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Chemolithotrophic denitrification by nitrate-dependent anaerobic iron oxidizing (NAIO) process: Insights into the evaluation of seeding sludge

机译:依赖于硝酸盐的厌氧铁氧化(NAIO)工艺的化学营养性反硝化:探讨播种污泥的评价

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摘要

Nitrate-dependent anaerobic iron oxidation (NAIO) is a chemolithotrophic bioprocess that converts nitrate to nitrogen gas using zero-valent/ferrous iron, making it valuable for autotrophic denitrification. Seeding sludge is vital for the application of NAIO process, but scarce information is available about the capability of active sludge. In this work, activated sludge (AS) and anaerobic granular sludge (AGS) were investigated for their NAIO performance, and AGS was preferred as inocula after systematic evaluation on three aspects. AGS demonstrated higher nitrogen removal performance with nitrate removal rate of 0.20 +/- 0.02 kg-N/(m(3).d) and removal efficiency of 95.58 +/- 2.29%. The AGS system showed robustness facing NAIO operation conditions, exhibiting stable sludge characteristics (e.g. particle size and shape factors) with variation range of -14.75% to +26.43%. The AGS system demonstrated high economical efficiency with lower iron consumption for nitrate removal and higher iron content for resource recycling. 16S rRNA gene high-throughput sequencing was applied to investigate the microbial community. Nitrosomonadales_unclassified, Geothrix in AS and Nitrosomonadales_unclassified, Desulforhabdus in AGS were supposed to play important roles in NAIO process. The present work clarifies about the choice of seeding sludge for the application of the chemolithotrophic NAIO process and for the development of biotechnology.
机译:依赖性厌氧氧化铁氧化(NaiO)是一种使用零体/亚铁铁将硝酸盐转化为氮气的硝酸盐,使其对自身营养反硝化有价值。播种污泥对于纳奥工艺的应用至关重要,但稀缺的信息可用于活性污泥的能力。在这项工作中,研究了活性污泥(AS)和厌氧颗粒污泥(AGS)进行NAIO性能,并且在系统评估三个方面后,AGS优选为接种物。 AGS呈现出较高的氮去除性能,硝酸盐去除率为0.20 +/- 0.02kg-n /(m(3).d),除去效率为95.58 +/- 2.29%。 AGS系统显示出面临NaiO操作条件的稳健性,表现出稳定的污泥特性(例如粒度和形状因子),变化范围为-14.75%至+ 26.43%。 AGS系统表现出高经济效率,具有较低的铁消耗,用于硝酸盐去除和较高的资源回收铁含量。 16S rRNA基因高通量测序用于研究微生物群落。亚特克罗斯莫纳罗斯_Unclassified,Geothrix在As和Nitrosomonadales_unclassified,AGS中的Desulforhabdus应该在Naio过程中发挥重要作用。目前的作品阐明了用于在化学型营养性NIO过程和生物技术发展中施加种子污泥的选择。

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