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  • atmospheric moisture; fate of evaporation; File content; File format; File name; numerical moisture tracking; precipitation; Size; Uniform resource locator/link to file  (1)
  • atmospheric moisture; fate of evaporation; numerical moisture tracking; precipitation  (1)
  • ddc:553.7  (1)
  • 1
    Publication Date: 2023-12-14
    Description: 〈title xmlns:mml="http://www.w3.org/1998/Math/MathML"〉Abstract〈/title〉〈p xmlns:mml="http://www.w3.org/1998/Math/MathML" xml:lang="en"〉The supply of water, food, and energy in our global economy is highly interlinked. Virtual blue water embedded into internationally traded food crops has therefore been extensively researched in recent years. This study focuses on the often neglected energy needed to supply this blue irrigation water. It provides a globally applicable and spatially explicit approach to the watershed level for water source specific quantification of energy consumption and related greenhouse gas (GHG) emissions of irrigation water supply. The approach is applied to Israel's total domestic and imported food crop supply of 105 crops by additionally including import‐related transportation energy and emissions. Total energy use and related emissions of domestic crop production were much lower (551 GWh/422 kt CO〈sub〉2〈/sub〉‐equivalents [CO〈sub〉2〈/sub〉e]) than those embedded into crop imports (1639 GWh/649 kt CO〈sub〉2〈/sub〉e). Domestic energy and emissions were mainly attributable to the irrigation water supply with artificial water sources (treated domestic wastewater and desalinated water, 84%). Transport accounted for 79% and 66% of virtually imported energy and emissions, respectively. Despite transport, specific GHG emissions (CO〈sub〉2〈/sub〉e per ton of crop) were significantly lower for several crops (e.g., olives, almonds, chickpeas) compared to domestic production. This could be attributed to the high share of energy‐intensive artificial water supply in combination with higher irrigation water demands in Israel. In the course of an increasing demand for artificial water supply in arid and semi‐arid regions, our findings point to the importance of including “energy for water” into comparative environmental assessment of crop supply to support decision‐making related to the water–energy–food nexus.〈/p〉
    Description: MedWater
    Description: Federal Ministry of Education and Research, Germany
    Keywords: ddc:553.7 ; agricultural water use ; energy for water ; industrial ecology ; Israel ; virtual water flows ; greenhouse gas emissions
    Language: English
    Type: doc-type:article
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  • 2
    Publication Date: 2023-08-25
    Description: This work provides a global dataset on the fate of land evaporation for a fine-meshed grid of source and receptor cells. The dataset was created through a global run of the numerical moisture tracking model WAM-2layers. The tracking was conducted on a 1.5° * 1.5° grid and was based on reanalysis data from the ERA-Interim database. Climatic input data were incorporated in 3 respectively 6-hour time steps and represent the time period from 2001 to 2018. The tracking direction was forwards in time and the geographical borders of the model were located at +/- 79.5° latitude. As a result of the model run, the annual as well as the monthly average fate of evaporation was determined for 8684 land grid cells (all land cells except those located within Greenland and Antarctica) and provided via source-receptor matrices. The gained dataset was complemented via an aggregation to country and basin scales in order to highlight possible usages for areas of interest larger than grid cells. This resulted in data for 265 countries and 8223 basins. Finally, five types of source-receptor matrices for average moisture transfers were chosen to build the core of the dataset: land grid cell to grid cell, country to grid cell, basin to grid cell, country to country, basin to basin. Besides providing results averaged over the considered period (basic dataset), inter-annual results on a grid cell basis (inter-annual dataset) were added in addition. The dataset is the first ready-to-download dataset providing the overall fate of evaporation for land-cells of a global fine-meshed grid in monthly resolution. At the same time, information on the sources of precipitation can be extracted from it. It could be used for investigations into average annual, seasonal and inter-annual sink and source regions of atmospheric moisture from land masses for most of the regions in the world and comes along with example scripts for the readout and plotting of the data.
    Keywords: atmospheric moisture; fate of evaporation; numerical moisture tracking; precipitation
    Type: Dataset
    Format: application/zip, 2 datasets
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  • 3
    Publication Date: 2023-08-25
    Keywords: atmospheric moisture; fate of evaporation; File content; File format; File name; numerical moisture tracking; precipitation; Size; Uniform resource locator/link to file
    Type: Dataset
    Format: text/tab-separated-values, 10 data points
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