驾驭环境问题:评估光伏发电的生态足迹

Halina Falfushynska
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引用次数: 0

摘要

欧盟的 "绿色交易 "概念优先考虑安装光伏和风力涡轮机系统,目的是大幅减少温室气体排放和扩大可再生能源的使用。在光伏电池板中加入镉、铅、镍和砷等金属/卤化物可能会引起人们的关注,因为它们可能会对环境造成许多负面影响,尤其是在退役之后。虽然太阳能电池板释放的铅和镉一般较少,但这些释放量可能会增加,造成长期危害。镉和铅如果只是从太阳能电池板中释放出来,就会进入包括土壤和水在内的环境中,对人类健康和生态系统构成重大风险。尤其是镉,会对动物和人类产生深远而持久的负面影响,影响细胞反应、酶的运行和免疫系统的功能。而接触铅则会诱发氧化应激和神经中毒,破坏离子调节途径,损害免疫功能。尽管人们努力减少光伏电池板中有毒金属的释放,但控制其处置和避免环境污染仍是一项挑战。发现光伏电池板制造的替代材料、实施强化的回收程序、进行生物修复以及实施更严格的限制措施,都是减轻环境问题的策略之一。
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Navigating Environmental Concerns: Assessing the Ecological Footprint of Photovoltaic-Produced Energy
The European Union’s Green Deal concept prioritizes the installation of photovoltaic and wind turbine systems, with the aim of significantly reducing greenhouse gas emissions and expanding the use of renewable energy. The inclusion of metals/metaloids such as Cd, Pb, Ni, and As to PV panels may be a matter of concern because they may provoke numerous negative environmental effects, especially after decommissioning. Although the release of Pb and Cd from solar panels is generally low, these releases may increase, posing long-term harm. Cd and Pb, if only released from solar panels, can enter the environment, including soil and water, posing a significant risk to human health and ecosystems. Cd, in particular, can have profound and lasting negative impacts on animals and humans, affecting cellular responses, enzyme operations, and immune system functionality. Pb exposure, in turn, can induce oxidative stress and neurotoxicity, disrupt ion regulatory pathways, and impair immune function. Despite efforts to reduce the release of toxic metals from PV panels, controlling their disposal and avoiding environmental contamination remains challenging. Discovering substitute materials for PV panel manufacture, implementing enhanced recycling procedures, performing bioremediation, and enforcing stronger restrictions are among the strategies to mitigate environmental concerns.
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