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1.
Sci Data ; 10(1): 786, 2023 11 09.
Artigo em Inglês | MEDLINE | ID: mdl-37945569

RESUMO

Climate change, energy system transitions, and socioeconomic change are compounding influences affecting the growth of electricity demand. While energy efficiency initiatives and distributed resources can address a significant amount of this demand, the United States will likely still need new utility-scale generation resources. The energy sector uses capacity expansion planning models to determine the aggregate need for new generation, but these models are typically at the state or regional scale and are not equipped to address the wide range of location- and technology-specific issues that are increasingly a factor in power plant siting. To help address these challenges, we have developed the Geospatial Raster Input Data for Capacity Expansion Regional Feasibility (GRIDCERF) data package, a high-resolution product to evaluate siting suitability for renewable and non-renewable power plants in the conterminous United States. GRIDCERF offers 264 suitability layers for use with 56 power plant technologies in a harmonized format that can be easily ingested by geospatially-enabled modeling software allowing for customization to robustly address science objectives when evaluating varying future conditions.

2.
Nat Commun ; 12(1): 7254, 2021 12 13.
Artigo em Inglês | MEDLINE | ID: mdl-34903744

RESUMO

Drinking water supplies of cities are exposed to potential contamination arising from land use and other anthropogenic activities in local and distal source watersheds. Because water quality sampling surveys are often piecemeal, regionally inconsistent, and incomplete with respect to unregulated contaminants, the United States lacks a detailed comparison of potential source water contamination across all of its large cities. Here we combine national-scale geospatial datasets with hydrologic simulations to compute two metrics representing potential contamination of water supplies from point and nonpoint sources for over a hundred U.S. cities. We reveal enormous diversity in anthropogenic activities across watersheds with corresponding disparities in the potential contamination of drinking water supplies to cities. Approximately 5% of large cities rely on water that is composed primarily of runoff from non-pristine lands (e.g., agriculture, residential, industrial), while four-fifths of all large cities that withdraw surface water are exposed to treated wastewater in their supplies.


Assuntos
Água Potável/análise , Poluição da Água/análise , Abastecimento de Água , Efeitos Antropogênicos , Cidades , Água Potável/normas , Monitoramento Ambiental , Humanos , Hidrologia , Modelos Teóricos , Estados Unidos , Águas Residuárias/análise , Poluição da Água/prevenção & controle , Purificação da Água , Qualidade da Água , Abastecimento de Água/métodos , Abastecimento de Água/normas
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