event 26 Feb 2018

The State of U.S. Urban Water // Data and the Energy-Water Nexus

By Christopher M. Chini and Ashlynn S. Stillwell. In this study, the authors evaluate the energy-for-water component of the energy-water nexus by providing and analyzing a unique primary database consisting of drinking water and wastewater utility flows and energy. These anthropogenic fluxes of water through the urban environment are used to assess the state of the U.S. urban energy-water nexus at over 160 utilities.

Thanun buranapong 179 unsplash
(C) Thanun Buranapong / Unsplash

The average daily per person water flux is estimated at 560 liters of drinking water and 500 liters of wastewater. Drinking water and wastewater utilities require 340 kWh/1,000 m3 and 430 kWh/1,000 m3 of energy, respectively, to treat these resources. The total national energy demand for water utilities accounts for 1.0% of the total annual electricity consumption of the United States.

Additionally, the water and embedded energy loss associated with non-revenue water accounts for 9.1 x 109 m3 of water and 3,100 GWh, enough electricity to power 300,000 U.S. households annually.

Finally, the water flux and embedded energy fluctuated monthly in many cities. As the nation's water resources become increasingly scarce and unpredictable, it is essential to have a set of empirical data for continuous evaluation and updates on the state of the U.S. urban energy-water nexus.

Download

Wiley website (ePurchase)

Published

February 2018 (manuscript accepted)

In

Water Resources Research, doi: 10.1002/2017WR022265

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