4.5 Article

A study on pore formation of high surface area activated carbon prepared by microwave-induced plasma with KOH (MiWP-KOH) activation: Effect of temperature-elevation rate

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.cep.2021.108511

关键词

Microwave plasma; Activated carbon; KOH activation; Pore formation; Fast activation; Microporous structure

资金

  1. Asahi Glass Foundation
  2. Japan ASEAN Science, Technology and Innovation Platform (JASTIP) under the Japan Science and Technology Agency (JST)

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The study focuses on the effect of temperature-elevation rate on pore formation in activated carbon synthesized using MiWP-KOH activation. The results indicate that rapid temperature elevation rate is crucial for achieving a micropore-dominating structure, with significantly higher surface area compared to conventional heating methods.
The activation using microwave-induced plasma with KOH (MiWP-KOH activation) can realize extremely fast synthesis of activated carbon (AC), which needed only several minutes. The present work focusses the effect of temperature-elevation rate on pore formation. For the discussion, AC was prepared using a conventional heat conduction method with various temperature-elevation programs, and the structural analysis results from these experiments were compared with those observed in AC prepared by the MiWP-KOH activation. As a feature in the pore structure of AC induced by the MiWP-KOH activation, micropore volume highly dominates over mesopore volume with (micropore/mesopore) ratio = 4.3-4.9. This property can be explained by the experiments with the controlled temperature-elevation rate, suggesting that rapid temperature-elevation rate is the key factor for such micropore-dominating structure. Additionally, it was suggested that the temperature of the feed material in the MiWP-KOH activation can become about 800 degrees C within 75 s. MiWP-KOH activation can generate significantly higher surface area than the conventional heating with the similar temperature changing program, suggesting the effect of microwave irradiation to enhance the pore formation. Based on these investigations, a characteristic pore formation model in the MiWP-KOH activation is considered.

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