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Selective recovery of silver from waste low-temperature co-fired ceramic and valorization through silver nanoparticle synthesis

机译:从废弃的低温共烧陶瓷中选择性回收银并通过银纳米颗粒合成进行增值

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摘要

Considering the value of silver metal and silver nanoparticles, the waste generated during manufacturing of low temperature co-fired ceramic (LTCC) were recycled through the simple yet cost effective process by chemical-metallurgy. Followed by leaching optimization, silver was selectively recovered through precipitation. The precipitated silver chloride was valorized though silver nanoparticle synthesis by a simple one-pot greener synthesis route. Through leaching-precipitation optimization, quantitative selective recovery of silver chloride was achieved, followed by homogeneous pure silver nanoparticle about 100nm size were synthesized. The reported recycling process is a simple process, versatile, easy to implement, requires minimum facilities and no specialty chemicals, through which semiconductor manufacturing industry can treat the waste generated during manufacturing of LTCC and reutilize the valorized silver nanoparticles in manufacturing in a close loop process. Our reported process can address issues like; (i) waste disposal, as well as value-added silver recovery, (ii) brings back the material to production stream and address the circular economy, and (iii) can be part of lower the futuristic carbon economy and cradle-to-cradle technology management, simultaneously.
机译:考虑到金属银和纳米银的价值,通过化学冶金通过简单但经济高效的工艺回收了低温共烧陶瓷(LTCC)制造过程中产生的废物。优化浸出之后,通过沉淀选择性地回收了银。通过简单的一锅法绿色合成路线,通过银纳米颗粒合成来使沉淀的氯化银增值。通过浸出-沉淀优化,实现了氯化银的定量选择性回收,然后合成了约100nm大小的均匀纯银纳米颗粒。报道的回收过程是一个简单的过程,用途广泛,易于实施,只需要最少的设备,并且不需要特殊化学物质,半导体制造行业就可以通过该过程来处理LTCC制造过程中产生的废物,并在闭环过程中重新利用制造中的价位银纳米颗粒。 。我们报告的流程可以解决以下问题: (i)废物处理以及增值的银回收,(ii)将材料带回生产流,解决循环经济,(iii)可能降低未来的碳经济和摇篮到摇篮同时进行技术管理。

著录项

  • 来源
    《Waste Management》 |2017年第11期|79-87|共9页
  • 作者单位

    Institute for Advanced Engineering (IAE). Advanced Materials & Processing Center, Yongin-Si 449-863, Republic of Korea;

    Institute for Advanced Engineering (IAE). Advanced Materials & Processing Center, Yongin-Si 449-863, Republic of Korea;

    Institute for Advanced Engineering (IAE). Advanced Materials & Processing Center, Yongin-Si 449-863, Republic of Korea;

    Institute for Advanced Engineering (IAE). Advanced Materials & Processing Center, Yongin-Si 449-863, Republic of Korea;

    Institute for Advanced Engineering (IAE). Advanced Materials & Processing Center, Yongin-Si 449-863, Republic of Korea;

    Institute for Advanced Engineering (IAE). Advanced Materials & Processing Center, Yongin-Si 449-863, Republic of Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    LTCC waste recycling; Silver recovery; Ag nanoparticle synthesis; Waste management; E-waste;

    机译:LTCC废物回收;白银回收;银纳米粒子的合成;废物管理;电子垃圾;

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