中国安全科学学报

• 安全卫生工程技术 • 上一篇    下一篇

纳米材料对生物体的毒性研究

陈海群,汪冰,王凯全   

  1. 江苏工业学院,环境与安全工程学院,常州 213164
  • 出版日期:2010-01-20 发布日期:2010-01-25

Study on Toxic Effect of Nanomaterials on Organisms

  • Online:2010-01-20 Published:2010-01-25

摘要: 运用Einstein第一扩散公式和沉降公式,半定量、定量地说明纳米粒子沉降速度大约是微米粒子的千万分之一,更易悬浮在大气和溶液中,被生物体通过呼吸系统和循环系统所吸收;运用范德华力引起的相互作用势能公式,半定量地说明纳米粒子比微米粒子更容易吸附和团聚,通过大气中粒子转化、水体及土壤中的迁移传播等途径,由食物链富集到生物体内.可见,纳米粒子要比微米粒子的毒性更加严重,更能影响生物体的健康.同时,从纳米材料毒性影响因素对生物体的作用上看,纳米粒子也是严重影响着生物体的健康,给生物体带来极大的危害,并根据纳米材料的毒性研究结果为今后纳米技术的良性发展提出了新的方向.

Abstract: The calculation based on the first proliferation formula of Einstein and the settlement formula semi-quantitatively and quantitatively indicates that the nano-particles' settling velocity is about one thousandth of micron particles'. This feature makes nano-particle more easily suspend in the atmosphere and solution and be absorbed by organisms through respiratory and circulatory system. Meanwhile, the calculation based on the interaction potential energy formula caused by Vander Waals force semi-quantitatively indicates that nano-particle is easier than micron particle to be adsorbed, aggregated and collected into the body from the food chain through transformation in the atmosphere or migration in water and soil. Therefore, nanoparticle has more serious toxicity and worse effect on organisms than micron particles. Finally, according to the research on the toxicity of nanomaterials, new direction to the virtuous development of nano-technology is proposed.

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