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Investigation of the environmental implications of the CNT switch through its life cycle.

机译:研究碳纳米管开关在其整个生命周期中对环境的影响。

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摘要

Carbon nanotubes (CNTs) are unique allotropes of carbon that have high tensile strength, a high Young's modulus, good thermal conductivity, and depending on the CNT chirality can be metallic or semiconducting. These mechanical, thermal, and electrical properties make CNTs an attractive element in electronic applications such as conductive films, photovoltaics, non-volatile memory devices, batteries, sensors, and displays. Although commercialization of CNT-enabled products is increasing, there remains a significant lack of information regarding the health effects and environmental impacts of CNTs. Some studies have even shown that the behavior, toxicity, and persistence of CNTs may differ from bulk heterogeneous carbon. Given these uncertainties, it is prudent to assess the environmental attributes of CNT products and processes now to discover and potentially prevent adverse effects.;This study investigates the environmental implications of a non-volatile bi-stable electromechanical CNT switch through its life cycle. Life cycle assessment (LCA) methodology is used to track the environmental impacts of the CNT switch through its fabrication and expected use and end-of-life (EOL) stages. Process parameters, energy consumption, input materials, output emissions, and yield efficiencies are determined for the laboratory and full-scale manufacture environments. The Ecoinvent(TM) inventory database and Eco-indicator 1999(TM) method are utilized for the impact assessment. Results for the fabrication stage are reported for highest contributions to environmental impact such as airborne inorganics, land use, and fossil fuels due to Au refining processes and electricity consumption.;Extension of the LCA scope is evaluated for the potential replacement of CNT switches to current field-effect transistors (FETs) in flash memory for a cellular phone application. First-order predictions are made for the functionality and performance of the CNT switch during the use stage through an environmental perspective. Existing cellular phone EOL management options including recycling and direct disposal to landfill and incineration are evaluated for potential limitations, concerns, and environmental releases that may occur from the assimilation of CNT switch-enabled phones into the waste stream. In this manner, potential environmental effects of the CNT switch throughout its life cycle stages can be addressed alongside its technological development to ensure safe, sustainable, and successful CNT products.
机译:碳纳米管(CNT)是碳的独特同素异形体,具有高拉伸强度,高杨氏模量,良好的导热性,并且取决于CNT的手性可以是金属或半导体。这些机械,热和电性能使CNT在电子应用中成为有吸引力的元素,例如导电膜,光伏,非易失性存储设备,电池,传感器和显示器。尽管启用CNT的产品的商业化正在增长,但是仍然严重缺乏有关CNT的健康影响和环境影响的信息。一些研究甚至表明,CNT的行为,毒性和持久性可能与块状异质碳不同。考虑到这些不确定性,现在谨慎地评估CNT产品和工艺的环境属性,以发现并潜在地防止不良影响。本研究调查了非易失性双稳态机电CNT开关在其整个生命周期中的环境影响。生命周期评估(LCA)方法用于跟踪CNT开关的制造,预期使用和报废(EOL)阶段对环境的影响。确定实验室和全面生产环境的工艺参数,能耗,输入材料,输出排放量和良率。 Ecoinvent™库存数据库和Eco-indicator 1999™方法用于影响评估。据报道,制造阶段的结果是对环境影响的最大贡献,例如金精炼工艺和电力消耗对空气中的无机物,土地使用和化石燃料的影响。评估了LCA范围的扩展,以发现将CNT开关替换为当前的可能性蜂窝电话中闪存中的场效应晶体管(FET)。从环境角度出发,在使用阶段对CNT开关的功能和性能进行了一阶预测。对现有的蜂窝电话EOL管理选项(包括回收,直接处置到垃圾填埋场和焚化炉)进行了评估,以评估潜在的局限性,担忧以及将启用CNT开关的电话吸收到废物流中可能导致的环境释放。通过这种方式,可以解决碳纳米管开关在其整个生命周期阶段可能对环境造成的影响,同时还可以解决其技术发展问题,以确保安全,可持续和成功的碳纳米管产品。

著录项

  • 作者

    Dahlben, Lindsay Johanna.;

  • 作者单位

    Northeastern University.;

  • 授予单位 Northeastern University.;
  • 学科 Nanotechnology.;Engineering Environmental.
  • 学位 M.S.
  • 年度 2010
  • 页码 115 p.
  • 总页数 115
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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