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The use of microcalorimetry to compare the biological activity of a CAS and a MBR sludge - application to pharmaceutical active compounds

机译:微量热法比较CAS和MBR污泥的生物活性-在药物活性化合物中的应用

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摘要

Micropollutants removal, such as pharmaceutical substances, during wastewater treatment processes is becoming a greater issue everyday. In order to optimize it, their biodegradation P processes have to be better understood. So far, microcalorimetry has been used worldwide to investigate chemical reactions. For few years now it has also been developed to model and control biological processes. In the case of micropollutants, respirometry is, most of the time, not precise enough to determine biodegradation. That is why, microcalorimetric experiments have been set up. For this purpose, a 2 L Bio-RC1 (Mettler-Toledo) has been modified to reach a resolution of 5-10mW.L-1. In this study, the biodegradation rate of standard substrates (Ethanol and Ammonia) by an activated sludge from a full-scale CAS and one from a MBR pilot plant operating in parallel have been compared by means of microcalorimetry. Then few trials to determine the biodegradation of selected pharmaceutical substances, as well as the eventual inhibition induced by them have been made. The first results did not exhibit any biological activity. However, they have displayed inhibition for both studied substances.
机译:在废水处理过程中,微量污染物(例如药物)的去除每天都变得越来越重要。为了对其进行优化,必须更好地了解其生物降解过程。迄今为止,微量量热法已在世界范围内用于研究化学反应。几年来,它还被开发用于建模和控制生物过程。对于微污染物,大多数时候呼吸测定法不够精确,无法确定生物降解程度。因此,已经建立了微量量热实验。为此,对2 L Bio-RC1(Mettler-Toledo)进行了修改,以达到5-10mW.L-1的分辨率。在这项研究中,已经通过微量量热法比较了来自标准CAS的活性污泥和平行运行的MBR中试装置的标准污泥(乙醇和氨)的生物降解率。然后,几乎没有试验来确定所选药物的生物降解以及它们最终引起的抑制作用。最初的结果没有表现出任何生物学活性。但是,它们对两种研究物质均显示出抑制作用。

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