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Quaternary Amines As Nitrosamine Precursors: A Role for Consumer Products?

机译:季胺作为亚硝胺的前体:消费产品的作用?

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摘要

Nitrosamine formation has been associated with wastewater-impacted waters, but specific precursors within wastewater effluents have not been identified. Experiments indicated that nitrosamines form in low yields from quaternary amines, and that the nitrosamines form from the quaternary amines themselves, not just lower order amine impurities. Polymeric and benzylated quaternary amines were more potent precursors than monomeric quaternary alkylamines. Pretreatment of quaternary amines with ozone or free chlorine, which deactivate lower order amine impurities, did not significantly reduce nitrosamine formation. The nitrosamine formation pathway is unclear but experiments indicated that transformation of quaternary amines to lower order amine precursors via Hofmann elimination was not involved. Experiments suggest that the pathway may involve quaternary amine degradation by amidogen or chloramino radicals formed from chloramines. Quaternary amines are significant constituents of consumer products, including shampoos, detergents, and fabric softeners. Although quaternary amines may be removed by sedimentation during wastewater treatment their importance should be evaluated on a case-by-case basis. The high loadings from consumer products may enable the portion not removed to serve as precursors.
机译:亚硝胺的形成与废水影响的水有关,但尚未确定废水中的特定前体。实验表明,亚硝胺由季胺形成的收率低,而亚硝胺由季胺本身形成,而不仅仅是低级胺杂质。聚合的和苄基的季胺比单体的季烷基胺更有效。用臭氧或游离氯预处理季胺会降低低级胺杂质的活性,但不会显着减少亚硝胺的形成。亚硝胺的形成途径尚不清楚,但实验表明,通过霍夫曼消除,季胺转化为低级胺前体的过程并不涉及。实验表明,该途径可能涉及由胺原或由氯胺形成的氯氨基自由基降解季胺。季胺是消费产品的重要组成部分,包括洗发剂,洗涤剂和织物柔软剂。尽管在废水处理过程中可能会通过沉淀除去季胺,但应根据具体情况评估其重要性。来自消费品的高负载可以使未被去除的部分用作前体。

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  • 来源
    《Environmental Science & Technology》 |2010年第4期|1224-1231|共8页
  • 作者单位

    Department of Chemical Engineering, Yale University, Mason Lab 313b, 9 Hillhouse Avenue, New Haven, Connecticut 06520;

    Department of Chemical Engineering, Yale University, Mason Lab 313b, 9 Hillhouse Avenue, New Haven, Connecticut 06520;

    Department of Chemical Engineering, Yale University, Mason Lab 313b, 9 Hillhouse Avenue, New Haven, Connecticut 06520;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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