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TOXICITY AND RESOURCE DEPLETION POTENTIALS OF LIGHT-EMITTING DIODES (LEDS)

机译:发光二极管(LED)的毒性和资源耗尽电位

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Light-emitting diodes (LEDs) are regarded as environmentally friendly light sources due to their high energy efficiency and lack of mercury content. LEDs are used for a variety of domestic and commercial lighting systems, where they are replacing incandescent and fluorescent lamps at a rapid rate. Incandescent lamps inefficiently consume energy because electricity is mostly converted to heat rather than light. This causes unnecessary environmental impacts and energy consumption associated with power generation and transmission from a life cycle perspective. Although fluorescent lamps are more energy-efficient than incandescent lamps, their disposal at end-of-life presents special challenges because of the presence of toxic mercury. Despite the seemingly apparent advantages of LED, very few studies have rigorously addressed potential environmental consequences of their disposal. Specifically, LEDs are designed with III-V semiconductors that presumably consist of toxic and rare materials, including arsenic, gallium, and indium. We hypothesize that, depending on their concentrations and leachability, these constituents may also contribute to render LEDs as hazardous waste at the end of their useful life.
机译:由于其高能量效率和缺乏汞含量,发光二极管(LED)被视为环保光源。 LED用于各种国内和商业照明系统,在那里它们以快速的速率更换白炽灯和荧光灯。白炽灯效率低下消耗能量,因为电力大多数转换为热而不是光。这导致与生命周期的发电和传输相关的不必要的环境影响和能量消耗。虽然荧光灯比白炽灯更节能,但由于有毒汞的存在,它们在寿命结束时的使用呈现出特殊挑战。尽管LED看似明显明显的优势,但很少有研究严格解决了他们所处理的潜在环境后果。具体地,LED设计有III-V半导体,其可能由毒性和稀有材料组成,包括砷,镓和铟。我们假设,取决于它们的浓度和透明性,这些成分也可能有助于使LED在其使用寿命结束时作为危险废物。

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