高分辨率质谱法非靶筛选在新污染物鉴定和控制中的应用:对可持续工业发展的影响

Yujue Yang , Cui Li , Lili Yang , Minghui Zheng , Guorui Liu
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引用次数: 2

摘要

工业生产是国家基础设施和经济发展的基础,同时也带来环境污染等相关问题。自1977年在垃圾焚烧排放的烟气和飞灰中检测到二恶英以来,焚烧和冶金等行业对二恶英排放、环境影响以及控制技术和原理的研究已经进行了近50年。然而,对工业释放的新污染物的研究仍然缺乏。尽管对焚烧等工业过程中的新污染物(如六氯丁二烯和多氯化萘)进行了个案研究,但仍缺乏全面的识别和了解。近年来,利用高分辨率质谱技术进行非靶标筛选得到了迅速发展。与色谱法相连的超高分辨率质谱法可以促进对工业活动中无意形成的数十万种污染物的全面识别,从而进一步推动对烟道气或飞灰等固体残留物的工业排放的识别。这项突破性的高分辨率质谱筛选技术有望用于新工业污染物的识别、毒性和风险评估以及排放控制。这种技术在支持可持续工业发展方面很有前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of non-target screening by high-resolution mass spectrometry to identification and control of new contaminants: Implications for sustainable industrial development

Industrial production is the foundation of national infrastructure and economic development, but also brings about environmental pollution as well as other related problems. Since the detection of dioxins in flue gases and fly ash emitted by waste incineration in 1977, research on dioxin emissions, environmental impact, and control technologies and principles—in industries such as incineration and metallurgy—has been ongoing for nearly 50 years. However, research on new pollutants released by industry remains lacking. Although there are case studies on new pollutants (such as hexachlorobutadiene and polychlorinated naphthalenes) from industrial processes such as incineration, comprehensive identification and understanding remains lacking. Non-target screening by high-resolution mass spectrometry has developed rapidly in recent years. The ultra-high resolution of mass spectrometry connected to chromatography could facilitate comprehensive identification of hundreds of thousands of pollutants unintentionally formed during industrial activities, which thus further advance the recognition of industrial emissions by stack gas or solid residues, such as fly ash. The breakthrough screening technique by high resolution mass spectrometry is expected to be used in identification, toxicity and risk assessment, as well as emissions control of new industrial pollutants. Such technology is promising in terms of supporting sustainable industrial development.

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