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Article

Upgrading Waste Activated Carbon by Equipping Micro-/Mesopore-Dominant Microstructures from the Perspective of Circular Economy

1
Department of Chemical Engineering and Materials Science, Yuan Ze University, Taoyuan 320, Taiwan
2
Department of Marine Environmental Engineering, National Kaohsiung University of Science and Technology, Kaohsiung 811, Taiwan
*
Author to whom correspondence should be addressed.
Processes 2022, 10(8), 1631; https://doi.org/10.3390/pr10081631
Submission received: 31 July 2022 / Revised: 14 August 2022 / Accepted: 16 August 2022 / Published: 17 August 2022

Abstract

Equipping wastes with interesting properties in response to the circular economy could release environmental burdens by reducing resource exploitation and material manufacturing. In this study, we demonstrated that the waste regenerated activated carbon (RAC) could become micro-/mesopore-dominant through a simple surfactant/gel modification. This was achieved by associating carbon precursors, such as commercially available low-cost surfactants/methyl cellulose thickening reagents, with the pores of RAC. Following heat treatment, associated carbon precursors were carbonized, hence modifying the microstructure of RAC to be micro-/mesopore-dominant. The surfactant modification gave rise to a micropore-dominant RAC by increasing the micropore volume (PVmicro) together with significantly decreasing the mesopore volume (PVmeso) and macropore volume (PVmacro). In contrast, gel modification led to mesopore-rich RAC by blocking micropores with carbonized methyl cellulose and a surfactant matrix. Interestingly, both surfactant/gel modifications were insensitive to the properties of the surfactant applied, which provided a new alternative for waste/low-grade surfactant mixture disposal. Our results provide an important demonstration that waste could be effectively upgraded with a rational design by exhibiting new properties in response to the circular economy.
Keywords: activated carbon; circular economy; microstructure; surfactants activated carbon; circular economy; microstructure; surfactants
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MDPI and ACS Style

Wang, T.-H.; Chen, C.-C.; Xu, R.-X.; Chen, C.-W.; Dong, C.-D. Upgrading Waste Activated Carbon by Equipping Micro-/Mesopore-Dominant Microstructures from the Perspective of Circular Economy. Processes 2022, 10, 1631. https://doi.org/10.3390/pr10081631

AMA Style

Wang T-H, Chen C-C, Xu R-X, Chen C-W, Dong C-D. Upgrading Waste Activated Carbon by Equipping Micro-/Mesopore-Dominant Microstructures from the Perspective of Circular Economy. Processes. 2022; 10(8):1631. https://doi.org/10.3390/pr10081631

Chicago/Turabian Style

Wang, Tsing-Hai, Chun-Chi Chen, Ruo-Xin Xu, Chiu-Wen Chen, and Cheng-Di Dong. 2022. "Upgrading Waste Activated Carbon by Equipping Micro-/Mesopore-Dominant Microstructures from the Perspective of Circular Economy" Processes 10, no. 8: 1631. https://doi.org/10.3390/pr10081631

APA Style

Wang, T.-H., Chen, C.-C., Xu, R.-X., Chen, C.-W., & Dong, C.-D. (2022). Upgrading Waste Activated Carbon by Equipping Micro-/Mesopore-Dominant Microstructures from the Perspective of Circular Economy. Processes, 10(8), 1631. https://doi.org/10.3390/pr10081631

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