浮动光伏系统在矿坑湖泊和尾矿库中的应用

IF 6.5 Q2 ENGINEERING, ENVIRONMENTAL
Elaheh Mohammadi Valikandi, Yosoon Choi
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引用次数: 0

摘要

漂浮式光伏(FPV)系统作为一种创新的可再生能源解决方案正受到越来越多的关注,尤其是在土地稀缺或竞争激烈的地区。与传统的地面太阳能发电场不同,fpv利用未使用的水面,通过自然冷却提高组件效率,同时减少土地使用冲突,节约用水。近年来,采矿业已将注意力转向fpv,在矿坑湖泊和尾矿池上探索它们的潜力,否则这些地方将得不到利用。本文深入探讨了在采矿环境中部署fpv的实用性、优势和挑战。通过分析现实世界的案例研究,我们强调了这些系统如何支持可持续采矿工作、碳减排目标和能源安全,同时优化土地和水资源。然而,关键问题仍然存在,特别是关于长期环境影响,特定地点的工程挑战和总体成本效益。为了改进FPV技术,使其在采矿部门得到更广泛的采用,必须进行进一步的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Utilization of floating photovoltaic systems in mine pit lakes and tailings ponds
Floating photovoltaic (FPV) systems are gaining traction as an innovative renewable energy solution, especially in areas where land is scarce or highly contested. Unlike traditional ground-mounted solar farms, FPVs take advantage of unused water surfaces, improving module efficiency through natural cooling while also reducing land-use conflicts and conserving water. In recent years, the mining industry has turned its attention to FPVs, exploring their potential on mine pit lakes and tailings ponds—sites that would otherwise remain unutilized. This review takes a closer look at the practicality, benefits, and challenges of deploying FPVs in mining environments. By analyzing real-world case studies, we highlight how these systems could support sustainable mining efforts, carbon reduction targets, and energy security, all while optimizing land and water resources. However, critical questions remain, particularly regarding long-term environmental impact, site-specific engineering challenges, and overall cost-effectiveness. Further research is essential to refine FPV technology for wider adoption in the mining sector.
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来源期刊
Cleaner Engineering and Technology
Cleaner Engineering and Technology Engineering-Engineering (miscellaneous)
CiteScore
9.80
自引率
0.00%
发文量
218
审稿时长
21 weeks
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