首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >A method to recycle silicon wafer from end-of -life photovoltaic module and solar panels by using recycled silicon wafers
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A method to recycle silicon wafer from end-of -life photovoltaic module and solar panels by using recycled silicon wafers

机译:通过使用再循环硅晶片将硅晶片回收硅晶片和太阳能电池板的方法

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This paper details an innovative recycling process to recover silicon (Si) wafer from solar panels. Using these recycled wafers, we fabricated Pb-free solar panels. The first step to recover Si wafer is to dissolve silver (Ag) and aluminium (Al) via nitric acid (HNO3) and potassium hydroxide (KOH), respectively. The next step is to remove anti-reflection coating (ARC) and emitter on the surface by using an etching paste which contains phosphoric acid (H3PO4). Wafers onto which the etching paste was applied were heated for 2 min at 320, 340, 360, 380, and 400 degrees C. The recycled wafers showed properties with the thickness of over 180 pm, resistivity of 0.5-4 ohm cm, which are almost identical to those of commercial virgin wafers. Furthermore, the solar cells manufactured with the recycled wafers showed an efficiency equivalent to that of the virgin cells. Pb-free solar panels were fabricated with the solar cells by using 60Sn-38Bi-2Ag solder to assemble the solar panels. Thermal cycling test based on the standard IEC 61215 were performed on the solar panels in order to confirm their stability.
机译:本文详述了一种创新的回收过程,可以从太阳能电池板恢复硅(Si)晶圆。使用这些回收的晶片,我们制造了无铅太阳能电池板。回收Si晶片的第一步是分别通过硝酸(HNO 3)和氢氧化钾(KOH)溶解银(Ag)和铝(Al)。下一步骤是通过使用含有磷酸(H3PO4)的蚀刻浆料去除表面上的抗反射涂层(ARC)和发射极。将蚀刻浆料的晶片在320,340,360,380和400℃下加热2分钟。再生晶片显示出厚度超过180μm的性能,电阻率为0.5-4欧姆厘米几乎与商业处女晶片的几乎相同。此外,用再循环晶片制造的太阳能电池显示出与原始电池的效率相当。通过使用60Sn-38Bi-2AG焊料组装太阳能电池,通过太阳能电池制造无铅太阳能电池。基于标准IEC 61215的热循环测试在太阳能电池板上进行,以确认它们的稳定性。

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