Tailoring wood waste biochar as a reusable microwave absorbent for pollutant removal: Structure-property-performance relationship and iron-carbon interaction
- Authors
- Sun, Yuqing; Zhang, Qiaozhi; Clark, James H.; Graham, Nigel J. D.; Hou, Deyi; Ok, Yong Sik; Tsang, Daniel C. W.
- Issue Date
- 10월-2022
- Publisher
- ELSEVIER SCI LTD
- Keywords
- Microwave absorption; Engineered biochar; Iron-biochar composite; Sustainable wastewater treatment; Wood waste recycling/management
- Citation
- BIORESOURCE TECHNOLOGY, v.362
- Indexed
- SCIE
SCOPUS
- Journal Title
- BIORESOURCE TECHNOLOGY
- Volume
- 362
- URI
- https://scholar.korea.ac.kr/handle/2021.sw.korea/145688
- DOI
- 10.1016/j.biortech.2022.127838
- ISSN
- 0960-8524
- Abstract
- This study innovated the concept in designing an efficient and reusable microwave (MW) absorbent through concurrent exploitation of carbon graphitization, oxygen functionalization, and carbothermal iron reduction underpinned by an endothermic co-pyrolysis of wood waste and low-dosage iron. A powerful MW assimilation was accomplished from nanoscale amorphous magnetic particles as well as graphitized microporous carbon-iron skeleton in the biochar composites. Relative to a weak magnetic loss derived from the iron phase, the graphitic carbon architecture with abundant surface functionalities (i.e., C=O and C=O) exhibited a strong dielectric loss, which was thus prioritized as major active sites during MW reuse. The MW-absorbing biochar demonstrated a fast, robust, and durable removal of a refractory herbicide (2,4-dichlorophenoxy acetic acid) under mild MW irradiation with zero chemical input, low electricity consumption, and negligible Fe dissolution. Overall, this study will foster carbon-neutral industrial wastewater treatment and wood waste valorization.
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Collections - College of Life Sciences and Biotechnology > Division of Environmental Science and Ecological Engineering > 1. Journal Articles
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