Department of Chemical Engineering, Institute of Technology, Universidade de Santiago de Compostela, 15782 Santiago de Compostela, Galicia, Spain.
Department of Chemical Engineering, Institute of Technology, Universidade de Santiago de Compostela, 15782 Santiago de Compostela, Galicia, Spain.
Sci Total Environ. 2018 Feb 15;615:297-306. doi: 10.1016/j.scitotenv.2017.09.278. Epub 2017 Oct 2.
New technologies for wastewater treatment have been developed in the last years based on the combination of biological reactors operating under different redox conditions. Their efficiency in the removal of organic micropollutants (OMPs) has not been clearly assessed yet. This review paper is focussed on understanding the sorption and biotransformation of a selected group of 17 OMPs, including pharmaceuticals, hormones and personal care products, during biological wastewater treatment processes. Apart from considering the role of "classical" operational parameters, new factors such as biomass conformation and particle size, upward velocity applied or the addition of adsorbents have been considered. It has been found that the OMP removal by sorption not only depends on their physico-chemical characteristics and other parameters, such as the biomass conformation and particle size, or some operational conditions also relevant. Membrane biological reactors (MBR), have shown to enhance sorption and biotransformation of some OMPs. The same applies to technologies bases on direct addition of activated carbon in bioreactors. The OMP biotransformation degree and pathway is mainly driven by the redox potential and the primary substrate activity. The combination of different redox potentials in hybrid reactor systems can significantly enhance the overall OMP removal efficiency. Sorption and biotransformation can be synergistically promoted in biological reactors by the addition of activated carbon. The deeper knowledge of the main parameters influencing OMP removal provided by this review will allow optimizing the biological processes in the future.
近年来,基于在不同氧化还原条件下运行的生物反应器组合,开发了用于废水处理的新技术。它们在去除有机微量污染物(OMPs)方面的效率尚未得到明确评估。本文重点介绍了在生物废水处理过程中,对一组选定的 17 种 OMPs(包括药物、激素和个人护理产品)的吸附和生物转化的理解。除了考虑“经典”操作参数的作用外,还考虑了新的因素,如生物量构象和粒径、施加的上升速度或吸附剂的添加。研究发现,吸附对 OMP 的去除不仅取决于它们的物理化学特性和其他参数,如生物量构象和粒径,或一些操作条件也很重要。膜生物反应器(MBR)已被证明可以增强一些 OMP 的吸附和生物转化。同样适用于基于直接在生物反应器中添加活性炭的技术。OMP 的生物转化程度和途径主要受氧化还原电位和主要基质活性的驱动。在混合反应器系统中结合不同的氧化还原电位可以显著提高整体 OMP 去除效率。通过添加活性炭可以协同促进生物反应器中的吸附和生物转化。本综述提供的影响 OMP 去除的主要参数的更深入知识将允许未来优化生物过程。