首页> 外文期刊>Journal of the European Ceramic Society >Life cycle assessment and environmental profile evaluation of lead-free piezoelectrics in comparison with lead zirconate titanate
【24h】

Life cycle assessment and environmental profile evaluation of lead-free piezoelectrics in comparison with lead zirconate titanate

机译:与锆钛酸铅铅的无铅压电测量生命周期评估与环境简介评价

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

The prohibition of lead in many electronic components and devices due to its toxicity has reinvigorated the race to develop substitutes for lead zirconate titanate (PZT) based mainly on the potassium sodium niobate (KNN) and sodium bismuth titanate (NBT). However, before successful transition from laboratory to market, critical environmental assessment of all aspects of their fabrication and development must be carried out in comparison with PZT. Given the recent findings that KNN is not intrinsically ‘greener’ than PZT, there is a tendency to see NBT as the solution to achieving environmentally lead-free piezoelectrics competitive with PZT. The lower energy consumed by NBT during synthesis results in a lower overall environmental profile compared to both PZT and KNN. However, bismuth and its oxide are mainly the by-product of lead smelting and comparison between NBT and PZT indicates that the environmental profile of bismuth oxide surpasses that of lead oxide across several key indicators, especially climate change, due to additional processing and refining steps which pose extra challenges in metallurgical recovery. Furthermore, bismuth compares unfavourably with lead due to its higher energy cost of recycling. The fact that roughly 90–95% of bismuth is derived as a by-product of lead smelting also constitutes a major concern for future upscaling. As such, NBT and KNN do not offer absolute competitive edge from an environmental perspective in comparison to PZT. The findings in this work have global practical implications for future Restriction of Hazardous Substances (RoHS) legislation for piezoelectric materials and demonstrate the need for a holistic approach to the development of sustainable functional materials.
机译:由于其毒性的许多电子元件和装置中的欠铅已经重新发明了主要基于铌酸钠(KNN)和钛酸钠(NBT)的锂锆钛酸钛酸盐(PZT)的替代品。然而,在从实验室到市场的成功过渡之前,必须与PZT相比进行其制造和开发的所有方面的关键环境评估。鉴于最近的发现,KNN没有比PZT无创“更环保”,倾向于将NBT视为实现与PZT竞争竞争的无害环境无铅压电的解决方案。与PZT和KNN两者相比,合成期间NBT在合成期间消耗的较低能量导致较低的整体环境概况。然而,铋及其氧化物主要是铅冶炼的副产物,并且NBT和PZT之间的比较表明,由于额外的加工和精炼步骤,氧化铋的环境曲线超过了几个关键指标,特别是气候变化的氧化铅的环境谱这在冶金恢复中构成了额外的挑战。此外,铋由于其较高的再循环能成本而不利地比较铅。大约90-95%的铋衍生出作为铅冶炼的副产物的事实也构成了未来升起的主要问题。因此,与PZT相比,NBT和KNN与环境视角不提供绝对竞争优势。这项工作中的调查结果具有全球实际意义,以便对压电材料的危险物质(RoHS)立法进行全球实际意义,并证明需要一种全面方法的可持续功能材料的发展。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号