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Determination of biodegradable dissolved organic carbon using entrapped mixed microbial cells

机译:夹带混合微生物细胞测定可生物降解的可溶性有机碳

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Several methods for determining biodegradable dissolved organic carbon (BDOC) in water have been developed within the last two decades. However, the problem with most of these methods is the length of time required for the start-up (colonization) and/or determination from days to weeks. In this study, a simple and rapid continuous bioreactor procedure using immobilized cells was developed for BDOC determination. In the first stage of the development, the bioreactors were aerated to ensure that dissolved oxygen was not rate limiting. However, BDOC results obtained from the aerated bioreactors suffered from a large error caused by the release of background dissolved organic carbon (DOC). As a consequence, a different bioreactor scheme, in which the feed (sample) instead of the bioreactor was aerated, was tested. Results show that the feed aerated (FA) bioreactor is a better tool for BDOC determination especially for waters with low initial organic concentrations because of less background DOC released by the immobilized cell systems. Using the FA bioreactor, the accurate and reproducible measurement of BDOC can be achieved within a hydraulic retention time of 3 h, and no start-up period is required.
机译:在过去的二十年中,已经开发了几种测定水中可生物降解的可溶性有机碳(BDOC)的方法。但是,大多数这些方法的问题是启动(定殖)和/或确定所需的时间从几天到几周不等。在这项研究中,开发了一种使用固定化细胞的简单快速连续生物反应器程序来测定BDOC。在开发的第一阶段,对生物反应器充气,以确保溶解氧不受速率限制。然而,从曝气生物反应器获得的BDOC结果受背景溶解有机碳(DOC)释放引起的较大误差影响。结果,测试了不同的生物反应器方案,其中对饲料(样品)而不是生物反应器充气。结果表明,充气的(FA)生物反应器是一种更好的BDOC测定工具,特别是对于初始有机物浓度较低的水,因为固定化细胞系统释放的本底DOC较少。使用FA生物反应器,可以在3 h的水力停留时间内实现BDOC的准确和可重复的测量,并且不需要启动时间。

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