Skip to main navigation
Skip to search
Skip to main content
Welcome to DTU Research Database Home
About DTU Orbit
Link opens in a new tab
Search content at Welcome to DTU Research Database
Home
Profiles
Research units
Publications
Activities
Projects
Prizes
Press/Media
Datasets
Life cycle assessment of H
2
O electrolysis technologies
Guangling Zhao
*
,
Mikkel Rykær Kraglund
,
Henrik Lund Frandsen
, Anders Christian Wulff
, Søren Højgaard Jensen
,
Ming Chen
, Christopher R. Graves
*
Corresponding author for this work
Department of Energy Conversion and Storage
Functional Oxides
Research output
:
Contribution to journal
›
Journal article
›
Research
›
peer-review
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'Life cycle assessment of H
2
O electrolysis technologies'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
Life Cycle Assessment
100%
Electrolytic Cell
100%
H2O Electrolysis
100%
Electrolysis Technology
100%
Solid Oxide Electrolysis Cell
50%
Alkaline Water Electrolysis
50%
Proton Exchange Membrane Water Electrolysis (PEMWE)
50%
Cell Stack
33%
Material Use
33%
Life Cycle Impacts
33%
Environmental Impact
16%
Technology-based
16%
Stainless Steel
16%
Hydrogen Production
16%
Sensitivity Analysis
16%
Impact Categories
16%
Potential Impact
16%
Environmental Impact Potential
16%
Environmental Impact Assessment (EIA)
16%
Effective Approach
16%
Energy Carrier
16%
Intermittent Renewable Energy
16%
Reducing Potential
16%
Iridium
16%
Electrolyzer Stack
16%
Engineering
Life Cycle Assessment
100%
Electrolysis Cell
100%
Electrolysis Technology
100%
Polymer Electrolyte Membrane
33%
Alkaline Electrolysis
33%
Solid Oxide Electrolysis
33%
Lifecycle
22%
Energy Carrier
11%
Impact Category
11%
Effective Approach
11%
Hydrogen Production
11%
Stainless Steel
11%
Variable renewable energy
11%
Hydrogen
11%