Department of Engineering, University of Ferrara, Via Saragat 1, 44122 Ferrara, Italy.
Department of Analytical Chemistry, Faculty of Chemical Engineering, University of Zagreb, Trg Marka Marulića 19, 10000 Zagreb, Croatia.
Sci Total Environ. 2021 Oct 10;790:148050. doi: 10.1016/j.scitotenv.2021.148050. Epub 2021 May 27.
This study consists of a review on the removal efficiencies of a wide spectrum of micropollutants (MPs) in biological treatment (mainly membrane bioreactor) coupled with activated carbon (AC) (AC added in the bioreactor or followed by an AC unit, acting as a post treatment). It focuses on how the presence of AC may promote the removal of MPs and the effects of dissolved organic matter (DOM) in wastewater. Removal data collected of MPs are analysed versus AC dose if powdered AC is added in the bioreactor, and as a function of the empty bed contact time in the case of a granular activated carbon (GAC) column acting as a post treatment. Moreover, the enhancement in macropollutant (organic matter, nitrogen and phosphorus compounds) removal is analysed as well as the AC mitigation effect towards membrane fouling and, finally, how sludge properties may change in the presence of AC. To sum up, it was found that AC improves the removal of most MPs, favouring their sorption on the AC surface, promoted by the presence of different functional groups and then enhancing their degradation processes. DOM is a strong competitor in sorption on the AC surface, but it may promote the transformation of GAC in a biologically activated carbon thus enhancing all the degradation processes. Finally, AC in the bioreactor increases sludge floc strength and improves its settling characteristics and sorption potential.
本研究综述了生物处理(主要是膜生物反应器)与活性炭(AC)结合时对多种微量污染物(MPs)的去除效率(AC 可添加到生物反应器中,也可在后续设置 AC 单元作为后处理)。重点探讨了 AC 的存在如何促进 MPs 的去除以及废水中溶解性有机物(DOM)的影响。如果在生物反应器中添加粉末状 AC,则根据 MPs 的去除数据与 AC 剂量进行分析;如果采用颗粒状活性炭(GAC)柱作为后处理,则根据空床接触时间进行分析。此外,还分析了对大污染物(有机物、氮和磷化合物)去除的增强作用以及 AC 对膜污染的缓解作用,最后还分析了 AC 的存在如何改变污泥性质。总之,研究发现 AC 可提高大多数 MPs 的去除率,促进其在 AC 表面的吸附,这得益于不同官能团的存在,从而增强其降解过程。DOM 是 AC 表面吸附的强劲竞争对手,但它可能会促使 GAC 转化为生物活性炭,从而增强所有降解过程。最后,生物反应器中的 AC 可提高污泥絮体强度,改善其沉降特性和吸附能力。