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Polyhydroxyalkanoates in waste activated sludge enhances anaerobic methane production through improving biochemical methane potential instead of hydrolysis rate

机译:废物活性污泥中的多羟基烷烃通过改善生化甲烷潜力而不是水解率来提高厌氧甲烷产量

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Anaerobic sludge digestion is the main technology for sludge reduction and stabilization prior to sludge disposal. Nevertheless, methane production from anaerobic digestion of waste activated sludge (WAS) is often restricted by the poor biochemical methane potential and slow hydrolysis rate of WAS. This work systematically investigated the effect of PHA levels of WAS on anaerobic methane production, using both experimental and mathematical modeling approaches. Biochemical methane potential tests showed that methane production increased with increased PHA levels in WAS. Model-based analysis suggested that the PHA-based method enhanced methane production by improving biochemical methane potential of WAS, with the highest enhancement being around 40% (from 192 to 274?L CH4/kg VS added; VS: volatile solid) when the PHA levels increased from 21 to 143?mg/g VS. In contrast, the hydrolysis rate (approximately 0.10 d?1) was not significantly affected by the PHA levels. Economic analysis suggested that the PHA-based method could save $1.2/PE/y (PE: population equivalent) in a typical wastewater treatment plant (WWTP). The PHA-based method can be easily integrated into the current WWTP to enhance methane production, thereby providing a strong support to the on-going paradigm shift in wastewater management from pollutant removal to resource recovery.
机译:厌氧污泥消化是污泥处理之前污泥和稳定化的主要技术。然而,来自废物活性污泥(Anaerobic消化的甲烷生产通常受到差的生化甲烷电位和缓慢的水解率。这项工作系统地研究了使用实验和数学建模方法对厌氧甲烷生产的PHA水平的影响。生物化学甲烷潜在试验表明,甲烷产量随着PHA水平的增加而增加。基于模型的分析表明,基于PHA的方法通过改善生物化学甲烷潜力来增强甲烷的产生,最高增强约为40%(从192到274〜274.1 CH 4 / kg V​​s ; VS:挥发性固体)当PHA水平从21增加到143毫克/克比。相反,水解速率(约0.10d 1/1 / sup>)未受到PHA水平的显着影响。经济学分析表明,基于PHA的方法可以节省1美元的典型废水处理厂(WWTP)中的1.2 / PE / y(PE:人口等价物)。基于PHA的方法可以很容易地集成到当前的WWTP中以增强甲烷的产生,从而为从污染物移除到资源恢复的废水管理中的正在进行的范式转变提供了强大的支持。

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