Pesticide Residue Research Group, University of Almería, 04120, Almería, Spain.
Environ Sci Pollut Res Int. 2013 Jun;20(6):3496-515. doi: 10.1007/s11356-013-1586-0. Epub 2013 Mar 1.
Since the so-called emerging contaminants were established as a new group of pollutants of environmental concern, a great effort has been devoted to the knowledge of their distribution, fate and effects in the environment. After more than 20 years of work, a significant improvement in knowledge about these contaminants has been achieved, but there is still a large gap of information on the growing number of new potential contaminants that are appearing and especially of their unpredictable transformation products. Although the environmental problem arising from emerging contaminants must be addressed from an interdisciplinary point of view, it is obvious that analytical chemistry plays an important role as the first step of the study, as it allows establishing the presence of chemicals in the environment, estimate their concentration levels, identify sources and determine their degradation pathways. These tasks involve serious difficulties requiring different analytical solutions adjusted to purpose. Thus, the complexity of the matrices requires highly selective analytical methods; the large number and variety of compounds potentially present in the samples demands the application of wide scope methods; the low concentrations at which these contaminants are present in the samples require a high detection sensitivity, and high demands on the confirmation and high structural information are needed for the characterisation of unknowns. New developments on analytical instrumentation have been applied to solve these difficulties. Furthermore and not less important has been the development of new specific software packages intended for data acquisition and, in particular, for post-run analysis. Thus, the use of sophisticated software tools has allowed successful screening analysis, determining several hundreds of analytes, and assisted in the structural elucidation of unknown compounds in a timely manner.
自所谓的新兴污染物被确立为环境关注的新污染物群体以来,人们已经投入了大量精力来了解它们在环境中的分布、归宿和影响。经过 20 多年的工作,人们对这些污染物的认识有了显著提高,但对于越来越多的新潜在污染物及其不可预测的转化产物,仍存在大量信息空白。尽管新兴污染物带来的环境问题必须从跨学科的角度来解决,但分析化学显然起着重要的作用,因为它是研究的第一步,可以确定环境中化学物质的存在,估算其浓度水平,识别来源并确定其降解途径。这些任务涉及到需要不同分析解决方案的严重困难。因此,复杂的基质需要高度选择性的分析方法;样品中可能存在的大量和多种化合物需要应用广泛的方法;这些污染物在样品中的低浓度需要高检测灵敏度,并且需要高结构信息来对未知物进行特征描述。分析仪器的新发展已被应用于解决这些困难。此外,同样重要的是,开发了新的特定软件包,用于数据采集,特别是用于运行后分析。因此,复杂的软件工具的使用允许进行成功的筛选分析,确定数百种分析物,并及时协助未知化合物的结构阐明。