Effect of alkali pretreatment time on kitchen waste anaerobic digestion performance enhanced by alkali pretreatment combined with bentonite: performance enhancement, microbial community structure, and functional gene analysis

被引:0
作者
Fengping Hu
Ningxin Fu
Qun Wei
Susu Liu
Yuying Hu
Shihao Zhang
Xin Wang
Xiaoming Peng
Hongling Dai
Yang Wei
机构
[1] East China JiaoTong University,School of Civil Engineering and Architecture
[2] Jiangxi Province Zhonggantou Survey and Design Co.,undefined
[3] Ltd,undefined
来源
Environmental Science and Pollution Research | 2024年 / 31卷
关键词
Kitchen waste; Anaerobic digestion; Alkali pretreatment; Bentonite; Microorganism; Functional gene analysis;
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学科分类号
摘要
Kitchen waste was mainly composed of carbohydrates, lipids, and proteins. Anaerobic digestion (AD) of kitchen waste usually occurred acidification and further deteriorated. In our previous study, alkali pretreatment combined with bentonite (AP/Be) treatment was proved to enhance high solid AD of kitchen waste. However, effects of AP time on AP/Be were not yet studied. This study investigated the effects of AP time on AP/Be treatment on enhancing high solid AD. The results showed that compared with the control group, the cumulative methane production rate could be increased by 3.30 times (149.7 mL CH4/g VS) and the volatile solids (VS) reduction rate increased by 63.36%. Microbial community analysis showed that the relative abundance of Methanosarcina and Methanosaeta were increased from 6.49 and 7.83% to 47.14 and 16.39% respectively. Predictive functional analysis showed that AP/Be treatment increased the abundance of energy production and conversion, coenzyme transport, and metabolism. This study revealed the potential mechanism of AP/Be enhanced kitchen waste AD performance and AP/Be was a potential strategy to strengthen AD.
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页码:7167 / 7178
页数:11
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[1]  
Arelli V(2021)Solid-state anaerobic digestion of sugarcane bagasse at different solid concentrations: Impact of bio augmented cellulolytic bacteria on methane yield and insights on microbial diversity Bioresour Technol 340 125675-232
[2]  
Mamindlapelli NK(2023)Choline chloride pretreatment on volatile fatty acids promotion from sludge anaerobic fermentation: In-situ deep eutectic solvents-like formation for EPS disintegration and associated microbial functional profiles upregulation Chem Eng J 467 143556-19
[3]  
Juntupally S(2023)Insights into the mitigative effects of microbial electrolysis cell on anaerobic digestion under high ammonia condition Chem Eng J 474 145760-819
[4]  
Begum S(2023)Distinct effects of typical sludge pretreatment approaches on the antibiotic resistance genes variations, associated bacterial community dynamics and metabolic activities during anaerobic fermentation process Environ Res 216 114767-141
[5]  
Anupoju GR(2023)Bioaugmentation with marine sediment-derived microbial consortia in mesophilic anaerobic digestion for enhancing methane production under ammonium or salinity stress Biores Technol 376 128853-385
[6]  
Cao W(2023)Improving removal of combined veterinary antibiotics and mitigating their negative impacts during anaerobic digestion of swine manure using modified bentonite J Water Process Eng 53 103877-168
[7]  
Fang S(2021)Combined pretreatment using CaO and liquid fraction of digestate of rice straw: Anaerobic digestion performance and electron transfer Chin J Chem Eng 36 223-88
[8]  
Wu Q(2021)Responses of anaerobic digestion of waste activated sludge to long-term stress of benzalkonium chlorides: insights to extracellular polymeric substances and microbial communities Sci Total Environ 796 148957-206
[9]  
Wu Y(2023)Alleviating acid inhibition via bentonite supplementation during acidulated swine manure anaerobic digestion: performance enhancement and microbial mechanism analysis Chemosphere 313 137577-38662
[10]  
Feng L(2022)Investigating the role of different materials supplementation in anaerobic digestion of kitchen waste: performance and microbial community dynamics Biochem Eng J 184 108490-567