首页> 外文期刊>工程(英文) >Moisture Absorption and Desorption in an Ionomer-Based Encapsulant:A Type of Self-Breathing Encapsulant for CIGS Thin-Film PV Modules
【24h】

Moisture Absorption and Desorption in an Ionomer-Based Encapsulant:A Type of Self-Breathing Encapsulant for CIGS Thin-Film PV Modules

机译:离聚物的密封剂中的吸湿和解吸剂:一种用于CIGS薄膜PV模块的自呼吸密封剂

获取原文
获取原文并翻译 | 示例
       

摘要

As an alternative to conventional encapsulation concepts for a double glass photovoltaic(PV)module,we introduce an innovative ionomer-based multi-layer encapsulant,by which the application of additional edge sealing to prevent moisture penetration is not required.The spontaneous moisture absorption and desorption of this encapsulant and its raw materials,poly(ethylene-co-acrylic acid)and an ionomer,are analyzed under different climatic conditions in this work.The relative air humidity is thermodynamically the driving force for these inverse processes and determines the corresponding equilibrium moisture content(EMC).Higher air humidity results in a larger EMC.The homogenization of the absorbed water molecules is a diffusion-controlled process,in which temperature plays a dominant role.Nevertheless,the diffusion coefficient at a higher temperature is still relatively low.Hence,under normal climatic conditions for the application of PV modules,we believe that the investigated ionomer-based encapsulant can“breathe”the humidity:During the day,when there is higher relative humidity,it“inhales”(absorbs)moisture and restrains it within the outer edge of the module;then at night,when there is a lower relative humidity,it“exhales”(desorbs)the moisture.In this way,the encapsulant protects the cell from moisture ingress.
机译:作为双玻璃光伏(PV)模块的传统封装概念的替代方案,我们介绍了一种创新的离聚物基多层密封剂,通过该封装,通过该封装,通过该涂覆额外的边缘密封以防止水分渗透。自发的吸收和在这项工作中的不同气候条件下分析解吸该密封剂及其原料,聚(乙烯 - 共丙烯酸)和离聚物,在不同的气候条件下分析。相对空气湿度在热力学上是用于这些逆过程的驱动力,并确定相应的平衡水分含量(EMC)。高气湿度导致较大的EMC。吸收水分子的均匀化是扩散控制的过程,其中温度起到优势作用。无论如何,在更高温度下的扩散系数仍然相对较低在正常气候条件下,用于应用PV模块的正常气候条件下,我们认为研究了IONOMER-BAS ED密封剂可以“呼吸”湿度:在白天,当相对湿度较高时,它“吸入”(吸入)水分并限制在模块的外边缘内;然后在夜间,当相对湿度较低时,它“呼出”(索取)水分。这种方式,密封剂保护细胞免受水分进入。

著录项

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