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Zero valent iron significantly enhances methane production from waste activated sludge by improving biochemical methane potential rather than hydrolysis rate

机译:零价铁通过提高生化甲烷潜力而不是水解速率,显着提高了废活性污泥的甲烷产量

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摘要

Anaerobic digestion has been widely applied for waste activated sludge (WAS) treatment. However, methane production from anaerobic digestion of WAS is usually limited by the slow hydrolysis rate and/or poor biochemical methane potential of WAS. This work systematically studied the effects of three different types of zero valent iron (i.e., iron powder, clean scrap and rusty scrap) on methane production from WAS in anaerobic digestion, by using both experimental and mathematical approaches. The results demonstrated that both the clean and the rusty iron scrap were more effective than the iron powder for improving methane production from WAS. Model-based analysis showed that ZVI addition significantly enhanced methane production from WAS through improving the biochemical methane potential of WAS rather than its hydrolysis rate. Economic analysis indicated that the ZVI-based technology for enhancing methane production from WAS is economically attractive, particularly considering that iron scrap can be freely acquired from industrial waste. Based on these results, the ZVI-based anaerobic digestion process of this work could be easily integrated with the conventional chemical phosphorus removal process in wastewater treatment plant to form a cost-effective and environment-friendly approach, enabling maximum resource recovery/reuse while achieving enhanced methane production in wastewater treatment system.
机译:厌氧消化已广泛应用于废物活性污泥(WAS)处理。但是,厌氧消化WAS产生的甲烷通常受WAS水解速度慢和/或生化甲烷潜力差的限制。这项工作通过实验和数学方法,系统地研究了三种不同类型的零价铁(即铁粉,干净的废料和生锈的废料)对厌氧消化中WAS产生甲烷的影响。结果表明,清洁的铁屑和生锈的铁屑都比铁粉更有效地提高了WAS的甲烷产量。基于模型的分析表明,添加ZVI可通过提高WAS的生化甲烷潜力而不是其水解速率来显着提高WAS的甲烷产量。经济分析表明,基于ZVI的用于提高WAS甲烷产量的技术在经济上具有吸引力,特别是考虑到可以从工业废料中自由获取铁屑。基于这些结果,这项工作基于ZVI的厌氧消化工艺可以轻松地与废水处理厂的常规化学除磷工艺集成,从而形成一种经济高效且环境友好的方法,从而实现最大程度的资源回收/再利用,同时实现提高废水处理系统中的甲烷产量。

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