Systematic Mapping Study (SMS) on Energy Outcome Loss Caused by Dust Deposition on Photovoltaic Panels Due to Climate Change in North Africa
北アフリカにおける気候変動による太陽光パネルへのダスト堆積が引き起こすエネルギー出力損失に関する系統的マッピング研究(SMS) (AI 翻訳)
Salma Sadek Jetlawei, Mohamed Ali Mohamed EL-sseid, Tunç Durmuş Medeni, İ Medeni Medeni, Mansour Essgaer, Abdulgader Alsharif
🤖 gxceed AI 要約
日本語
本論文は、北アフリカにおける気候変動が引き起こすダスト堆積による太陽光発電の出力損失に関する文献を系統的にレビューした初の研究である。87件の研究を分析し、長期フィールドデータの不足や標準化された測定プロトコルの欠如などの研究ギャップを特定した。また、緩和技術と政策枠組みを整理し、将来の研究を導く分類法を提案している。
English
This paper presents the first systematic mapping study on dust-induced PV performance degradation in North Africa under climate change. Analyzing 87 studies, it identifies critical research gaps in field data, measurement standards, and predictive modeling. It proposes a taxonomy and highlights mitigation technologies and policy frameworks to guide future work.
Unofficial AI-generated summary based on the public title and abstract. Not an official translation.
📝 gxceed 編集解説 — Why this matters
日本のGX文脈において
日本では、砂漠地域での太陽光発電プロジェクトや中東・アフリカ展開を検討する企業にとって、ダスト対策の重要性を示す知見となる。また、気候変動適応策としての再エネ信頼性向上に寄与する。
In the global GX context
Globally, this study supports climate adaptation planning for solar energy in arid regions, informing ISSB-aligned climate risk disclosures and transition finance for renewable projects in vulnerable areas.
👥 読者別の含意
🔬研究者:Provides a structured taxonomy and research gaps for PV soiling under climate change.
🏢実務担当者:Highlights mitigation technologies and the need for soiling measurement protocols to optimize PV O&M.
🏛政策担当者:Informs policies for solar energy reliability and climate adaptation in arid regions.
📄 Abstract(原文)
Photovoltaic (PV) energy systems in North Africa are increasingly recognized as pivotal to regional decarbonization and energy security. However, the accelerating impacts of climate change including intensified aridity, desertification, and altered wind patterns are exacerbating dust deposition on PV modules, leading to significant and often unquantified energy yield losses. This paper presents the first systematic mapping study to comprehensively categorize, analyze, and visualize the state-of-the-art literature addressing the nexus between climate-induced dust accumulation and PV performance degradation across North Africa. Following the Kitchenham and Petersen protocols for systematic reviews in engineering, this research analyzed 87 peer-reviewed studies published between (2000 and 2026). This mapping reveals critical research gaps in long-term field data, standardized soiling measurement protocols, and region-specific predictive modeling under future climate scenarios. This research further identify emerging mitigation technologies and policy frameworks, proposing a novel research taxonomy to guide future investigations. This study provides a foundational evidence base for engineers, policymakers, and climate adaptation planners seeking to optimize PV reliability and energy return on investment in one of the world’s most solar-rich yet environmentally vulnerable regions.It was concluded that Al-Marqab cement gave the shortest initial setting time, with a value of 175 minutes, while Al-Ittihad cement gave the longest setting time, with a value of 185 minutes. Egyptian Helwan cement gave the shortest final setting time, with a value of 210 minutes, while Al-Ittihad cement gave the longest time, with a value of 240 minutes, and Al-Binyan cement gave the lowest workability, with a value of 70 mm. Al-Ittihad cement gave the highest slump value, with a value of 110 mm, and Al-Binyan and Labda cement gave the lowest compressive strength at 7 days, with a value of (20 MPa), while Al-Ittihad and Al-Arabiya cement gave the highest value of (28 MPa). Al-Binyan cement gave the lowest compressive strength at 28 days, amounting to (25 MPa), Arabia cement gave the highest value of 36 MPa, and Al-Binyan cement gave the lowest value in terms of average economic cost, at 41 dinars per tonne, while Al-Ittihad cement gave the highest value, at 45.33 dinars per tonne.
🔗 Provenance — このレコードを発見したソース
- openalex https://doi.org/10.64943/jkc.2026.040211first seen 2026-07-31 05:12:40
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