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Inhalt des Dokuments

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  • menue [1]
    • Urban Water Interfaces [2]
      • About [3]
    • News and events [4]
      • Awards [5]
      • 2021 [6]
      • 2020 [7]
      • 2019 [8]
      • 2018 [9]
      • 2017 [10]
      • 2016 [11]
      • 2015 [12]
    • General information [13]
      • Participating institutions [14]
      • Organisational structure [15]
    • Team [16]
      • Doctoral students and postdoctoral researcher [17]
      • Kollegiates/Fellows [18]
      • Fast track student [19]
      • Speakers, coordination, supervisors [20]
      • Further supervisors and assosiated partners [21]
    • Research [22]
      • Current situation [23]
      • Research idea [24]
      • Interfaces [25]
      • Common topics [26]
        • Interfaces in urban watersheds [27]
        • Interfaces in urban freshwater ecosystmes [28]
        • Interface urban hyporheic zones [29]
        • Interfaces in sewer systems [30]
      • Common approaches [31]
      • Research projects [32]
        • W1 Ecohydrological controls on urban groundwater recharge: an isotope-based modelling approach [33]
        • W2 -Scaling and connectivity assessment of critical source areas of diffuse pollution in urban catchments [34]
        • W3 - Heat and vapor fluxes of urban vegetation patterns – a remote sensing based approach [35]
        • Modelling of evapotranspiration of urban vegetation using thermal and optical remote sensing - a physically-based approach using SCOPE model [36]
        • F1 - Transformation of environmentally relevant compounds in urban lakes by aquatic invasive ecosystem engineers [37]
        • F3 - Controlling of phosphorus fluxes in urban systems [38]
        • F4 - The GHG footprint of a metropolitan area [39]
        • H1 Fate of trace organics in the hyporheic zone of urban rivers [40]
        • H2: Integral modelling approach for flow and reactive transport at surface water-groundwater interface [41]
        • H3 - Abiotic transformation of halogenated organic compounds during bank filtration [42]
        • H4 - Redox gradients in natural and technical urban water systems: population structure and physiological properties [43]
        • S1 - Interfaces in sewer systems – corrosion and odour [44]
        • S2 Validation and application of a three-phase simulation model for odour and corrosion control in sewer systems [45]
      • Associated projects [46]
        • MOSAIC - Modelling surface and groundwater with isotopes in urban catchments [47]
        • Water, heat and contaminant transport in paved urban soils [48]
        • Assessment of biofilms in sewer systems and on building materials [49]
        • Prediction of odour in sewer systems using data-driven methods [50]
      • Movies [51]
    • Qualification programme [52]
      • Study programme [53]
        • Orientation seminar [54]
        • Courses [55]
        • Seminars and workshops [56]
      • Visiting scientist programme [57]
      • Gender [58]
      • Supervision and time-line [59]
      • Additional measures [60]
      • Agreements [61]
    • Publications [62]
      • Journal articles [63]
      • Conferences contributions etc. [64]
      • UWI doctoral theses [65]
      • Search [66]
    • Job offers [67]
    • Contact [68]
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