首页> 外文会议>Conference on reliability of photovoltaic cells, modules, components, and systems II >Effects of Cerium Removal from Glass on Photovoltaic Module Performance and Stability
【24h】

Effects of Cerium Removal from Glass on Photovoltaic Module Performance and Stability

机译:玻璃对光伏模块性能和稳定性的影响

获取原文

摘要

Photovoltaic modules are exposed to extremely harsh conditions of heat, humidity, high voltage, mechanical stress, thermal cycling and ultraviolet (UV) radiation. The current qualification tests (e.g. IEC 61215) do not require sufficient UV exposure to evaluate lifespans of 30 years. Recently, photovoltaic panel manufacturers have been using glass that does not contain Cerium. This has the advantage of providing about 1.3% to 1.8% more photon transmission but potentially at the expense of long term stability. The additional transmission of light in the 300 nm to 340 nm range can cause delamination to occur about 3.8 times faster. Similarly, UV radiation will cause polymeric encapsulants, such as ethylene vinyl-acetate (EVA), to turn yellow faster losing photon transmission. Silicones do not suffer from light induced degradation as hydrocarbon based polymers do, therefore if silicone encapsulants are used, a 1.6% to 1.9% increase in photon transmission can be obtained from removal of Ce from glass, with no tradeoff in long term stability. Additionally antimony can be added to non-Ce containing glass to further improve photon transmission (principally in the IR range) by an additional 0.4% to 0.7%; however, this does not significantly affect UV transmission so the same UV induced reliability concerns will still exist with common hydrocarbon-based encapsulants.
机译:光伏模块暴露于极其恶劣的热,湿度,高压,机械应力,热循环和紫外(UV)辐射条件。目前的资格测试(例如IEC 61215)不需要足够的UV暴露来评估30年的寿命。最近,光伏面板制造商一直使用不含铈的玻璃。这具有提供约1.3%至1.8%的光子传输,但潜在地以长期稳定性为代价。 300nm至340nm范围内的光的额外传输可以使分层更快地发生约3.8倍。类似地,紫外线辐射将导致聚合物密封剂,例如乙烯 - 乙酸乙烯酯(EVA),以变为黄色更快的损失光子透射。由于使用烃类聚合物,硅氧烷不会遭受光致致抗降解,因此如果使用硅氧烷密封剂,则可以从玻璃中移除Ce的光子透射率增加1.6%至1.9%,从而长期稳定性。另外,可以将锑添加到非Ce含玻璃中,以进一步改善光子透射(主要在IR范围)中的额外0.4%至0.7%;然而,这不会显着影响紫外线传输,因此普遍烃类密封剂仍然存在相同的UV诱导的可靠性问题。

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