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基于硫氧化细菌生物传感器检测六价铬:不同物理因素的影响。

Detection of Cr6+ by the sulfur oxidizing bacteria biosensor: effect of different physical factors.

机构信息

Department of Biological Environment, Kangwon National University, 200-701 Chuncheon, Kangwon-do, South Korea.

出版信息

Environ Sci Technol. 2012 Jul 17;46(14):7844-8. doi: 10.1021/es301360a. Epub 2012 Jun 29.

Abstract

A biosensor based on sulfur-oxidizing bacteria (SOB) for detection of toxic chemicals in water was developed. SOB are acidophilic microorganisms that get their energy through the oxidation of reduced sulfur compounds in the presence of oxygen to produce sulfuric acid. The reaction results in an increase in electrical conductivity (EC) and a decrease in pH. The bioassay is based on the inhibition of SOB in the presence of toxic chemicals by measuring changes in EC and pH. The effect of different physical factors such as HRT, inorganic sulfur (S°) particle size, and temperature on detection of Cr(6+) was studied. The detection of Cr(6+) (50 ppb) was improved by decreasing the hydraulic retention time (HRT) from 30 to 10 min and increasing S° particle size from 1 to 4.75 mm. Detection time was shorter at 30 °C compared to 45 °C and the SOB were active over a wide range of temperatures with a maximum temperature for growth at 45 °C. This novel biosensor is simple, highly sensitive to low Cr(6+) concentrations (50 ppb), and also minimizes detection time. The present findings can be applied to the proper continuous screening of water ecosystem toxicity.

摘要

基于硫氧化细菌(SOB)的用于检测水中有毒化学物质的生物传感器已被开发出来。SOB 是嗜酸微生物,它们通过在氧气存在下氧化还原硫化合物来获取能量,从而产生硫酸。该反应导致电导率(EC)增加和 pH 值降低。生物测定法基于在有毒化学物质存在下 SOB 的抑制作用,通过测量 EC 和 pH 值的变化来进行。研究了不同物理因素(如水力停留时间(HRT)、无机硫(S°)颗粒大小和温度)对 Cr(6+)检测的影响。通过将水力停留时间(HRT)从 30 分钟缩短至 10 分钟并将 S°颗粒大小从 1 毫米增加至 4.75 毫米,可提高 Cr(6+)(50 ppb)的检测效果。与 45°C 相比,在 30°C 下检测时间更短,并且 SOB 在很宽的温度范围内都很活跃,最大生长温度为 45°C。这种新型生物传感器简单、对低浓度 Cr(6+)(50 ppb)高度敏感,并且还最小化了检测时间。本研究结果可应用于对水生态系统毒性的适当连续筛选。

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