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首页> 外文期刊>Waste Management >Continuous recovery and enhanced yields of volatile fatty acids from a continually-fed 100 L food waste bioreactor by filtration and electrodialysis
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Continuous recovery and enhanced yields of volatile fatty acids from a continually-fed 100 L food waste bioreactor by filtration and electrodialysis

机译:通过过滤和电渗析从连续供给100L食物废物生物反应器中连续回收和增强挥发性脂肪酸的产量

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摘要

A novel method to recover VFAs from a continually-fed 100 L food waste bioreactor was developed using industrially applicable methods. The in-situ recovery of VFAs increased production rates from 4 to 35 mg_(vfa) g~(-1)_(vs) day~(-1) by alleviating end-product inhibition and arresting methanogenesis, and electrodialysis was able to concentrate the recovered VFAs to 4000 mg L~(-1). There remains considerable scope to increase the production rates and concentrations further, and the VFAs were recovered in a form that made them suitable for use as platform chemicals with minimal refining. This is the first time that continuous VFA recovery from real-world food waste has been reported at this scale with continual feeding, and represents a promising means through which to produce sustainable platform chemicals. Furthermore the production of VFAs arrests methane production in bioreactors, which is a low value product around which there is a growing concern about fugitive emissions contributing to climate change.
机译:使用工业上适用的方法开发了一种从持续喂养100L食物废物生物反应器中恢复VFA的新方法。 VFA的原位恢复通过减轻最终产物抑制和抑制甲烷化,增加了4至35mg_(VFA)G〜(-1)_(Vs)日〜(-1)的生产率,并且电渗析能够集中浓缩恢复的VFA至4000 mg l〜(-1)。仍有相当大的范围来提高生产率和浓度进一步,并且VFA以一种形式回收,使其适用于具有最小精炼的平台化学品。这是第一次在现实世界食物垃圾中连续VFA恢复,并以不断的喂养报告,代表了一种有希望的方法,可以生产可持续平台化学品。此外,VFA的生产抑制了生物反应器中的甲烷产量,这是一个低价值的产品,涉及对气候变化的逃逸排放越来越多。

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