光伏发电对土壤和水的影响,包括技术关键要素:初步研究。

IF 3.8 3区 环境科学与生态学 Q3 ENGINEERING, ENVIRONMENTAL
George Yandem, Katarzyna Grygoyć, Magdalena Jabłońska-Czapla
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引用次数: 0

摘要

对清洁、可再生能源日益增长的需求推动了光伏农场的日益普及。随着太阳能技术的不断进步和成本的降低,大型太阳能发电场对减少碳排放和加强能源安全至关重要。虽然光伏电站提供了一种可持续的能源解决方案,但它们也带来了环境风险。在其使用寿命期间,光伏电池板可能会损坏,潜在地向环境中释放有害物质。此外,来自太阳能装置的雨水径流可能会将污染物带入土壤和水源。减轻这些风险对于确保太阳能的可持续性和对环境负责至关重要。这项工作旨在评估光伏电池板对环境的影响,特别是对波兰最古老的光伏装置之一的土壤的影响,并将其与该地区的其他污染源(如采矿)进行比较。因此,对土壤和水样进行了化学分析、统计分析、污染指标评估和地理空间分析,以确定观测到的元素化学基质的潜在污染源。并对PV材料的化学成分进行了分析。结果表明,In和Sb是中等水平的新兴污染物,可能源于长期使用光伏装置。相比之下,来自采矿和冶炼活动的Cd、Cr、Pb和Zn等元素的环境风险要高得多。这项研究建议在不同的地质背景下进行进一步的类似研究,以得出更广泛的结论。此外,开展试验,评估光伏电池板作为危险废物对土壤和水的影响至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of photovoltaics on soil and water by metal(loid)s including technology critical elements: preliminary study.

The increasing adoption of photovoltaic farms is driven by the growing demand for clean, renewable energy. As advancements in solar technology continue and costs decrease, large-scale solar farms are becoming essential for reducing carbon emissions and enhancing energy security. While PV farms offer a sustainable energy solution, they also pose environmental risks. During their operational lifetime, PV panels can be damaged, potentially releasing hazardous materials into the environment. Additionally, stormwater runoff from solar installations may carry pollutants into soil and water sources. Mitigating these risks is crucial to ensuring that solar energy remains both sustainable and environmentally responsible. This work aims to evaluate PV panels' environmental impact, especially on the soil in one of the oldest PV installations in Poland, comparing it with other sources of pollution in the region, such as mining. Therefore, soil and water samples underwent chemical analysis, statistical analysis, pollution indices assessment, and geospatial analysis to determine potential pollution sources for the observed elemental chemical matrix. Also, the chemical composition of PV material was analyzed. The results indicate that In and Sb are emerging pollutants at moderate levels, potentially originating from long-term use of PV installations. In contrast, elements such as Cd, Cr, Pb, and Zn, which come from mining and smelting activities, present significantly higher environmental risks. This study suggests conducting further similar research across various geological backgrounds to draw broader conclusions. Besides, it is vital to develop experiments that assess the impact of PV panels as hazardous waste materials on soil and water.

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来源期刊
Environmental Geochemistry and Health
Environmental Geochemistry and Health 环境科学-工程:环境
CiteScore
8.00
自引率
4.80%
发文量
279
审稿时长
4.2 months
期刊介绍: Environmental Geochemistry and Health publishes original research papers and review papers across the broad field of environmental geochemistry. Environmental geochemistry and health establishes and explains links between the natural or disturbed chemical composition of the earth’s surface and the health of plants, animals and people. Beneficial elements regulate or promote enzymatic and hormonal activity whereas other elements may be toxic. Bedrock geochemistry controls the composition of soil and hence that of water and vegetation. Environmental issues, such as pollution, arising from the extraction and use of mineral resources, are discussed. The effects of contaminants introduced into the earth’s geochemical systems are examined. Geochemical surveys of soil, water and plants show how major and trace elements are distributed geographically. Associated epidemiological studies reveal the possibility of causal links between the natural or disturbed geochemical environment and disease. Experimental research illuminates the nature or consequences of natural or disturbed geochemical processes. The journal particularly welcomes novel research linking environmental geochemistry and health issues on such topics as: heavy metals (including mercury), persistent organic pollutants (POPs), and mixed chemicals emitted through human activities, such as uncontrolled recycling of electronic-waste; waste recycling; surface-atmospheric interaction processes (natural and anthropogenic emissions, vertical transport, deposition, and physical-chemical interaction) of gases and aerosols; phytoremediation/restoration of contaminated sites; food contamination and safety; environmental effects of medicines; effects and toxicity of mixed pollutants; speciation of heavy metals/metalloids; effects of mining; disturbed geochemistry from human behavior, natural or man-made hazards; particle and nanoparticle toxicology; risk and the vulnerability of populations, etc.
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