focal point of the contaminants accumulated in the soil was in the central part of the investigated area. Furthermore, the model demonstrated the effect of lithological factors, since contaminants tend to accumulate more heavily in cohesive soils compared to porous rocks. The extent of contaminant concentration in the aquifer increased with decreasing depth; however, after reaching the floor clay the extent of contaminant concentration began to decrease. The lithological layer closest to the surface contained the most contaminants.
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