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Enhancing anaerobic syntrophic propionate degradation using modified polyvinyl alcohol gel beads

机译:使用改性聚乙烯醇凝胶珠子增强厌氧同步丙酸脱硫降解

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摘要

Modified polyvinyl alcohol (PVA) beads serve as effective anaerobic microbe immobilization carriers. PVA beads were mixed with different conductive materials, activated carbon, magnetite, and green tuff stone powder. In this study, modified PVA beads were used to investigate the effect of using, promote methane production, and enhance direct interspecies electron transfer (DIET) on the anaerobic syntrophic degradation of propionate, which is an essential intermediate process for generating methane in anaerobic digesters. The batch experiment showed that PVA mixed with activated carbon had the highest methane conversion rate of 72%, whereas the rates for control (sludge) was 61%. Moreover, the lag time during the second and third feedings was shorter by 5-fold than for the first feeding when modified PVA beads were added. The syntrophic propionate degrading microorganisms in the modified PVA beads was Syntrophobacter and Methanobacterium, either Methanoculleus or Methanosaeta. The modified PVA beads hold at least 10 times larger syntrophs than normal PVA. Therefore, composite PVA with conductive materials can promote methane production, accelerate propionate consumption, and enhance electron transfer in related microbial species.
机译:改性聚乙烯醇(PVA)珠子用作有效的厌氧微生物固定载体。将PVA珠子与不同的导电材料,活性炭,磁铁矿和绿色凝固石粉混合。在该研究中,改性的PVA珠粒用于研究使用,促进甲烷生产的效果,并增强丙酸厌氧语法降解的直接梭菌电子转移(饮食),这是用于在厌氧消化器中产生甲烷的必要中间方法。批量实验表明,与活性炭混合的PVA最高的甲烷转化率为72%,而对照的速率(污泥)为61%。此外,第二和第三馈电期间的滞后时间比加入修饰的PVA珠子时比第一进料更短5倍。改性PVA珠粒中的语法丙酸脱硫微生物是Syntrophacter和甲基杆菌,甲烷纤维素或甲基杆菌。改性的PVA珠粒比正常的PVA保持至少10倍较大的同步。因此,具有导电材料的复合PVA可以促进甲烷的产生,加速丙酸盐消耗,增强相关微生物物种中的电子转移。

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