Sustainable and Renewable Energy Engineering Department, University of Sharjah, Sharjah, United Arab Emirates.
Industrial Engineering Department, An-Najah National University, Nablus, Palestine.
Sci Total Environ. 2022 Jun 25;827:154050. doi: 10.1016/j.scitotenv.2022.154050. Epub 2022 Feb 22.
Recent achievement and progress in solar PV play a significant role in controlling climate change. This study reviewed comprehensively electrical characteristics, life cycle of dust, optical characteristics, and different cleaning techniques related to the effect of dust on the performance of PV modules throughout different climate regions of the world. The power maximum power point (MPP) and curve of PV module under the effect of irradiance and temperature were presented. The effect of dust (shading) on the electrical efficiency of PV module was discussed based on soft, partial, and complete (soiling) shading. The physical properties of dust around the globe such as PM concentration, dust loading (mgm), and fine dust particles concentration were covered and discussed. Reasons behind the accumulation of dust based on, location and installation factors, dust type, and environmental factors. Environmental reasons causing dust and dust removal in accordance with the life cycle of dust was covered in detail. All the reasons that cause the generation, accumulation and removal of dust during its life cycle were explained. All forces responsible for the adhesion phase of the dust life cycle were presented. The effect of dust on PV module transmittance and electrical parameters module were discussed in detail based on physical properties of the dust at its location and installation conditions. Self-cleaning super hydrophobic surfaces based on methods such as solvents, vapor-assisted coating, powder coating, and polymerization were discussed. All cleaning technologies, including self-cleaning technologies, based on the material coating used, and the manufacturing of PV cells was compared. The future prospective for PV technologies and cleaning methods were also covered.
太阳能光伏的最新成果和进展在控制气候变化方面发挥了重要作用。本研究全面回顾了世界各地不同气候区域有关灰尘对光伏组件性能影响的电气特性、灰尘生命周期、光学特性和不同清洁技术。介绍了在辐照度和温度影响下光伏组件的最大功率点 (MPP) 和曲线。根据软、部分和完全(污染)遮挡讨论了灰尘(遮挡)对光伏组件电效率的影响。涵盖并讨论了全球灰尘的物理特性,如 PM 浓度、灰尘负荷(mgm)和细尘颗粒浓度。基于位置和安装因素、灰尘类型和环境因素,讨论了灰尘积累的原因。详细介绍了灰尘生命周期中造成灰尘积累和清除的环境原因。解释了在其生命周期中导致灰尘产生、积累和清除的所有原因。提出了灰尘生命周期粘附阶段的所有作用力。根据灰尘在其位置和安装条件下的物理特性,详细讨论了灰尘对光伏组件透过率和电气参数模块的影响。讨论了基于溶剂、蒸汽辅助涂层、粉末涂层和聚合等方法的自清洁超疏水表面。比较了所有清洁技术,包括基于使用的材料涂层的自清洁技术和光伏电池的制造。还介绍了光伏技术和清洁方法的未来前景。