School of Biological, Earth and Environmental Sciences, University College Cork, Cork, Ireland; Environmental Research Institute, 6 Lee Rd, University College Cork, Ireland.
Oral Health Services Research Centre, Cork University Dental School and Hospital, Wilton, Cork, Ireland.
Sci Total Environ. 2022 Mar 25;814:152632. doi: 10.1016/j.scitotenv.2021.152632. Epub 2021 Dec 25.
Dental materials are currently undergoing a revolution. Mercury use, including traditional amalgam (mercury-containing) material used in dental fillings, is now being widely regulated under the Minamata convention, and dental amalgam is currently being replaced by resin formulations in dentistry. These resin-based materials can be tuned to offer varying material properties by incorporation of a range of nano- and micro-particle based 'fillers' for different dental properties and applications. However, these innovations may have a concomitant effect on the waste streams associated with common dental applications, in particular the potential for higher concentrations of novel micro- and nanomaterials within wastewater streams, and a potential route for novel nanomaterials into the wider Environment. These new materials may also mean that wastewater filtering apparatus commonly deployed at present, such as amalgam separators, may be less efficient or insufficient to capture these new filler materials in dental facility wastewater. In this work, we analyse dental wastewater streams from three dental facilities in Ireland with differing amalgam separators in place. The potential overall toxicity, particulate load and physicochemical properties are analysed. The overall risk posed by these new materials is also discussed.
牙科材料目前正在经历一场革命。在《水俣公约》的规定下,汞的使用(包括传统的汞合金(含汞)材料,用于牙科填充)现在正被广泛监管,而牙科汞合金目前正在被牙科用的树脂配方所取代。这些基于树脂的材料可以通过加入一系列纳米和微颗粒基“填料”来调整,以提供不同的材料性能,从而具有不同的牙科特性和应用。然而,这些创新可能会对常见牙科应用相关的废物流产生伴随影响,特别是在废水中可能存在更高浓度的新型微纳米材料,以及新型纳米材料进入更广泛环境的潜在途径。这些新材料也可能意味着,目前常见的废水过滤设备(如汞合金分离器)可能效率较低或不足以捕获牙科设施废水中的这些新型填料材料。在这项工作中,我们分析了爱尔兰三个牙科设施的牙科废水,这些设施配备了不同的汞合金分离器。分析了潜在的总体毒性、颗粒负荷和物理化学特性。还讨论了这些新材料带来的总体风险。