Identifying Amsterdam's nutrient hotspots: A new method to map human excreta at building and neighborhood scale.

Recovering nutrients from human excreta and wastewater has been receiving increasing attention as a means to supplement or replace synthetic fertilizer production. Apart from technologies for nutrient recovery at centralized wastewater treatment plants, numerous decentralized, source‐separated sanit...

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Publicado en:Journal of Industrial Ecology Vol. 24; no. 3; pp. 473 - 485
Autores principales: Wielemaker, Rosanne, Stuiver, John, Zeeman, Grietje, Weijma, Jan
Formato: Artículo
Publicado: Springer Nature Jun2020
Materias:
Acceso en línea:Ver este registro en EBSCOhost
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      pub: Springer Nature
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        143634387
        10.1111/jiec.12962
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        atl: Identifying Amsterdam's nutrient hotspots: A new method to map human excreta at building and neighborhood scale.
      aug:
        au:
          Wielemaker, Rosanne
          Stuiver, John
          Zeeman, Grietje
          Weijma, Jan
        affil:
          Department of Environmental Technology, Wageningen University & Research, Wageningen,, The Netherlands
          Geo‐Information Science and Remote Sensing, Wageningen University & Research, Wageningen,, The Netherlands
          LeAF, Wageningen,, The Netherlands
      su:
        Amsterdam (Netherlands)
        Sanitation
        Neighborhoods
        Multiple scale method
        Geographic information systems
        Sewage disposal plants
        Synthetic fertilizers
      sug:
        subj:
          Sanitation
          Neighborhoods
          Amsterdam (Netherlands)
          Solid Waste Landfill
          Water and Sewer Line and Related Structures Construction
          Sewage Treatment Facilities
          Waste treatment and disposal
          Multiple scale method
          Geographic information systems
          Sewage disposal plants
          Synthetic fertilizers
      keyword:
        geographic information system (GIS)
        nutrient recycling
        phosphorus
        resource recovery
        urban metabolism
        wastewater
        geographic information system (GIS)
        nutrient recycling
        phosphorus
        resource recovery
        urban metabolism
        wastewater
      ab: Recovering nutrients from human excreta and wastewater has been receiving increasing attention as a means to supplement or replace synthetic fertilizer production. Apart from technologies for nutrient recovery at centralized wastewater treatment plants, numerous decentralized, source‐separated sanitation systems, also known as new sanitation systems, have been developed to facilitate recovery. Decision‐making for the planning and implementation of new sanitation systems would benefit from a spatially explicit inventory of nutrient hotspots in urban areas. To provide visual representations of nutrient loads, we developed a methodology that combines spatial‐temporal modeling with geographic information system analysis, and used it for the city of Amsterdam. The methodology is new in the field of nutrient mapping, especially at the smallest geographical scale: building. Nitrogen, phosphorus, and potassium loads and hotspots are mapped at both building and neighborhood scale, drawing attention to the need for multiple scale analyses in decision‐making. This study concludes with a discussion on the potential to further develop the method proposed to include more detailed and verified data and to identify nutrient hotspots that are promising as nutrient recovery sites with new sanitation systems.
      pubtype: Academic Journal
      doctype: Article
      src: R
    language: English
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