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首页> 外文期刊>Biochemical Engineering Journal >Synergistic effects of iron and persulfate on the efficient production of volatile fatty acids from waste activated sludge: Understanding the roles of bioavailable substrates, microbial community & activities, and environmental factors
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Synergistic effects of iron and persulfate on the efficient production of volatile fatty acids from waste activated sludge: Understanding the roles of bioavailable substrates, microbial community & activities, and environmental factors

机译:铁和过硫酸盐对废物活性污泥有效生产的协同作用:了解生物可利用基材,微生物群落和活动的作用,微生物群落和环境因素

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摘要

Evident synergistic effects of iron activated persulfate (Fe/PS) on the marked promotion of volatile fatty acids (VFAs) from waste activated sludge during anaerobic fermentation were reported. The maximal VFAs concentration was up to 2255 mg COD/L with the proportion of 72.8% acetic acid in the Fe/PS reactor while it was merely 120 and 517 mg COD/L in Fe and PS reactors, respectively. Fe/PS treatment could substantially improve the solubilization and hydrolysis processes via the combined chemical and biologic effects to provide sufficient bioavailable substrates for acidogenic bacteria. Meanwhile, the presence of Fe in Fe/PS reactors could alleviate the adverse effects of PS on environmental factors (i.e. ORP and pH) and simultaneously involve in the regulation of microbial growth and activities. The fermentative bacteria responsible for VFAs production were highly enriched and the activities of key acid-forming enzymes and ATP concentration were greatly improved in Fe/PS reactors. It was the overall improvement of bioavailable substrates, abundance and activities of acidogenic bacteria, and fermentation conditions that led to the high VFAs accumulation in Fe/PS reactors.
机译:报道了铁活化过硫酸盐(Fe / ps)对厌氧发酵过程中废物活性污泥的标记促进挥发性脂肪酸(VFA)的显着协同作用。最大VFAS浓度高达2255mg COD / L,在Fe / PS反应器中的比例为72.8%乙酸,同时仅为Fe和Ps反应器中的120和517mg Cod / L。 Fe / PS治疗可以通过组合的化学和生物学效应基本上改善溶解和水解过程,以提供足够的酸性细菌的生物可利用基材。同时,Fe / PS反应器中的Fe的存在可以缓解PS对环境因子(即ORP和pH)的不利影响,同时涉及对微生物生长和活性的调节。负责VFA产生的发酵细菌高度富集,并且在Fe / PS反应器中大大提高了关键酸性酶和ATP浓度的活性。它是对生物可利用的基质,丰度和酸性细菌的活性的总体改善,以及导致Fe / PS反应器中高VFA积聚的发酵条件。

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