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纳米材料综合立法与治理的必要性与方法。

Necessity and approach to integrated nanomaterial legislation and governance.

机构信息

Department of Environmental Toxicology, The Institute of Environmental and Human Health, Texas Tech University, Lubbock, Texas 79416, USA.

出版信息

Sci Total Environ. 2013 Jan 1;442:56-62. doi: 10.1016/j.scitotenv.2012.09.073. Epub 2012 Nov 21.

Abstract

Nanotechnology is one of the most promising technologies to emerge in recent decades. Materials that are specially engineered to have at least one dimension that is no larger than 100 nm are now continuously manufactured and incorporated as critical components of different products that people use daily. While we are taking advantage of nanomaterials (NMs) and nano-products, they may pose a risk to humans and the broader environment. Some types of fibrous NMs such as carbon nanotubes and nano-fibers may present a risk similar to that of asbestos. Some carbon or metal based NMs may threaten the environment due to their bioaccumulative nature within food webs. In order to prevent future adverse effects from products or byproducts of nanotechnology, we suggest an integrated multi-faceted approach which includes an integrated regulation that is based upon life cycle assessment, empirically derived risk assessment. Advanced research that fills the knowledge gap regarding the understanding of NMs in scientific and social norms will be helpful in a full life cycle assessment of NMs. Emphasizing nanotechnology education to the public for an increased understanding and participation associated with media coverage will finally draw governments' attention with an integrated legislation to be instituted. Developing the optimal mix of these tools, including research, public education, media coverage, integrated legislation, will be significant to proactively manage the complexity of nanotechnology and prevent any undesirable effect due to the NMs exposure.

摘要

纳米技术是近几十年来出现的最有前途的技术之一。专门设计的至少一个维度不超过 100nm 的材料现在正在不断制造,并作为人们日常使用的不同产品的关键部件被纳入其中。虽然我们正在利用纳米材料(NMs)和纳米产品,但它们可能对人类和更广泛的环境构成威胁。一些纤维状的纳米材料,如碳纳米管和纳米纤维,可能会带来类似于石棉的风险。一些基于碳或金属的纳米材料可能会因其在食物网中的生物累积性质而威胁环境。为了防止纳米技术的产品或副产品将来产生不利影响,我们建议采取综合的多方面方法,包括基于生命周期评估的综合法规,以及经验性风险评估。在科学和社会规范中对纳米材料的理解方面开展填补知识空白的先进研究,将有助于对纳米材料进行全面的生命周期评估。通过媒体报道,加强对公众的纳米技术教育,提高公众的理解和参与度,最终将引起政府的关注,并制定综合立法。开发这些工具的最佳组合,包括研究、公众教育、媒体报道、综合立法,对于积极管理纳米技术的复杂性和防止由于纳米材料暴露而产生任何不良影响将具有重要意义。

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