University of Vienna, Department of Environmental Geosciences and Environmental Science Research Network, Althanstrasse 14 UZA II, 1090, Vienna, Austria.
University of Vienna, Department of Environmental Geosciences and Environmental Science Research Network, Althanstrasse 14 UZA II, 1090, Vienna, Austria.
Water Res. 2017 Nov 1;124:673-692. doi: 10.1016/j.watres.2017.07.070. Epub 2017 Aug 7.
The sorption of ionic and ionizable organic compounds (IOCs) (e.g., pharmaceuticals and pesticides) on carbonaceous materials plays an important role in governing the fate, transport and bioavailability of IOCs. The paradigms previously established for the sorption of neutral organic compounds do not always apply to IOCs and the importance of accounting for the particular sorption behavior of IOCs is being increasingly recognized. This review presents the current state of knowledge and summarizes the recent advances on the sorption of IOCs to carbonaceous sorbents. A broad range of sorbents were considered to evaluate the possibility to read across between fields of research that are often considered in isolation (e.g., carbon nanotubes, graphene, biochar, and activated carbon). Mechanisms relevant to IOCs sorption on carbonaceous sorbents are discussed and critically evaluated, with special attention being given to emerging sorption mechanisms including low-barrier, charge-assisted hydrogen bonds and cation-π assisted π-π interactions. The key role played by some environmental factors is also discussed, with a particular focus on pH and ionic strength. Overall the review reveals significant advances in our understanding of the interactions between IOCs and carbonaceous sorbents. In addition, knowledge gaps are identified and priorities for future research are suggested.
碳质材料对离子型和可离子化有机化合物(IOCs)(如药品和农药)的吸附在控制 IOCs 的命运、迁移和生物可利用性方面起着重要作用。以前为中性有机化合物吸附建立的范例并不总是适用于 IOCs,并且越来越认识到需要考虑 IOCs 的特殊吸附行为。本综述介绍了目前的知识状况,并总结了 IOCs 与碳质吸附剂吸附的最新进展。为了评估通常被认为是孤立的研究领域之间的跨领域可能性,考虑了广泛的吸附剂来评估(例如,碳纳米管、石墨烯、生物炭和活性炭)。讨论并批判性地评估了与碳质吸附剂上 IOCs 吸附相关的机制,特别关注新兴的吸附机制,包括低势垒、电荷辅助氢键和阳离子-π 辅助 π-π 相互作用。还讨论了一些环境因素的关键作用,特别关注 pH 值和离子强度。总的来说,该综述揭示了我们对 IOCs 与碳质吸附剂之间相互作用的理解的重大进展。此外,还确定了知识空白,并为未来的研究提出了重点。