Enhanced Production of Biogas Using Biochar-Sulfur Composite in the Methane Fermentation Process

被引:3
作者
Sygula, Ewa [1 ]
Galezowska, Michalina [1 ]
Bialowiec, Andrzej [1 ]
机构
[1] Wroclaw Univ Environm & Life Sci, Dept Appl Bioecon, 37a Chelmonskiego Str, PL-51630 Wroclaw, Poland
关键词
sulfur; biogas; biochar; methane fermentation; ANAEROBIC-DIGESTION; REMOVAL;
D O I
10.3390/ma15134517
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The methane fermentation of organic waste is one way to minimize organic waste, which accounts for 77% of the global municipal waste stream. The use of biochar as an additive for methane fermentation has been shown to increase the production potential of biogas. Sulfur waste has a potential application to synergistic recycling in a form of composites with other materials including biochar. A composite product in the form of a mixture of biochar and molten sulfur has been proposed. In this experiment, additions of the sulfur-biochar composite (SBC) were tested to improve the fermentation process. The biochar was produced from apple chips under the temperature of 500 degrees C. The ground biochar and sulfur (<1 mm particle size) were mixed in the proportion of 40% biochar and 60% sulfur and heated to 140 degrees C for sulfur melting. After cooling, the solidified composite was ground. The SBC was added in the dose rate of 10% by dry mass of prepared artificial kitchen waste. Wet anaerobic digestion was carried out in the batch reactors under a temperature of 37 degrees C for 21 days. As an inoculum, the digestate from Bio-Wat Sp. z. o. o., Swidnica, Poland, was used. The results showed that released biogas reached 672 mL x g(vs)(-1), and the yield was 4% higher than in the variant without the SBC. Kinetics study indicated that the biogas production constant rate reached 0.214 d(-1) and was 4.4% higher than in the variant without the SBC.
引用
收藏
页数:9
相关论文
共 50 条
[41]   Impact of Optimized Flow Pattern on Pollutant Removal and Biogas Production Rate Using Wastewater Anaerobic Fermentation [J].
Huang, Ruyi ;
Mei, Zili ;
Long, Yan ;
Xiong, Xia ;
Wang, Jun ;
Guo, Ting ;
Luo, Tao ;
Long, Enshen .
BIORESOURCES, 2015, 10 (03) :4826-4842
[42]   Increasing the methane production rate of hydrogenotrophic methanogens using biochar as a biocarrier [J].
Yang, Hao-Jie ;
Yang, Zhi-Man ;
Xu, Xiao-Hui ;
Guo, Rong-Bo .
BIORESOURCE TECHNOLOGY, 2020, 302
[43]   Influence of Animal/Plant Activated Biochar Properties on Methane Production from Corn Stalk by Anaerobic Fermentation [J].
Zhang, Zhen ;
Tian, Shujian ;
Liu, Jun ;
Guo, Peng-Yan ;
Shen, Jie .
FERMENTATION-BASEL, 2022, 8 (08)
[44]   Improvement of Biogas Production Using Biochar from Digestate at Different Pyrolysis Temperatures during OFMSW Anaerobic Digestion [J].
Alghashm, Shakib ;
Song, Lin ;
Liu, Lulu ;
Ouyang, Chuang ;
Zhou, John L. ;
Li, Xiaowei .
SUSTAINABILITY, 2023, 15 (15)
[45]   Boosting biogas production and methane yield by using street dust as an additive on anaerobic digestion of cattle manure [J].
Calhan, Rahman ;
Ulutas, Kadir .
BIOMASS CONVERSION AND BIOREFINERY, 2023, 13 (08) :7385-7396
[46]   Boosting biogas production and methane yield by using street dust as an additive on anaerobic digestion of cattle manure [J].
Rahman Çalhan ;
Kadir Ulutaş .
Biomass Conversion and Biorefinery, 2023, 13 :7385-7396
[47]   Enhanced methane production from protein and lipid-rich wastewater using powdered oat husk-biochar [J].
Pages-Diaz, Jhosane ;
Vidal, Ivan ;
Huilinir, Cesar ;
Hernandez-Velez, Leslie ;
Lorenzo-Llanes, Junior .
JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGY, 2024, 99 (11) :2381-2394
[48]   Enhanced Anaerobic Biogas Production From Wheat Straw by Herbal-Extraction Process Residues Supplementation [J].
Xi, Yonglan ;
Liu, Yang ;
Ye, Xiaomei ;
Du, Jing ;
Kong, Xiangping ;
Guo, Dong ;
Xiao, Qingbo .
FRONTIERS IN BIOENGINEERING AND BIOTECHNOLOGY, 2021, 9
[49]   Enhancing Methane Production in Anaerobic Digestion of Food Waste Using Co-Pyrolysis Biochar Derived from Digestate and Rice Straw [J].
Yang, Qinyan ;
Liu, Huanran ;
Liu, Li ;
Yan, Zhen ;
Chui, Chunmeng ;
Yang, Niannian ;
Wang, Chen ;
Shen, Guoqing ;
Chen, Qincheng .
MOLECULES, 2025, 30 (08)
[50]   Production of hydrogen and methane from wastewater sludge using anaerobic fermentation [J].
Ting, C. H. ;
Lee, D. J. .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2007, 32 (06) :677-682