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工程纳米材料在陆地环境中的营养转移、转化和影响。

Trophic transfer, transformation, and impact of engineered nanomaterials in terrestrial environments.

机构信息

Department of Chemistry, The University of Texas at El Paso , 500 W. University Avenue, El Paso Texas 79968, United States.

出版信息

Environ Sci Technol. 2014;48(5):2526-40. doi: 10.1021/es4050665. Epub 2014 Feb 21.

Abstract

Engineered nanomaterials (ENMs) are released into the environment with unknown implications in the food chain. Recent findings demonstrate that ENMs may accumulate and/or increase concentrations of the component metal or carbon nanomaterials in the fruits/grains of agricultural crops, have detrimental or beneficial effects on the agronomic traits, yield, and productivity of plants, induce modifications in the nutritional value of food crops, and transfer within trophic levels. Given this information, important questions needed to be resolved include a determination of actual or predicted concentrations of ENMs through the development of new and perhaps hybridized analytical tools, assessment of the nutritional content modifications and/or accumulation of ENMs, component metal, and cocontaminants in edible plants and their implications on human diet, nutrition, and health, assessment of the consequences of ENM-induced changes in soil health, physiological process, and yield on agricultural production and food security, and transfer of ENMs in trophic levels. Given the significant implications of ENMs exposure and the rather large knowledge gaps that exist, it will be prudent to observe judicious and targeted use of ENMs so as to minimize environmental release until a comprehensive environmental fate and effects assessment can be undertaken.

摘要

工程纳米材料(ENMs)被释放到环境中,其对食物链的影响尚不清楚。最近的研究结果表明,ENMs 可能会在农作物的水果/谷物中积累和/或增加金属或碳纳米材料的浓度,对植物的农艺性状、产量和生产力产生不利或有利的影响,诱导改变粮食作物的营养价值,并在营养级内转移。鉴于这些信息,需要解决的重要问题包括通过开发新的甚至杂交分析工具来确定 ENMs 的实际或预测浓度,评估可食用植物中 ENMs、成分金属和共污染物的营养成分变化和/或积累及其对人类饮食、营养和健康的影响,评估 ENM 诱导的土壤健康、生理过程和产量变化对农业生产和粮食安全的影响,以及 ENMs 在营养级中的转移。鉴于 ENMs 暴露的重大影响以及存在的相当大的知识差距,明智和有针对性地使用 ENMs 将是谨慎的做法,以尽量减少环境释放,直到可以进行全面的环境命运和影响评估。

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