Lewis Amanda, Kazantzis Nikolaos, Fishtik Ilie, Wilcox Jennifer
Department of Chemical Engineering, Worcester Polytechnic Institute, Worcester, MA 01609-2280, USA.
J Hazard Mater. 2007 Apr 11;142(3):592-602. doi: 10.1016/j.jhazmat.2006.06.089. Epub 2006 Jun 28.
Registration, evaluation and authorization of chemicals (REACH) represents a recent regulatory initiative by the European union commission to protect human health and the environment from potentially hazardous chemicals. Under REACH, all stakeholders must submit (thermo)physical, thermochemical, and toxicological data for certain chemicals. The commission's impact assessment studies estimate that the costs of REACH will be approximately 3-5 billion Euros. The present study advocates the systematic incorporation of computational chemistry and computer-assisted chemical risk assessment methods into REACH to reduce regulatory compliance costs. Currently powerful computer-aided ab initio techniques can be used to generate predictions of key properties of broad classes of chemicals, without resorting to costly experimentation and potentially hazardous testing. These data could be integrated into a centralized IT decision and compliance support system, and stored in a retrievable, easily communicable manner should new regulatory and/or production requirements necessitate the introduction of different uses of chemicals under different conditions. For illustration purposes, ab initio calculations are performed on heterocyclic nitrogen-containing compounds which currently serve as high energy density materials in the chemical industry. Since investigations of these compounds are still in their infancy, stability studies are imperative regarding their safe handling and storage, as well as registration under REACH.
化学品注册、评估、授权和限制(REACH)是欧盟委员会最近发起的一项监管举措,旨在保护人类健康和环境免受潜在危险化学品的影响。根据REACH法规,所有利益相关者必须提交某些化学品的(热)物理、热化学和毒理学数据。委员会的影响评估研究估计,REACH的成本约为30亿至50亿欧元。本研究主张将计算化学和计算机辅助化学风险评估方法系统地纳入REACH,以降低监管合规成本。目前,强大的计算机辅助从头算技术可用于生成各类化学品关键特性的预测,而无需进行昂贵的实验和潜在危险的测试。这些数据可以集成到一个集中的信息技术决策和合规支持系统中,并以可检索、易于交流的方式存储,以便在新的监管和/或生产要求需要在不同条件下引入化学品的不同用途时使用。为了说明这一点,对目前在化学工业中用作高能量密度材料的含氮杂环化合物进行了从头算计算。由于对这些化合物的研究仍处于起步阶段,因此必须对其安全处理和储存以及根据REACH法规进行注册进行稳定性研究。