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ModelPROBE: model driven soil probing, site assessment and evaluation

机译:ModelPROBE:模型驱动的土壤探测,场地评估和评估

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Conventional techniques for site characterisation are time consuming, cost intensive, and often do not support decision making with regard to sustainable remediation. Therefore, new techniques for step by step site characterization with smart feed back loops are necessary that are able to support a future "soil framework directive". Advanced geophysical site characterization techniques combined with new types of vegetation analysis will be developed. Based on these non-invasive surveys, the extension of sources, contamination levels (THP, BTEX, PAH, CHC, explosives, heavy metals and radio nuclides) and soil heterogeneities will be localized first. Hot spots will then be investigated by new direct push probing systems integrated with geophysical and hydrogeological methods and combined with chemical and isotopic contaminant analysis for source localization and identification (environmental forensics). The actually occurring bioprocesses, such as contaminant degradation or sorption and mobilization processes, will be assessed using biosensors, in situ microcosms, and stable isotope and biomarker analysis. These new techniques and tools will be evaluated against best practice of conventional methods. The ModelPROBE project (EU-FP7 collaborative project) gives the opportunity to test, optimize and demonstrate the proposed approach at fully equipped and characterized European brownfield reference sites in Germany, Italy, Norway and the Czech Republic. Integrated statistical analysis and modelling at different stages, the step by step approach will result in an improved view of soil and subsurface contamination and will provide a sound basis for a cost-effective risk assessment and decision in the choice of the most appropriate sustainable remediation strategy.
机译:用于站点表征的常规技术非常耗时,成本高昂,并且通常不支持有关可持续修复的决策。因此,需要具有智能反馈回路的逐步表征的新技术,这些新技术必须能够支持未来的“土壤框架指令”。将开发先进的地球物理场表征技术和新型的植被分析技术。根据这些非侵入性调查,将首先确定来源,污染水平(THP,BTEX,PAH,CHC,炸药,重金属和放射性核素)和土壤异质性的扩展。然后,将通过结合地球物理和水文地质方法并结合化学和同位素污染物分析进行源定位和识别(环境取证)的新型直接推动探测系统来研究热点。实际发生的生物过程,例如污染物降解或吸附和迁移过程,将使用生物传感器,原位微观世界以及稳定的同位素和生物标记分析进行评估。这些新技术和工具将根据常规方法的最佳实践进行评估。 ModelPROBE项目(EU-FP7协作项目)使您有机会在德国,意大利,挪威和捷克共和国的设备齐全且具有特征的欧洲褐地参考点测试,优化和演示所建议的方法。在不同阶段进行综合统计分析和建模,逐步方法将改善土壤和地下污染的状况,并为选择最合适的可持续修复策略进行具有成本效益的风险评估和决策提供坚实的基础。

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