Optimization of Microwave-Assisted Alkali Pretreatment for Enhancement of Delignification Process of Cocoa Pod Husk

Author:

Muharja Maktum1ORCID,Darmayanti Rizki Fitria1ORCID,Palupi Bekti1,Rahmawati Istiqomah1,Fachri Boy Arief1ORCID,Setiawan Felix Arie1ORCID,Amini Helda Wika1ORCID,Rizkiana Meta Fitri1ORCID,Rahmawati Atiqa1,Susanti Ari1,Putri Ditta Kharisma Yolanda1

Affiliation:

1. Department of Chemical Engineering, Faculty of Engineering, University of Jember, Kalimantan 37 Jember 68121, Indonesia

Abstract

In this study, the optimization of microwave-assisted alkaline (MAA) pretreatment is performed to attain the optimal operating parameters for the delignification of cocoa pod husk (CPH). The MAA performance was examined by heating the CPH solid with different particle sizes (60–120 mesh) and NaOH solution with a different sample to a solvent (SS) ratio (0.02–0.05 g/L), for short irradiation time (1–4 min). Box-Behnken Design (BBD) was utilized to optimize the percentage of lignocellulose composition changes. The results show that by enlarging particle size, the content of lignin and cellulose decreased while hemicellulose increased. By prolong irradiation time, the content of lignin and hemicellulose decreased while cellulose elevated. On the other hand, increasing the SS ratio was not significant for hemicellulose content changes. From FTIR and SEM characterization, the MAA drove the removal of lignin and hemicellulose of CPH and increased cellulose slightly. Supported by kinetic study which conducted in this work, it was exhibited that MAA pretreatment technology is an effective delignification method of CPH which can tackle the bottleneck of its commercial biofuel production. Copyright © 2021 by Authors, Published by BCREC Group. This is an open access article under the CC BY-SA License (https://creativecommons.org/licenses/by-sa/4.0). 

Funder

Ministry of Research, Technology, and Higher Education of Republic Indonesia

Publisher

Bulletin of Chemical Reaction Engineering and Catalysis

Subject

Process Chemistry and Technology,Catalysis

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