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Microbiosensor for the continuous monitoring of chemical substances in fluids.

机译:微生物传感器,用于连续监测流体中的化学物质。

摘要

Microbiosensor for continuous monitoring of chemical substances in fluids. IN the last two decades it IS ATTENDING THE DEVELOPMENT BIOSENSORES with specific applications (INDUSTGRIALES, biomedical and environmental fields, among others) BEGIN TO COMPETE WITH TECHNOLOGIES ANALYTICAL AND SUCCESSFULLY CLASICAS. But these teams, which mainly rely on the retention of Microorganisms in membranes, have inherent limitations. The innovations over the current technology are two key: A) CONTINUED AVAILABILITY OF MICROORGANISMS TO USE A chemostat, enabling MONITORING SAMPLES OF TOXICITY ELEVATED TO THE DISPOSAL When AFTER EACH DETERMINATION Microorganisms used, B) eliminates the physical membrane separating ANALYZE AND HALF A tRANSDUCER, ALLOWING EXPAND linearity range SIGNAL AND dramatically reduce NECESSARY TO ACHIEVE STABLE SIGNAL TIME. It ARISES AS A SYSTEM FOR MONITORING microbiosensor LINE OF CHEMICALS IN FLUIDS. As an example application will be described using the system in determining LINE OF Biochemical Oxygen Demand (BOD) WATERS.
机译:微生物传感器,用于连续监测流体中的化学物质。在过去的二十年中,它正在关注具有特定应用(工业,生物医学和环境领域等)的开发生物传感器,以与技术分析和成功的基础技术竞争。但是这些主要依靠微生物在膜中保留的研究小组具有固有的局限性。当前技术的创新有两个关键点:A)微生物可连续使用化学恒温器,可在每次确定微生物后监测被处理掉的毒性样品,B)消除物理膜分离,并分析半个传感器,允许扩展线性范围信号,并显着减少实现稳定信号时间的必要性。它起着监测液体中微生物生物传感器线的系统的作用。作为示例,将使用该系统描述确定生化需氧量(BOD)水域的应用程序。

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