Division for Globalization Initiative, Liaison Center for Innovative Dentistry, Tohoku University Graduate School of Dentistry, Sendai, Japan.
School of Stomatology, Dalian Medical University, Dalian, China.
J Prosthodont Res. 2024 Oct 16;68(4):522-531. doi: 10.2186/jpr.JPR_D_23_00186. Epub 2024 Mar 23.
This scoping review aimed to identify and discuss the recyclability of dental zirconia residuals along with the factors influencing the properties of dental recycled zirconia.
In vitro studies written in both English and Chinese that evaluated the recyclability of dental zirconia residue were selected. A literature search was conducted in Medline, PubMed, Web of Science, and Cochrane Library databases with no restrictions on the publication year.
Sixteen studies were included in this review. Residual dental zirconia can be recycled. Cold isostatic pressing improved the density of recycled zirconia compared with uniaxial pressing. Recycled zirconia powder with fine particles enhanced the performance of recycled zirconia compared with coarse particles. A presintering temperature of 950 to 1100°C was suitable for preparing recycled zirconia presintered bodies. Recycled zirconia may require a higher sintering temperature (≥1500°C) compared with commercially available zirconia. Additionally, recycled zirconia powder can enhance the properties of polymethylmethacrylate as a reinforcing filler and can be combined with alumina powder to obtain an alumina/zirconia composite material.
Despite a limited body of literature, the recycling and reutilization of dental zirconia residuals are feasible and reliable, and can reduce economic and environmental losses. Nevertheless, several factors influence the recycling effect, including the particle size, molding techniques, and sintering parameters. In addition, recycled zirconia powder can act as a reinforcing filler, potentially enhancing the mechanical properties of other materials. To realize commercially viable recycled zirconia materials, further studies are essential to comprehensively explore and understand their recycling performance.
本综述旨在确定和讨论牙科氧化锆废料的可回收性,并探讨影响牙科再生氧化锆性能的因素。
纳入了评估牙科氧化锆残余物可回收性的中英文体外研究。在 Medline、PubMed、Web of Science 和 Cochrane Library 数据库中进行了文献检索,对发表年份没有限制。
本综述纳入了 16 项研究。残留的牙科氧化锆可回收。与单轴压制相比,冷等静压可提高再生氧化锆的密度。与粗颗粒相比,细颗粒的再生氧化锆粉末可提高再生氧化锆的性能。950-1100°C 的预烧温度适合制备再生氧化锆预烧体。与市售氧化锆相比,再生氧化锆可能需要更高的烧结温度(≥1500°C)。此外,再生氧化锆粉末可作为增强填料提高聚甲基丙烯酸甲酯的性能,并可与氧化铝粉末结合获得氧化铝/氧化锆复合材料。
尽管文献数量有限,但牙科氧化锆残余物的回收再利用是可行和可靠的,可以减少经济和环境损失。然而,有几个因素会影响回收效果,包括颗粒大小、成型技术和烧结参数。此外,再生氧化锆粉末可用作增强填料,可能会提高其他材料的机械性能。为了实现商业上可行的再生氧化锆材料,需要进一步研究来全面探索和了解其回收性能。