Activating cellulose with filtrate from washing active carbon of previous round of activation for maximizing utilization efficiency of activators and minimizing liquid waste

Activation of biomass with K 2 C 2 O 4 or KOH requires post-treatment of resulting activated carbon (AC) via acid (i.e. HCl) pickling to leach potassium derivatives (i.e. K 2 CO 3 and K 2 O) in form of KCl, which generates liquid waste. Water washing offers an alternative route to recover K 2 CO 3 and K 2 O, which can serve as activators in second-round activation, maximizing utilization efficiency of activator while minimizing formation of liquid waste. Such a hypothesis was verified herein by conducting activation of cellulose with K 2 C 2 O 4 or KOH, recovering potassium derivatives in filtrate via water washing and performing second-round activation of cellulose with the filtrate. The results showed that recycled K 2 CO 3 exhibited higher capability than K 2 C 2 O 4 for generating pores, forming AC with comparable specific surfacer area (1094.9 versus 1057.9 m 2 /g from K 2 C 2 O 4 activation), larger pore diameters (2.2 versus 1.9 nm) and special hollow honeycomblike surface structure. This was attributed to superior activity of the recycled K 2 CO 3 for gasification/cracking reactions. The recycled K 2 CO 3 from first-round KOH activation delivered AC with improved pore development (1168.8 m 2 /g) compared with AC directly prepared by fresh KOH activation (729.1 m 2 /g). Inserting K into the carbon skeleton structures during activation with KOH blocked partially pores of resulting AC, while the activation with recycled K 2 CO 3 did not. The life cycle assessment showed that the use of filtrate via water washing of AC for next-round activation could effectively diminish environmental impact.

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Publication Details

Journal
Fuel
Published
2026-10-03
DOI
https://doi.org/10.1016/j.fuel.2026.141566
Primary Topic
Adsorption and biosorption for pollutant removal
Type
article
Field-Weighted Citation Impact
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article

Activating cellulose with filtrate from washing active carbon of previous round of activation for maximizing utilization efficiency of activators and minimizing liquid waste

Yuchen Jiang, Mengjiao Fan, Yuewen Shao, Chao Li et al.
Fuel
Adsorption and biosorption for pollutant removal
article

Activating cellulose with filtrate from washing active carbon of previous round of activation for maximizing utilization efficiency of activators and minimizing liquid waste

Yuchen Jiang, Mengjiao Fan, Yuewen Shao, Chao Li, Shu Zhang, Baihong Li, Yi Wang, Xun Hu
article en

Abstract

Activation of biomass with K 2 C 2 O 4 or KOH requires post-treatment of resulting activated carbon (AC) via acid (i.e. HCl) pickling to leach potassium derivatives (i.e. K 2 CO 3 and K 2 O) in form of KCl, which generates liquid waste. Water washing offers an alternative route to recover K 2 CO 3 and K 2 O, which can serve as activators in second-round activation, maximizing utilization efficiency of activator while minimizing formation of liquid waste. Such a hypothesis was verified herein by conducting activation of cellulose with K 2 C 2 O 4 or KOH, recovering potassium derivatives in filtrate via water washing and performing second-round activation of cellulose with the filtrate. The results showed that recycled K 2 CO 3 exhibited higher capability than K 2 C 2 O 4 for generating pores, forming AC with comparable specific surfacer area (1094.9 versus 1057.9 m 2 /g from K 2 C 2 O 4 activation), larger pore diameters (2.2 versus 1.9 nm) and special hollow honeycomblike surface structure. This was attributed to superior activity of the recycled K 2 CO 3 for gasification/cracking reactions. The recycled K 2 CO 3 from first-round KOH activation delivered AC with improved pore development (1168.8 m 2 /g) compared with AC directly prepared by fresh KOH activation (729.1 m 2 /g). Inserting K into the carbon skeleton structures during activation with KOH blocked partially pores of resulting AC, while the activation with recycled K 2 CO 3 did not. The life cycle assessment showed that the use of filtrate via water washing of AC for next-round activation could effectively diminish environmental impact.

FuelVol. 430
Nanjing Forestry University (CN), University of Jinan (CN), Huazhong University of Science and Technology (CN)
Openalex Percentile: Top 21%
Adsorption and biosorption for pollutant removal
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