优化微曝气预处理促进富油酸环境中中温产甲烷。

IF 7.1 2区 环境科学与生态学 Q1 ENGINEERING, ENVIRONMENTAL
Xiang Li , Yi-Juan Yan , Hong-Ming Wu , Samir Ibrahim Gadow , Hongyu Jiang , Zhe Kong , Yong Hu
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引用次数: 0

摘要

微曝气预处理已成为改善厌氧生物反应器处理富脂有机废物性能的一项有前途的技术,特别是在减轻长链脂肪酸(LCFAs)的积累方面。微曝气强度是优化底物水解和产甲烷效率的关键因素。在本研究中,以乙酸盐和葡萄糖为底物,分别确定了醋酸破酯(30 mL-air/g-COD)和总甲烷生成(7.5 mL-air/g-COD)的最佳微曝气强度。随后,以乙酸为底物,经30 ml -空气/g-COD微曝气预处理后,添加0.5 mM油酸酯(典型的LCFA)可使累积甲烷产量提高22.1%。相反,以葡萄糖为底物,经7.5 mL-air/g-COD微曝气预处理后,累计甲烷产量下降17.3%。此外,当乙酸和葡萄糖作为底物时,兼性水解微生物(如假单胞菌属)的数量分别增加了25.7%和27.8%。此外,以乙酸为底物时,产甲烷的优势古菌(包括Methanosarcina属)的数量增加了27.3%,而以葡萄糖为底物时,产甲烷古菌的数量减少了65.3%。总的来说,这些发现为最佳微曝气预处理条件下的甲烷生成途径提供了新的思路,指导了该领域未来的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancing mesophilic methanogenesis in oleate-rich environments through optimized micro-aeration pretreatment
Micro-aeration pretreatment has emerged as a promising technology for improving the performance of anaerobic bioreactors in the treatment of lipid-rich organic waste, particularly in mitigating the accumulation of long-chain fatty acids (LCFAs). Micro-aeration intensity is a critical factor in optimizing substrate hydrolysis and methanogenesis efficiency. In this study, optimal micro-aeration intensities for acetoclastic (30 mL-air/g-COD) and overall methanogenesis (7.5 mL-air/g-COD) were initially determined using acetate and glucose as substrates, respectively. Subsequently, the addition of 0.5 mM oleate (a typical LCFA) increased cumulative methane production by 22.1 % when acetate was used as the substrate after 30 mL-air/g-COD micro-aeration pretreatment. Conversely, it decreased cumulative methane production by 17.3 % when glucose was used as the substrate after 7.5 mL-air/g-COD micro-aeration pretreatment. Additionally, the population of facultative hydrolysis microorganisms, such as the genus Pseudomonas, increased by 25.7 % and 27.8 % when acetate and glucose were used as substrates, respectively. Furthermore, the predominant methane-producing archaea, including the genus Methanosarcina, increased by 27.3 % when acetate was used as the substrate, while the genus Methanosaeta decreased by 65.3 % when glucose was used as the substrate. Collectively, these findings provide insights into the methanogenesis pathway under optimal micro-aeration pretreatment conditions, guiding future research in this field.
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来源期刊
Waste management
Waste management 环境科学-工程:环境
CiteScore
15.60
自引率
6.20%
发文量
492
审稿时长
39 days
期刊介绍: Waste Management is devoted to the presentation and discussion of information on solid wastes,it covers the entire lifecycle of solid. wastes. Scope: Addresses solid wastes in both industrialized and economically developing countries Covers various types of solid wastes, including: Municipal (e.g., residential, institutional, commercial, light industrial) Agricultural Special (e.g., C and D, healthcare, household hazardous wastes, sewage sludge)
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