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Biosensing systems for monitoring aerobic wastewater treatment processes

机译:用于监测有氧污水处理工艺的生物传感系统

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Biological wastewater treatment processes are dynamic systems which are often exposed to environmental changes resulting in process failure or partial inhibition. Monitoring strategies traditionally used to determine process failure are often inadequate. The analyses of wastewater off-gases using specific and nonspecific gas sensors can provide a non-contact measurement technique for continuous wastewater monitoring. The measurement of the production of dinitrogen oxide (N_2O) during wastewater nitrification can be directly related to the degree of nitrification inhibition, whereas the correlation of non-specific gas sensors so called "electronic noses" can be used to discriminant the presence or absence of organic pollutants, such as diesel within a wastewater matrix. These studies have demonstrated that biosensing systems could be further developed to serve a number of potential applications within wastewater treatment, such as early warning of treatment failure and inlet protection for toxicity monitoring.
机译:生物废水处理过程是动态系统,其通常暴露于导致工艺破坏或部分抑制的环境变化。传统上用于确定过程失败的监测策略通常不足。使用特定和非特异性气体传感器的废水废气的分析可以提供用于连续废水监测的非接触式测量技术。在废水硝化期间的二氮氧化物(N_2O)的测量可以与硝化抑制程度直接相关,而非特定气体传感器的相关性可以使用“电子鼻子”的相关性,以判别存在或不存在有机污染物,如柴油在废水基质中。这些研究表明,可以进一步开发生物传感系统以在废水处理中提供许多潜在的应用,例如治疗失败和入口保护的早期警告毒性监测。

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