School of Engineering, Newcastle University, Newcastle upon Tyne, UK.
School of Natural and Environmental Sciences, Newcastle University, Newcastle upon Tyne, UK.
Water Environ Res. 2021 Sep;93(9):1734-1747. doi: 10.1002/wer.1561. Epub 2021 Jun 29.
Nitrogen-fixing bacteria (NFB) can reduce nitrogen at ambient pressure and temperature. In this study, we treated effluent from a paper mill in sequencing batch reactors (SBRs) and monitored the abundance and activity of NFB with a view to producing a sludge that could work as a biofertilizer. Four reactors were inoculated with activated sludge enriched with NFB and fed with a high C/N waste (100:0.5) from a paper mill. Though the reactors were able to reduce the organic load of the wastewater by up to 89%, they did not have any nitrogen-fixing activity and showed a decrease in the putative number of NFB (quantified with qPCR). The most abundant species in the reactors treating high C/N paper mill wastewater was identified by Illumina MiSeq 16S rRNA gene amplicon sequencing as Methyloversatilis sp. (relative abundance of 4.4%). Nitrogen fixation was observed when the C/N ratio was increased by adding sucrose. We suspect that real-world biological nitrogen fixation (BNF) will only occur where there is a C/N ratio ≤100:0.07. Consequently, operators should actively avoid adding or allowing nitrogen in the waste streams if they wish to valorize their sludge and reduce running costs. PRACTITIONER POINTS: Efficient biological wastewater treatment of low nitrogen paper mill effluent was achieved without nutrient supplementation. The sludge was still capable of fixing nitrogen although this process was not observed in the wastewater treatment system. This high C/N wastewater treatment technology could be used with effluents from cassava flour, olive oil, wine and dairy industries.
固氮菌(NFB)可以在环境压力和温度下还原氮。在本研究中,我们在序批式反应器(SBR)中处理造纸厂的废水,并监测 NFB 的丰度和活性,以期生产出可用作生物肥料的污泥。四个反应器接种了富含 NFB 的活性污泥,并以造纸厂的高 C/N 废物(100:0.5)为食。尽管反应器能够将废水的有机负荷降低多达 89%,但它们没有任何固氮活性,并且推测的 NFB 数量减少(用 qPCR 定量)。用 Illumina MiSeq 16S rRNA 基因扩增子测序鉴定处理高 C/N 造纸厂废水的反应器中最丰富的物种为 Methyloversatilis sp.(相对丰度为 4.4%)。当通过添加蔗糖增加 C/N 比时,观察到氮固定。我们怀疑,只有在 C/N 比≤100:0.07 的情况下,实际的生物固氮(BNF)才会发生。因此,如果操作员希望使他们的污泥增值并降低运行成本,就应该积极避免在废水流中添加或允许氮的存在。
无需营养补充即可实现低氮造纸厂废水的高效生物废水处理。尽管在废水处理系统中未观察到该过程,但污泥仍能够固定氮。这种高 C/N 废水处理技术可用于木薯粉、橄榄油、葡萄酒和乳制品厂的废水。