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Preparation of biomembrane by immobilizing enriched ammonia-oxidizing bacteria (AOB) in polyvinyl alcohol (PVA) for biosensor

机译:将富含氨氧化细菌(AOB)在聚乙烯醇(PVA)中的富含氨氧化细菌(AOB)制备生物传感器

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A biomembrane that was used to make a biosensor for detecting inhibitor of ammoia oxidation was prepared by entrapping enriched ammonia-oxidizing bacteria (AOB) in polyvinyl alcohol (PVA). AOB were enriched by fed batch cultivation with using return activated sludge from A~2/O process as seed. Enrichment of AOB was confirmed by denaturing gradient gel electrophoresis (DGGE) analysis. The optimum conditions based on orthogonal test results for biomembrane preparation were found as follows: mixing 30%(w/w) enriched cell with membrane matrix (12% (w/v) PVA and 3% (w/v) sodium alginate (SA), pouring mixture on a petri dish, dried for 1 hr, and solidified by soaking this membrane in a cross-linking agent (25% (w/v) NaNO_3 and 2% (w/v) CaCl_2) for 1 h. A biosensor was fabricated by attaching the prepared biomembrane on an oxygen electrode. The bioactivity of prepared biosensor which was measured as DO drop was 1.4 mgO_2/l, shows that PVA and SA can be used to immobilize AOB to produce a biosensor for detecting inhibitor of ammoia oxidation.
机译:通过在聚乙烯醇(PVA)中诱捕富集的氨氧化细菌(AOB)制备用于检测氧化氧化抑制剂的生物传感器的生物膜。通过使用返回活性污泥作为种子,通过使用返回活性污泥来富集AOB富集。通过变性梯度凝胶电泳(DGGE)分析来确认AOB的富集。发现基于正交测试结果为生物膜制剂的最佳条件如下:将30%(重量/重量)与膜基质富集的细胞(12%(W ​​/ V)的PVA和3%(W / V)藻酸钠(SA ),将混合物倒在培养皿上,干燥1小时,并通过将该膜浸泡在交联剂(25%(w / v)纳米×3和2%(w / v)cacl_2)中浸泡1小时。a通过将制备的生物膜连接在氧气电极上制造生物传感器。作为DO滴的制备的生物传感器的生物活性为1.4MgO_2 / L,表明PVA和SA可用于固定Aob以产生用于检测氨瘤的抑制剂的生物传感器氧化。

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