沼气
废物管理
环境科学
经济可行性
生物能源
制浆造纸工业
污水污泥
估价
发酵
污水处理
厌氧消化
概念证明
过程(计算)
萃取(化学)
活性污泥
资源回收
废物处理
可再生能源
废水
废弃物
工艺工程
生物燃料
沼气生产
基质(水族馆)
化学
污水
生物量(生态学)
作者
Ramon Zwaan,Dimitry Y. Sorokin,Gerben R. Stouten,Mark C. M. van Loosdrecht,Philipp Wilfert
标识
DOI:10.1080/09593330.2025.2588499
摘要
A highly pure biomethane stream (≈97% CH4) was produced continuously under halo-alkaline conditions (pH > 9, 0.6 M Na+) from complex alkaline organic waste residue originating from biopolymer extraction from sewage sludge. During the proof-of-concept operation, the substrate was degraded with similar efficiency (40% of the volatile solids, VS) compared to neutral conditions (36% of the VS). Operational data was utilised in a technical evaluation to identify bottlenecks for full-scale implementation at an early stage of process development and for comparison to conventional biogas upgrading using pressure swing and membranes. Initially identified bottlenecks for alkaline fermentation were related to overcautious assumptions, while others could be technically solved. Alkaline fermentation offers an attractive method for supplying increasingly needed high-purity biomethane using various recalcitrant substrates that have undergone alkaline pre-treatment. This is more feasible than the conventional ex-situ biogas upgrading. Next, upscaling steps for alkaline fermentation should be pursued. Strategies for integrated CO2 sequestration and nutrient recovery are outlined, which will offer additional benefits in the future.
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