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Direct Transformation of Metallized Paper into Al-Si Nano-Rod and Al Nano-Particles Using Thermal Micronizing Technique

机译:使用热微粉化技术将金属化纸直接转化为Al-Si纳米棒和Al纳米颗粒

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摘要

The abundant application of metallized paper and the quick growth of their wastes lead to the removal of a huge amount of valuable resources from economic cycle. In this work, for the first-time, the thermal micronizing technique has been used to directly transform the metallized paper wastes to Al-Si nano-rod and Al nano-particles for use as the input in different manufacturing sectors such as additive manufacturing or composite fabrication. Structure of metallized paper has been investigated using FT-IR analysis and first-principle plane-wave calculation. Then, based on the structure of metallized paper, thermal micronizing technique has been modified to directly transform this waste into nano materials. Structure of nano-particles and nano-rods has been investigated using SEM, TEM, and XPS analysis. Results showed two main Al-Si nano-rod and Al nano-particle morphologies created as a result of the different surface tensions, which facilitate their separation by Eddy current separation technique. These quick transformation and facile separation together make this technique a unique process to deal with this complex waste and producing value-added products which can re-capture these high value materials from waste and make the reforming economically viable.
机译:金属化纸的广泛应用及其废料的快速增长导致经济周期中大量宝贵资源的流失。在这项工作中,首次采用热微粉化技术将金属化纸屑直接转化为Al-Si纳米棒和Al纳米颗粒,以用作不同制造部门(例如增材制造或加工厂)的输入。复合制造。使用FT-IR分析和第一原理平面波计算研究了金属化纸的结构。然后,基于金属化纸的结构,对热微粉化技术进行了改进,可以直接将这种废物转化为纳米材料。纳米粒子和纳米棒的结构已使用SEM,TEM和XPS分析进行了研究。结果表明,由于表面张力不同,产生了两种主要的Al-Si纳米棒和Al纳米颗粒形态,这有助于通过涡流分离技术进行分离。这些快速的转换和简便的分离使该技术成为处理这种复杂废物并生产增值产品的独特过程,该增值产品可以从废物中重新捕获这些高价值材料,并使改造在经济上可行。

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