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Critical design factors for polyvinyl alcohol hydrogel entrapping ammonia-oxidizing bacteria: biomass loading, distribution of dissolved oxygen, and bacterial liability

机译:聚乙烯醇水凝胶的关键设计因子诱捕氨氧化细菌:生物质负载,溶解氧的分布,以及细菌责任

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摘要

The single-stage configuration of the partial nitritation (PN)-anaerobic ammonium oxidation (AMX) process is preferred due to low pH fluctuation and the low concentration of inhibitory NO2-. The novel core-shell structure integrates ammonia-oxidizing reaction in the outer layer to protect AMX bacteria in the core gel bead from oxygen inhibition and provide NO2-. Here, the initial activity of ammonia-oxidizing bacteria (AOB) in the outer layer was assessed by the specific oxygen uptake rate (OUR). AOB activity was positively correlated with biomass loading in the outer layer. A maximum OUR of 10.5 mg-DO/L.h was achieved with AOB loading of 0.23 mg-VSS per bead. During AOB enrichment, the NO2- production rate was linearly increased up to 0.65 kg-N/m(3)-d for 17 days (PVA hydrogel packing ratio=17%). The maximum oxygen penetration depth (OPD) was reduced from 966.7 +/- 52.3 mu m before enrichment to 333.3 +/- 36.4 mu m after the AOB enrichment. The liable bacteria were observed within a range of 165 mu m of the outer layer using the live and dead cell staining. Based on the OPD and liable cell distribution results, a minimal outer layer thickness of approximately 350 mu m was suggested to facilitate a successful PN-AMX process.
机译:由于低pH波动和低浓度的抑制NO 2-,优选部分亚硝化(PN)的单级构造 - 优选氧化铵氧化(AMX)方法。新型核 - 壳结构将氨氧化反应与外层中的氨氧化反应相结合,以保护核心凝胶珠中的AMX细菌免受氧抑制并提供NO 2-。这里,通过特异性氧气摄取率(我们)评估外层中氨氧化细菌(Aob)的初始活性。 AOB活性与外层中的生物质负载呈正相关。通过AOB负荷为每珠0.23mg-VSS,实现了最大10.5mg-DO / L.H。在AOB富集期间,NO 2-生产速率可直射至0.65kg-n / m(3)-d,17天(PVA水凝胶填料率= 17%)。在AOB富集后富集至333.3 +/-36.4μm,最大氧渗深度(OPD)从966.7 +/-52.3μm降低。使用活的和死细胞染色在外层的范围内观察到易致耐量。基于OPD和韧性细胞分布结果,建议大约350μm的最小外层厚度,以促进成功的PN-AMX方法。

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