High-voltage pulse crushing and physical separation of polycrystalline silicon photovoltaic panels

被引:62
|
作者
Akimoto, Yuta [1 ]
Iizuka, Atsushi [2 ]
Shibata, Etsuro [2 ]
机构
[1] Tohoku Univ, Grad Sch Environm Studies, Aoba Ku, 468-1 Aramaki, Sendai, Miyagi 9800845, Japan
[2] Tohoku Univ, Res Ctr Sustainable Sci & Engn, Inst Multidisciplinary Res Adv Mat, Aoba Ku, 2-1-1 Katahira, Sendai, Miyagi 9808577, Japan
关键词
High-voltage pulse crushing; Photovoltaic panel; Selective crushing; Recycling; PRINTED-CIRCUIT BOARDS; ORGANIC-SOLVENT; MODULES; LIBERATION;
D O I
10.1016/j.mineng.2018.05.015
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
High-voltage pulse crushing technology combined with sieving and dense medium separation was applied to a photovoltaic panel for selective separation and recovery of materials. The panel was first separated into glass and back sheet layers by high-voltage pulse crushing through microexplosions or shock waves transmitted in the Al electrode and Si substrate (primary crushing step). Then the glass and bus-bar electrode could be separated from the encapsulant by high-voltage pulse crushing of the glass layer. The bus-bar electrode of the back sheet layer could also be separated by further high-voltage pulse crushing. After sieving the products obtained from the secondary crushing step of the glass layer, glass was mainly distributed in the size fraction range of 45-850 gm with a small amount of Si powder. However, purification of the glass (removal of Si powder) could be achieved by dense medium separation at a specific gravity of 2.4. Base metals, such as Cu, Sn, and Pb could be recovered in the large size fraction (1.0-8.0 mm). Ag used in the finger and bus-bar electrodes was highly condensed in the sieved product fraction with sizes of less than 20 mu m, 2.0-4.0, and 4.0-8.0 mm, and its content exceeded 3000 mg/kg. However, the amount of Ag in these fractions represented only 33.2% of the total amount of Ag in the panel. Thus, to increase the Ag recovery ratio, other separation methods will be needed. We confirmed that dense medium separation at a specific gravity of 3.0 could achieve Ag condensation from the Si and glass, and that this represents a promising option for enhanced Ag recovery from crushed products.
引用
收藏
页码:1 / 9
页数:9
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