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带有臭氧发生器的停流系统用于测定环境样品中的低生化需氧量。

Stopped-flow system with ozonizer for the estimation of low biochemical oxygen demand in environmental samples.

作者信息

Chee Gab-Joo, Nomura Yoko, Ikebukuro Kazunori, Karube Isao

机构信息

Extremobiosphere Research Center, Japan Agency for Marine-Earth Science and Technology, 2-15 Natsushima Yokosuka 237-0061, Japan.

出版信息

Biosens Bioelectron. 2007 Jun 15;22(12):3092-8. doi: 10.1016/j.bios.2007.01.014. Epub 2007 Jan 25.

Abstract

The stopped-flow system with an ozonizer was developed to estimate low biochemical oxygen demand (BOD) in rivers. Rivers contain many biopersistent organic compounds such as humic acid, lignin, and gum arabic. Free radicals generated by self-decomposition of ozone were used as powerful oxidants to split organic compounds. Ozonysis of the samples was carried out by 42.4 gN(-1)m(-3) ozone for 3 min at pH 7.0. Artificial wastewater (AWW) solutions were employed as standard solutions for the calibrations of the BOD sensor. At a BOD of 1 mgl(-1), the sensor response after ozonation was 1.6-fold higher than that before ozonation. The response time of the BOD sensor was only 5min, being independent of the concentrations, and the lower detection limit was 0.5 mgl(-1) BOD. The degradations of lignin and tannic acid by ozonation were 54.1 and 42.3%, respectively. In the biosensor responses by ozonation, lignin, gum arabic, and surfactant increased by double or more compared with previous responses. BOD in rivers was estimated using the stopped-flow system. Environmental samples pretreated with ozone gave high responses to the biosensor that were similar to those of the conventional BOD(5) method. Accordingly, a good correlation between the sensor and the conventional BOD(5) was obtained (r=0.989). The system has to evolve the highly sensitive BOD determination.

摘要

开发了带有臭氧发生器的停流系统来估算河流中的低生化需氧量(BOD)。河流中含有许多生物持久性有机化合物,如腐殖酸、木质素和阿拉伯胶。臭氧自分解产生的自由基被用作强大的氧化剂来分解有机化合物。在pH 7.0条件下,用42.4 gN(-1)m(-3)的臭氧对样品进行3分钟的臭氧分解。人工废水(AWW)溶液用作校准BOD传感器的标准溶液。在BOD为1 mgl(-1)时,臭氧化后的传感器响应比臭氧化前高1.6倍。BOD传感器的响应时间仅为5分钟,与浓度无关,检测下限为0.5 mgl(-1) BOD。木质素和单宁酸的臭氧化降解率分别为54.1%和42.3%。在臭氧化的生物传感器响应中,木质素、阿拉伯胶和表面活性剂的响应比之前的响应增加了两倍或更多。使用停流系统估算河流中的BOD。用臭氧预处理的环境样品对生物传感器有很高的响应,与传统的BOD(5)方法相似。因此,传感器与传统BOD(5)之间获得了良好的相关性(r = 0.989)。该系统必须改进高灵敏度的BOD测定方法。

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