Applicability of Rice Husk Residue Generated by the Silica Extraction Process to Anaerobic Digestion for Methane Production

Author:

Park Seon Young12,Jeon Byoung Seung1,Gu Yang Mo12,Park Ji Yeon12,Kim Hyunook3ORCID,Sang Byoung-In2ORCID,Kan Eunsung456ORCID,Choi Okkyoung2,Lee Jin Hyung1ORCID

Affiliation:

1. Korea Institute of Ceramic Engineering and Technology, Cheongju 28160, Republic of Korea

2. Department of Chemical Engineering, Hanyang University, Seoul 04763, Republic of Korea

3. Department of Environmental Engineering, University of Seoul, Seoul 02504, Republic of Korea

4. Texas A&M AgriLife Research Center, Stephenville, TX 76401, USA

5. Department of Biological and Agricultural Engineering, Texas A&M University, College Station, TX 77843, USA

6. Department of Wildlife, Sustainability, and Ecosystem Sciences, Tarleton State University, Stephenville, TX 76401, USA

Abstract

Rice husks are a feedstock of biogenic silica because of their high silica content. After silica extraction, a solid residue comprising mostly carbohydrates is present. Solid residue valorization is important for closed-loop systems using rice husk and has minimal negative environmental impacts. In this study, we used solid rice husk that was generated by silica extractionto anaerobic digestion for producing biomethane. The rice husk residue was characterized in terms of total solids, volatile solids, pH, composition, and particle size. Changing the characteristics increased biogas production by 2.48-fold compared to that of raw rice husk. The residue produced 166.4 mL-biogas g−1 vs. and 100.4 mL CH 4 g−1 VS, much more than previously reported. Microbial community analysis, which was conducted to investigate the biological reasons for increased biogas and methane, found increased Bacteroidetes levels in the rice husk samples. Among archaeal communities, Bathyarchaeota was more abundant in all rice husk samples than in the inoculum. The rice husk residue contained more operational taxonomic units than other samples. These changes in the microbial community significantly influenced the anaerobic digestion of the rice husk residue and improved methane production. Our findings provide a basis for the cleaner utilization of rice husk residue to produce renewable energy.

Funder

Korea Environment Industry & Technology Institute

Korea Institute of Ceramic Engineering and Technology

National Research Foundation of Korea

Basic Study and Interdisciplinary R&D Foundation Fund of the University of Seoul

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction

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