Effects of biomass type, carbonization process, and activation method on the properties of bio-based activated carbons

Author:

Siipola Virpi1,Tamminen Tarja1,Källi Anssi1,Lahti Riikka2,Romar Henrik2,Rasa Kimmo3,Keskinen Riikka3,Hyväluoma Jari3,Hannula Markus4,Wikberg Hanne1

Affiliation:

1. VTT Technical Research Centre of Finland Ltd

2. University of Oulu

3. Natural Resources Institute Finland (Luke)

4. Tampere University of Technology

Abstract

Activated carbons (AC) serve as adsorbents in various applications requiring specific functionalities. In this study, the effects of biomass type, pre-carbonization process, and activation method on the properties of ACs were investigated. Chemical (KOH and H3PO4) and physical (CO2) activations were performed on slow pyrolyzed and hydrothermally carbonized (HTC) biochars produced from two feedstocks, willow and Scots pine bark (SPB). In addition, the adsorption capacities of the ACs were tested with two dyes and zinc metal. Distinct differences were found between the biochars and ACs regarding pore size distributions, surface area (238 – 3505 m2 g-1), and surface chemistry. KOH activation produced highly microporous ACs from all biochars, whereas with H3PO4 and CO2 there was also increase in the meso- and macroporosity with the HTC biochars. Adsorption capacity for dyes was dependent on the surface area, while for zinc it depended on AC’s pH. The results provide interesting insights into tailoring ACs for specific applications.

Publisher

BioResources

Subject

Waste Management and Disposal,Bioengineering,Environmental Engineering

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