• DocumentCode
    2571621
  • Title

    Incremental infrastructure transitions towards cities as forces for good in the environment

  • Author

    Jiang, F. ; Shi, F. ; Walker, R. Villarroel ; Lin, Z. ; Beck, M.B.

  • Author_Institution
    Georgia Dept. of Natural Resources, Atlanta, GA, USA
  • fYear
    2009
  • fDate
    11-14 Oct. 2009
  • Firstpage
    1476
  • Lastpage
    1482
  • Abstract
    As source-separation has been proposed as a sustainable alternative to the current wastewater treatment strategy, the improvement in sustainability associated with such transition needs to be evaluated. However, given the difficulties and uncertainty in both technological and social aspects, such transition will most probably be happening gradually, step by step. Here with a computational case study based on the city of Atlanta within the Upper Chattahoochee watershed in the southeastern United States, we simulated three steps of transition, i.e. 50%, 70%, and 100% ANS-separation (Anthropogenic Nutrient Solution) is reached. The economic sustainability of these transition strategies was evaluated with total annual economic cost (TAEC), and the environmental sustainability was evaluated with three indicators, i.e. ecological footprints (EF), flux of materials passing through the city in its context of global material cycles, and pulse rate in terms of the spectrum of disturbance frequency to which the city is subject. The simulation results showed that compared with the current strategy, the ANS-separation has significantly lower TAEC, lower EF, lower pollutant discharge, higher recovery of nutrient and energy, and more beneficial manipulation of perturbation regimes of the city´s environment. These advantages increase with the rate of ANS-separation.
  • Keywords
    socio-economic effects; sustainable development; wastewater treatment; Atlanta; anthropogenic nutrient solution; ecological footprints; economic sustainability; environmental sustainability; incremental infrastructure transitions; source-separation; total annual economic cost; upper Chattahoochee watershed; wastewater treatment; Biological system modeling; Cities and towns; Computational modeling; Costs; Economic indicators; Environmental economics; Green products; Power generation economics; Uncertainty; Wastewater treatment; ANS-separation; Ecological footprint; Total annual economic cost; metabolism; pulse rate; sustainable city;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Systems, Man and Cybernetics, 2009. SMC 2009. IEEE International Conference on
  • Conference_Location
    San Antonio, TX
  • ISSN
    1062-922X
  • Print_ISBN
    978-1-4244-2793-2
  • Electronic_ISBN
    1062-922X
  • Type

    conf

  • DOI
    10.1109/ICSMC.2009.5346301
  • Filename
    5346301