4.6 Article

Developing Lignosulfonate-Based Activated Carbon Fibers

Journal

MATERIALS
Volume 11, Issue 10, Pages -

Publisher

MDPI
DOI: 10.3390/ma11101877

Keywords

activated carbon fiber; carbonization; electrospinning; lignosulfonate; specific surface area

Funding

  1. Advanced Research Center for Green Materials Science and Technology from The Featured Area Research Center Program within the framework of the Higher Education Sprout Project by the Ministry of Education [107L9006]
  2. Ministry of Science and Technology in Taiwan [MOST 107-3017-F-002-001, 103-2633-B-002-010]

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In this study, electrospinning technology, physical activation, and carbonization processing were applied to produce lignosulfonate-based activated carbon fibers. The porous structure of the produced lignosulfonate-based activated carbon fibers primarily contained mesopores and a relatively small amount of micropores. Moreover, insufficient carbonization caused fiber damage during CO2 activation. The weight loss rate and specific surface area increased with increase in carbonization time, and products with carbonization temperatures of 700 degrees C were of higher quality than those with other temperatures. Moreover, the two-step carbonization process provided fibers with improved quality because of a low weight loss rate, improved processing, and high surface area. Lignosulfonate-based activated carbon fibers can be used as a highly efficient adsorption and filtration material, and further development of its applications would be valuable.

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