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利用混合微生物群落开发一种基于铁氰化物介导的快速生化需氧量检测方法。

Development of a rapid ferricyanide mediated assay for biochemical oxygen demand using a mixed microbial consortium.

作者信息

Catterall Kylie, Zhao Huijun, Pasco Neil, John Richard

机构信息

School of Environmental and Applied Sciences, Griffith University Gold Coast, PMB 50, GCMC, QLD 9726, Australia.

出版信息

Anal Chem. 2003 Jun 1;75(11):2584-90. doi: 10.1021/ac0206420.

Abstract

Ferricyanide-mediated (FM) microbial reactions were used for the rapid determination of the biochemical oxygen demand (BOD) of a range of synthetic and real wastewater samples. Four single-species microbial seeds and a synthetically prepared microbial consortium were compared. In all cases, the microbial consortium exhibited a greater extent and rate of biodegradation compared to the individual microbial seeds. Markedly improved correlation to the standard BOD5 method was also noted for the microbial consortium (compared to the single-species seeds). A linear dynamic range up to 200 mg BOD5 L(-1) was observed, which is considerably greater than the linear range of the standard BOD5 assay and most other rapid BOD assays reported. In addition, biodegradation efficiencies comparable to the 5-day BOD5 assay (and much greater than other rapid BOD assays) were observed in 3 h. A highly significant correlation (R = 0.935, p = 0.000, n = 30) between the FM-BOD method and the standard BOD5 method was found for a wide diversity of real wastewater samples. The results indicate that the FM-BOD assay is a promising, rapid, alternative to the standard 5-day BOD5 assay.

摘要

铁氰化物介导(FM)的微生物反应被用于快速测定一系列合成废水和实际废水样品的生化需氧量(BOD)。比较了四种单一菌种的微生物种子和一种人工合成的微生物群落。在所有情况下,与单个微生物种子相比,微生物群落表现出更大程度的生物降解和更快的降解速率。还注意到,与单一菌种种子相比,微生物群落与标准BOD5方法的相关性显著提高。观察到线性动态范围高达200 mg BOD5 L(-1),这大大高于标准BOD5测定法以及报道的大多数其他快速BOD测定法的线性范围。此外,在3小时内观察到与5天BOD5测定法相当的生物降解效率(远高于其他快速BOD测定法)。对于多种实际废水样品,发现FM-BOD方法与标准BOD5方法之间存在高度显著的相关性(R = 0.935,p = 0.000,n = 30)。结果表明,FM-BOD测定法是一种有前景的、快速的标准5天BOD5测定法的替代方法。

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