好氧污泥颗粒化处理高浓度n -甲基-2-吡咯烷酮(NMP)废水的性能

IF 4.3 Q1 ENVIRONMENTAL SCIENCES
Ningning Li, Xushen Han*, Yongqi Yang and Jianguo Yu, 
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引用次数: 0

摘要

NMP是一种典型的n -杂环化合物,已广泛应用于锂电池等行业。高强度NMP废水对微生物具有很强的毒性,难以处理。由于好氧颗粒污泥(AGS)具有独特的层状结构,对有机负荷率(OLR)具有较高的耐受性,因此,本文在序批式反应器中直接培养AGS,进水NMP为10,000 mg/L (OLR为~ 5.8 kg COD/(m3 d)),接种活性污泥。20 d造粒成功,D50为520 μm, SVI30为53.1 mL/g, SVI30/SVI5为0.9。在长期运行过程中,COD和TN的去除率分别保持在97.2%和28.3% ~ 46.5%,其中以甲基芽孢杆菌属、异氮根瘤菌属-新根根瘤菌属-副根根瘤菌属和Arenimonas为主要菌群。相对较低的TN去除率与其他生物处理工艺相似,主要是由于明显的逐步脱碳和氮释放,以及对硝化细菌的抑制。此外,使用Aspen Plus V10开发了符合标准的ags -两阶段a /O流程。据我们所知;本研究首次开发了用于高强度NMP废水处理的AGS系统,该系统在各种NMP生物降解策略中表现出最高的NMP胁迫耐受性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Performance of Aerobic Sludge Granulation in the Treatment of High-Strength N-Methyl-2-Pyrrolidone (NMP) Wastewater

Performance of Aerobic Sludge Granulation in the Treatment of High-Strength N-Methyl-2-Pyrrolidone (NMP) Wastewater

NMP is a typical N-heterocyclic compound and has been widely used in several industries, such as the lithium battery industries. High-strength NMP wastewater was difficult to treat due to its strong toxicity to microorganisms. Since aerobic granular sludge (AGS) had a unique layered structure and exhibited high tolerance to organic loading rate (OLR), herein, AGS was directly cultivated with the influent NMP of 10,000 mg/L (OLR of ∼5.8 kg COD/(m3 d)) in a sequencing batch reactor with the inoculum of activated sludge. Granulation was successfully completed in 20 days with a D50 of 520 μm, SVI30 of 53.1 mL/g, and SVI30/SVI5 of 0.9. COD and TN removal ratio were maintained at >97.2% and 28.3%–46.5% during the long-term operation, in which genera Methylobacillus, Allorhizobium-Neorhizobium-Pararhizobium-Rhizobium, and Arenimonas were the main bacteria. The relatively low TN removal was similar to other biological treatment processes, which was primarily due to the evident stepwise carbon removal and nitrogen release, as well as the suppression of nitrifying bacteria. Furthermore, an up-to-standard AGS-two-stage-A/O process was developed using Aspen Plus V10. To our knowledge; this study first developed the AGS system for high-strength NMP wastewater treatment, and it showed the highest NMP-stress tolerance in various NMP biodegradation strategies.

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