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How Effective is SRT Control for Eliminating Microconstituents?

机译:SRT控制消除微量成分的效果如何?

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Control of the solids retention time in secondary treatment has been proposed as astrategy for enhancing biodegradation to improve removal of microconstituents (MCS) such aspharmaceuticals and personal care products. The purpose of this study was to evaluate, using fatemodeling, the effectiveness of SRT control for eliminating a variety of MCs during wastewatertreatment, using three calibrated wastewater treatment plant configurations from Ontario, Canada.A suite of five target MCs, exhibiting a range of hydrophobic and biodegradable characteristicswas selected for testing the effect of SRT on their elimination during wastewater treatment usingthe TOXCHEM predictive fate model. Mixed liquor suspended solids, waste activated sludge(WAS) suspended solids and WAS wasting rates were modified in the existing model layouts toprovide the appropriate HRT and SRT values.The modeling results indicate that increasing SRT alone will not always be effective forenhancing biodegradation to eliminate MCs. Because the kinetics of biodegradation are not onlydependent on the biomass concentration and population, as reflected by SRT, but also on the timeavailable for biodegradation to occur, both hydraulic retention time and SRT in the biologicalreactor need to be assessed to maximize the contribution of biodegradation to overall contaminantremoval. For some MCs, a higher HRT for the biological process may be as important as theSRT. The relative importance of SRT and HRT for eliminating MCs from treated effluentsappears to depend on the physical, chemical and biological properties of the individual MCs.
机译:已经提出了控制二次处理中固体保留时间的策略,以增强生物降解能力,以改善对微量成分(MCS)如药物和个人护理产品的去除。这项研究的目的是使用命运模型来评估SRT控制在废水处理过程中消除多种MC的有效性,使用了加拿大安大略省的三套经过校准的废水处理厂配置,一套包含五个疏水性目标MC的套件。并使用TOXCHEM预测命运模型选择了可生物降解的特性,以测试废水处理过程中SRT对消除SRT的影响。现有模型布局中修改了混合液悬浮固体,废物活性污泥(WAS)悬浮固体和WAS浪费率,以提供适当的HRT和SRT值。模型结果表明,仅增加SRT并不总是有效地增强生物降解以消除MC 。因为生物降解的动力学不仅取决于SRT反映的生物质浓度和种群,而且还取决于生物降解发生的时间,所以需要评估生物反应器中的水力停留时间和SRT,以最大程度地发挥生物降解作用对生物反应器的贡献。总体去除污染物。对于某些MC,对于生物学过程而言,更高的HRT与SRT一样重要。 SRT和HRT对于从处理的废水中去除MC的相对重要性似乎取决于各个MC的物理,化学和生物学特性。

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