LAPSE:2023.33382
Published Article
LAPSE:2023.33382
Effect of Particle Size on the Aerobic and Anaerobic Digestion Characteristics of Whole Rice Straw
Lina Luo, Youpei Qu, Weijia Gong, Liyuan Qin, Wenzhe Li, Yong Sun
April 21, 2023
The effect of reducing particle size on physical properties, the methane yield and energy flow were investigated through the biochemical methane potential (BMP) experiment of aerobic-anaerobic digestion (AAD) of rice straw (RS). The whole straw was crushed through four sieves of different aperture sizes (1, 3, 5, and 7 mm) to obtain the actual and non-uniform particle size distribution (PSD). The results indicated that the actual particle sizes were normally or logarithmic normally distributed. Reducing particle size could significantly promote the aerobic hydrolysis and acidification process, increase the content of volatile fatty acids (VFAs) from 4408.78 to 6225.15 mg/L and the degradation of volatile solids (VS) from 40.56% to 50.49%. The results of path analysis suggested that particle size reduction played an important role in improving lignocellulosic degradability, which was the main factor affecting methane production with the comprehensive decision of 0.4616. The maximum methane production obtained at 1 mm sieve size was 176.47 mLCH4g−1 VS. The phyla of Firmicutes (61.5%), Proteobacteria (9.3%), Chloroflexi (8.3%), Bacteroidetes (4.1%), Cyanobacteria/Chloroplast (4.6%) were mainly responsible for VFAs production and lignocellulose degradation. However, the net negative energy balance was observed at the 1 mm sieve size due to the increased energy input. Therefore, the optimum sieve size for AAD was 3 mm.
Keywords
aerobic hydrolysis and acidification, lignocellulose, methane production, particle size reduction, rice straw
Suggested Citation
Luo L, Qu Y, Gong W, Qin L, Li W, Sun Y. Effect of Particle Size on the Aerobic and Anaerobic Digestion Characteristics of Whole Rice Straw. (2023). LAPSE:2023.33382
Author Affiliations
Luo L: Department of New Energy Science and Engineering, School of Engineering, Northeast Agricultural University, No. 600 Changjiang Street, Harbin 150030, China; Key Laboratory of Renewable Resources Utilization Technology and Equipment for Cold Region Agricul
Qu Y: Department of New Energy Science and Engineering, School of Engineering, Northeast Agricultural University, No. 600 Changjiang Street, Harbin 150030, China
Gong W: Department of New Energy Science and Engineering, School of Engineering, Northeast Agricultural University, No. 600 Changjiang Street, Harbin 150030, China
Qin L: Department of New Energy Science and Engineering, School of Engineering, Northeast Agricultural University, No. 600 Changjiang Street, Harbin 150030, China
Li W: Department of New Energy Science and Engineering, School of Engineering, Northeast Agricultural University, No. 600 Changjiang Street, Harbin 150030, China; Heilongjiang Key Laboratory of Technology and Equipment for the Utilization of Agricultural Renewa [ORCID]
Sun Y: Department of New Energy Science and Engineering, School of Engineering, Northeast Agricultural University, No. 600 Changjiang Street, Harbin 150030, China; Key Laboratory of Renewable Resources Utilization Technology and Equipment for Cold Region Agricul
Journal Name
Energies
Volume
14
Issue
13
First Page
3960
Year
2021
Publication Date
2021-07-01
Published Version
ISSN
1996-1073
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PII: en14133960, Publication Type: Journal Article
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doi:10.3390/en14133960
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Apr 21, 2023
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