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Effects of blending on total copper release in distribution systems
Weizhong Xiao
,
Seungkwan Hong
*
, Zhijian Tang
, James S. Taylor
*
Corresponding author for this work
School of Civil, Environmental and Architectural Engineering
* World 2% Researchers
Research output
:
Contribution to journal
›
Article
›
peer-review
13
Citations (Scopus)
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Keyphrases
Total Copper
100%
Copper Ion Release
100%
Distribution System
100%
High Alkalinity
50%
Finished Water
50%
Groundwater-surface Water
50%
Increased Demand
25%
Seawater
25%
Corrosion Inhibitor
25%
Source Water
25%
Regulatory Requirements
25%
Water Quality Adjustment
25%
Low pH
25%
Corrosion Products
25%
Copper Distribution
25%
Water Quality
25%
Water Treatment
25%
Release Model
25%
Blending Problem
25%
Limited Resources
25%
Water Sources
25%
Demand Constraints
25%
Copper Corrosion
25%
Groundwater
25%
High Sulfate
25%
Confounding Effect
25%
High Chloride
25%
Treatment Process
25%
Preventive Measures
25%
Water Degradation
25%
Fundamental Strategies
25%
Nonlinear Regression
25%
Source Process
25%
Engineering
Distribution System
100%
Source Water
100%
Surface Water
100%
Water Distribution
50%
Produced Water
50%
Limited Resource
50%
Corrosion Product
50%
Nonlinear Regression
50%
Copper Corrosion
50%
Field Study
50%