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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Characteristics of ultra-fine bubble water and its trials on enhanced methane production from waste activated sludge
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Characteristics of ultra-fine bubble water and its trials on enhanced methane production from waste activated sludge

机译:超细泡沫水的特征及其对废物活性污泥增强甲烷生产的试验

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In this study biogas production efficiency was evaluated by adding ultra-fine bubble water (UFBW) into waste activated sludge (WAS) through anaerobic digestion (AD). Four kinds of gases, i.e. Air, N2, CO2and H2were introduced into tap water (TW) to prepare the UFBW with their properties being first investigated. Results show that hundreds of millions of nanoscale bubbles with the negative zeta potential could be stable in the UFBW for longer than two weeks whereas almost no nanometer bubbles could be detected in the raw TW. As for their impact on subsequent AD of WAS, the cumulative methane production with the addition of UFBW was 14–21% higher than that from the raw TW addition group. Interestingly, the Air-UFBW also could promote the biogas production in this study, which is different from the common understanding of AD, an obligate anaerobic process.
机译:在这项研究中,通过将超细泡水(UFBW)添加到废物活性污泥(AD)中来评价沼气生产效率。 四种气体,即空气,N2,CO2和H2被引入自来水(Tw)以制备UFBW首次研究其性质。 结果表明,数亿纳米级气泡,负Zeta电位可能在UFBW中稳定,超过两周,而在原始TW中几乎没有纳米气泡。 至于它们对随后的AD的影响,添加UFBW的累积甲烷产量比原始TW加成组高出14-21%。 有趣的是,Air-UFBW还可以促进本研究中的沼气生产,这与广告的共同理解不同,这是一种迫使厌氧过程。

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