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WHAT DO MICROBIAL BIOSENSORS TELL US ABOUT THE BEHAVIOR OF MTBE?

机译:微生物生物传感器对MTBE的行为有什么影响?

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摘要

Although highly soluble and ubiquitous in the terrestrial environment there is little known about the impact of MTBE on microbial ecotoxicity tests. Microbial ecotoxicity tests are important as they are rapid indicators of environmental health and are also able to diagnose constraints to contaminant mineralisation. MTBE is rarely found in isolation and may have effects in combination with other hydrocarbons. To investigate the impact of MTBE on microbial ecotoxicity tests, the response of a range of lux-based biosensors was measured against aqueous samples of MTBE, benzene, and naphthalene, both individually and in combination. Metabolic sensors (indicative of general environmental stress) and catabolic sensors (induced by specific analytes) were used and the response modeled, enabling pollutant interactions to be identified. All concentrations were confirmed by PTI-GC-FID or HPLC. MTBE did not increase the toxicity of benzene or naphthalene to two of the sensors used but may have altered the pollutant bioavailability and indeed for some analytes reduced toxicity significantly.
机译:尽管MTBE在陆地环境中具有很高的溶解度和普遍性,但对MTBE对微生物生态毒性测试的影响知之甚少。微生物生态毒性测试很重要,因为它们是环境健康的快速指标,并且还能够诊断污染物矿化的制约因素。 MTBE很少单独发现,可能与其他烃类结合使用。为了研究MTBE对微生物生态毒性测试的影响,分别对MTBE,苯和萘的水性样品进行了测量,分别测量了一系列基于Lux的生物传感器的响应。使用了代谢传感器(指示一般环境压力)和分解代谢传感器(由特定分析物诱导),并对响应进行了建模,从而能够确定污染物的相互作用。所有浓度通过PTI-GC-FID或HPLC确认。 MTBE不会增加所使用的两种传感器对苯或萘的毒性,但可能已改变了污染物的生物利用度,实际上对于某些分析物,其毒性已大大降低。

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