Chlorella-derived activated carbon with hierarchical pore structure for energy storage materials and adsorbents
- Authors
- Han, Joah; Lee, Kyubock; Choi, Min Sung; Park, Ho Seok; Kim, Woong; Roh, Kwang Chul
- Issue Date
- 4월-2019
- Publisher
- SPRINGER
- Keywords
- Chlorella vulgaris; Biomass; Activated carbon; CO2 adsorbent; Energy storage material
- Citation
- CARBON LETTERS, v.29, no.2, pp.167 - 175
- Indexed
- SCIE
SCOPUS
KCI
- Journal Title
- CARBON LETTERS
- Volume
- 29
- Number
- 2
- Start Page
- 167
- End Page
- 175
- URI
- https://scholar.korea.ac.kr/handle/2021.sw.korea/66492
- DOI
- 10.1007/s42823-019-00018-y
- ISSN
- 1976-4251
- Abstract
- Chlorella-derived activated carbon (CDAC) with a high specific surface area and hierarchical pore structure was prepared as a CO2 adsorbent and as a supercapacitor electrode material. During KOH activation of Chlorella-derived carbon, metallic K gas penetrated from the outer walls to the inner cells, and pores formed on the outer frame and the inner surface. Micropores were dominant in CDAC, contributing toward a high specific surface area (>3500 m(2)/g) and a hierarchical pore structure owing to the cell walls. Consequently, CDAC exhibited a high CO2 adsorption capacity (13.41 mmol/g at 10 atm and room temperature) and afforded high specific capacitance (142 F/g) and rate capability (retention ratio: 91.5%) in supercapacitors. Compared with woody- and herbaceous-biomass-derived activated carbons, CDAC has a superior specific surface area when the precursors are used without any pretreatment under the same conditions due to their soft components such as lipids and proteins. Furthermore, developing microalgae into high-value-added products is beneficial from both economic and environmental perspectives.
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Collections - College of Engineering > Department of Materials Science and Engineering > 1. Journal Articles
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