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Guiding urban water management towards 1.5 °C
by
Parkinson, Simon
in
704/106/694/682
/ 706/2805
/ Aquatic Pollution
/ Climate change
/ Climate change mitigation
/ Earth and Environmental Science
/ Energy flow
/ Environment
/ Global warming
/ Greenhouse effect
/ Greenhouse gas emissions
/ Greenhouse gases
/ Nanotechnology
/ Nature-based solutions
/ Paris Agreement
/ Perspective
/ River basins
/ Urban areas
/ Waste Water Technology
/ Water allocation
/ Water conservation
/ Water Industry/Water Technologies
/ Water Management
/ Water Pollution Control
/ Water Quality/Water Pollution
2021
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Guiding urban water management towards 1.5 °C
by
Parkinson, Simon
in
704/106/694/682
/ 706/2805
/ Aquatic Pollution
/ Climate change
/ Climate change mitigation
/ Earth and Environmental Science
/ Energy flow
/ Environment
/ Global warming
/ Greenhouse effect
/ Greenhouse gas emissions
/ Greenhouse gases
/ Nanotechnology
/ Nature-based solutions
/ Paris Agreement
/ Perspective
/ River basins
/ Urban areas
/ Waste Water Technology
/ Water allocation
/ Water conservation
/ Water Industry/Water Technologies
/ Water Management
/ Water Pollution Control
/ Water Quality/Water Pollution
2021
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Do you wish to request the book?
Guiding urban water management towards 1.5 °C
by
Parkinson, Simon
in
704/106/694/682
/ 706/2805
/ Aquatic Pollution
/ Climate change
/ Climate change mitigation
/ Earth and Environmental Science
/ Energy flow
/ Environment
/ Global warming
/ Greenhouse effect
/ Greenhouse gas emissions
/ Greenhouse gases
/ Nanotechnology
/ Nature-based solutions
/ Paris Agreement
/ Perspective
/ River basins
/ Urban areas
/ Waste Water Technology
/ Water allocation
/ Water conservation
/ Water Industry/Water Technologies
/ Water Management
/ Water Pollution Control
/ Water Quality/Water Pollution
2021
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Journal Article
Guiding urban water management towards 1.5 °C
2021
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Overview
Reliable access to clean and affordable water is prerequisite for human well being, but its provision in cities generates environmental externalities including greenhouse gas (GHG) emissions. As policy-makers target opportunities to mitigate GHGs in line with the Paris Agreement, it remains vague how urban water management can contribute to the goal of limiting climate warming to 1.5 °C. This perspective guides policy-makers in the selection of innovative technologies and strategies for leveraging urban water management as a climate change mitigation solution. Recent literature, data and scenarios are reviewed to shine a light on the GHG mitigation potential and the key areas requiring future research. Increasing urban water demands in emerging economies and over-consumption in developed regions pose mitigation challenges due to energy and material requirements that can be partly offset through end-use water conservation and expansion of decentralized, nature-based solutions. Policies that integrate urban water and energy flows, or reconfigure urban water allocation at the river basin-level remain untapped mitigation solutions with large gaps in our understanding of potentials.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
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