S. Rohde, H. Wiltsche, A. Cowley, B. Gollas | 2022 | Planetary and Space Science
DOI 10.1016/j.pss.2022.105534Review state
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This paper investigates an electrolysis-based method for oxygen extraction from lunar regolith using EAC-1 simulant and ionic liquid electrolyte. It reports solubility data, redox behavior, and electrode surface analysis. The paper discusses the dissolution of EAC-1 in an ionic liquid and its regeneration through electrochemical methods. It also explores the potential for electrolysis experiments to recover metals from lunar regolith using ionic liquids. The provided text appears to be a list of image file paths and metadata, likely from a scientific or technical paper hosted on a platform like Elsevier or similar. Each line contains information about an image file, including its name, file type (e.g., JPG, GIF), and possibly its resolution or size. The file paths suggest that these images are associated with a specific paper or article, identified by the DOI or article ID 'S0032063322001209'. The images are categorized into different resolutions: thumbnails (sml), standard (jpg or gif), and high-resolution (lrg). The provided text is a series of URLs and file names related to SVG (Scalable Vector Graphics) files. These files are likely associated with a scientific or technical pap
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lunar regolith simulant
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Dissolution of EAC-1 in the ionic liquid
chemical | The study has potential applications in space exploration, particularly in the recovery of metals from lunar regolith, a
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Academic Paper Identification
Content Classification
Dissolution of EAC-1 in [EMIM][HSO4]
Dissolution
Electrolysis of EAC-1 in [EMIM][HSO4]
Electrolysis
License
CC BY
DOI
10.1016/j.pss.2022.105534
ISSN
0032-0633
Journal
Planetary and Space Science
Publication Year
2022
Article Number
105534
Title
Dissolution of EAC-1 in the ionic liquid
Keywords
EAC-1, ionic liquid, dissolution, electrochemistry, lunar regolith