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Urban Subsurface Planning and Management Week, SUB-URBAN 2017, 13-16 March 2017, Bucharest, Romania Urban Geochemistry: from 2D to 3D

机译:城市地下规划与管理周,2017年3月13日至16日,布加勒斯特,罗马尼亚都市地球化学:从2D到3D

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The current state of knowledge in relation to soil and subsoil geochemistry (when available) is overwhelmingly based on surface (topsoil) and very near surface sampling of subsoils. This is expressed in the form of 2D mapping, based on interpolation between sample sites. 2D topsoil acquisition is particularly well suited for addressing health issues; deeper geochemical sampling is required more typically in relation to urban (re)development, construction work and remediation of contamination. 3D geochemical knowledge, although as yet uncommon, could be very useful in optimizing urban redevelopment projects, anticipating contamination problems, and managing excavated materials (e.g. local reuse possibilities, disposal costs etc.). Because all of these aspects can have important economic, environmental and social consequences, they are considered essential for urban sustainable development. To meet these future 3D, and potentially even 4D (temporal and predictive) needs, improved development of data acquisition, management, visualisation and use of these are crucial steps.
机译:目前与土壤和底土地球化学有关的知识状态(当可用时)绝大多数基于表面(TOPSOIL),并且非常接近表面采样。这以2D映射的形式表示,基于样本位点之间的插值。 2D表土收购特​​别适用于解决健康问题;更深入的地球化学抽样是必要的,更典型的是与城市(重新)发展,建设工作和污染的修复有关。 3D地球化学知识虽然尚不常见,但在优化城市重建项目,预测污染问题和管理挖掘材料(例如,当地重用可能性,处置成本等)非常有用。由于所有这些方面都可以具有重要的经济,环境和社会后果,因此他们被认为是城市可持续发展至关重要。为了满足这些未来的3D,甚至可能甚至4D(时间和预测)需求,改善了数据采集,管理,可视化和使用这些的发展是关键的步骤。

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