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"Water reclamation"×

Water Reuse Energy Demands and Water Quality Metrics

This white paper discusses strategies for enhancing water resilience in energy production by advancing water reuse and reclamation technologies, particularly for thermoelectric power plants and data centers. The focus is on efficiently closing the water loop by processing discharg...
Shurtliff, M., and Reese, S.

Regional Energy and Water Resilience Strategies for Critical Thermoelectric Power Generation and Data Center Technologies

This white paper discusses strategies for improving water management in thermoelectric power plants and data centers by focusing on the reclamation and management of cooling water. The primary goal is to efficiently close the water cycle by processing discharged cooling water to r...
Rigby, A., and Wilson, A.

Water Treatment and Valorization of Mine Byproducts in the Western US

This white paper highlights the critical role of water management in the mining and mineral processing sectors, particularly concerning the reclamation and treatment of water used in extracting essential materials for next-generation energy technologies and national security syste...
Wilson, A.

Semiconductor Industry Waste Valorization for Recovery of Gallium

This white paper discusses the critical intersection of energy and water resilience, focusing on advancing water reuse and reclamation technologies to address water scarcity, particularly in the semiconductor manufacturing industry. The paper emphasizes the importance of recoverin...
Behera, D., and Adhikari, B.

Water Availability for Cooling Systems: Assessing Demands, Constraints, and Alternative Sources for Thermoelectric Plants and Data Centers

This white paper focuses on enhancing the intersection of energy and water resilience by advancing water reuse and reclamation technologies, particularly for thermoelectric power plants and data centers. The primary goal is to efficiently manage cooling water to meet growing deman...
Pacheco, C., Cafferty, K., Reese, S., Atkinson, T., Mosier, T., and Tidwell, V.

Contaminants of Emerging Concern in Water Sources and Impacts on Water and Wastewater Treatment

This white paper examines the critical issue of contaminants of emerging concern (CECs) in water systems, emphasizing the need for advanced water reuse and reclamation technologies to mitigate water scarcity, particularly in arid and remote regions. These contaminants, which inclu...
Saulsbury, B., Reese, S., and Mathews, T.

Energy-Water Interdependence Network (EWIN) of Regional Water Supply using Nonconventional Water for Energy-Water Resilience

The focal area of this paper is energy and water interconnection. The challenges faced include the need for extra energy to treat nonconventional water (NCW) and high reginal energy intensity of water supply using NCW. Near-term opportunities are establishing energy-water interdep...
Lin, Y., and Arges, C.

Water-Energy Resiliency for Agricultural Systems

This white paper focuses on energy-water implications of agricultural water supply needs and nutrient management. Challenges include agricultural water use and consumption, energy-water relationships in agriculture, and water quality impacts on drinking water and surface water. ...
Steward, D., and Leick, N.

A Coupled Energy-Water Storage Architecture for Resilient Urban Power and Water Distribution

This white paper proposes a coupled energy-water storage architecture to enhance the resilience of urban power and water distribution networks. The concept leverages GLIDES concept (Ground-Level Integrated Diverse Energy Storage), which is a pneumo-hydraulic storage technology dev...
Chen, Y., and Sun, J.

Improved quantification of river nutrient loading for better water quality and more efficient energy use

The focus of this paper is multi-sector dynamics involving agriculture practices, water quality and energy. Currently there lacks high-resolution spatiotemporal data regarding water quality and usage, forcing the planning for water treatment to adopt the conservative, worst-case a...
Tang, J., and Zhu, Q.

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