JURNAL KIMIA SAINS DAN APLIKASI
Vol 28, No 9 (2025): Volume 28 Issue 9 Year 2025

Effect of Carbonization Step on Surface Character of Activated Carbon from Cassava Peels and Its Simple Application for BTEX Adsorption

Cucun Alep Riyanto (Department of Chemistry, Faculty of Science and Mathematics, Satya Wacana Christian University (UKSW), Salatiga|Satya Wacana Christian University (UKSW)|Indonesia)
Alvama Pattiserlihun (Department of Physical Education, Faculty of Science and Mathematics, Satya Wacana Christian University (UKSW), Salatiga|Satya Wacana Christian University (UKSW)|Indonesia)
Blessy Yemima Andiani (Department of Chemistry, Faculty of Science and Mathematics, Satya Wacana Christian University (UKSW), Salatiga|Satya Wacana Christian University (UKSW)|Indonesia)
Ezra Kurniawan (Department of Chemistry, Faculty of Science and Mathematics, Satya Wacana Christian University (UKSW), Salatiga|Satya Wacana Christian University (UKSW)|Indonesia)
Fahmi Puteri Perdani (Department of Chemistry, Faculty of Science and Mathematics, Satya Wacana Christian University (UKSW), Salatiga|Satya Wacana Christian University (UKSW)|Indonesia)
Marcelino Kelpitna (BMT Laboratory, Bogor|BMT Laboratory|Indonesia)



Article Info

Publish Date
08 Dec 2025

Abstract

Activated carbon is obtained from biomass waste because it is cheaper and renewable from an environmental perspective. In cassava peel biomass waste, it is necessary to study the effect of the carbonization stage on the surface character and pore distribution of the activated carbon obtained. In this research, the study of the impact of the carbonization stage is continued with the application of adsorption to volatile compounds, specifically benzene, toluene, ethylbenzene, and xylene (BTEX). This study conducted carbonization at 400°C (t: 60 minutes) followed by dual activation stages, namely chemical activation (carbon: H3PO4 30%, ratio 1:5, w/b) and physical activation (furnace, T: 600°C, t: 60 minutes). After that, the activated carbon from cassava peels (CPAC) was applied as an adsorbent for BTEX. The results showed that CPAC has an amorphous character with O-H, C-H, C≡C, C=C stretching, C-O, and C=N functional groups. The carbonization step changes pore properties. CPAC-202 (with carbonization) has a mesoporous character with a surface area up to 198.233 m2/g, with the surface dominated by C and O elements. The selectivity of BTEX gas adsorption is more significant for toluene using CPAC-202, with the best adsorption reaching 6.418 mg/L.

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Journal Info

Abbrev

ksa

Publisher

Subject

Chemical Engineering, Chemistry & Bioengineering Chemistry Engineering

Description

urnal Kimia Sains dan Aplikasi (p-ISSN: 1410-8917) and e-ISSN: 2597-9914) is published by Department of Chemistry, Diponegoro University. This journal is published four times per year and publishes research, review and short communication in field of ...