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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Improved methane production from waste activated sludge by combining free ammonia with heat pretreatment: Performance, mechanisms and applications
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Improved methane production from waste activated sludge by combining free ammonia with heat pretreatment: Performance, mechanisms and applications

机译:通过将自由氨与热预处理结合,改善废活性污泥的甲烷生产:性能,机制和应用

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Anaerobic digestion of waste activated sludge (WAS) is often limited by low hydrolysis efficiencies and poor methane potentials. This work presents a novel pretreatment technology for WAS anaerobic digestion, i.e., combining free ammonia with heat pretreatment (CFHP). Experimental results showed that compared with control, solo free ammonia (135.4 mg NH3-N/L) and solo heat (70 degrees C) pretreatment, the combined free ammonia and heat (135.4 mg NH3-N/L with 70 degrees C) obtained 52.2%, 25.5% and 30.2% faster in hydrolysis rate and 25.2%, 17.9% and 16.5% higher in biochemical methane potential, respectively. Mechanism investigations showed that the combined pretreatment not only largely facilitated the disintegration of WAS but also increased the proportion of biodegradable organic matters, thereby providing better contract between biodegradable organics and the anaerobic microbes for methane production. Considering its effectiveness and renewability, the combined pretreatment is an attractive technology for the application in real-world situations.
机译:废物活性污泥(As)的厌氧消化通常受低水解效率和较差的甲烷电位。这项工作提出了一种新的预处理技术,厌氧消化是厌氧消化,即,将自由氨与热预处理(CFHP)组合。实验结果表明,与对照,可自由氨(135.4mg NH 3-N / L)和唯一的热(70℃)预处理,加热氨和热(135.4mg NH 3-N / L获得的氨(135.4mg NH 3 -N / L)获得水解率的52.2%,25.5%和30.2%,生化甲烷电位的水解率高,25.2%,17.9%和16.5%。机制研究表明,合并的预处理不仅在很大程度上促进了崩解的崩解,而且还增加了可生物降解的有机物的比例,从而在可生物降解的有机物和甲烷产生的厌氧微生物之间提供更好的合同。考虑到其有效性和可再生性,综合预处理是在现实世界中申请的有吸引力的技术。

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