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Transformation Of Benzalkonium Chloride Under Nitrate Reducing Conditions

机译:硝酸盐还原条件下苯扎氯铵的转化

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摘要

The effect and transformation potential of benzalkonium chlorides (BAC) under nitrate reducing conditions were investigated at concentrations up to 100 mg/L in batch assays using a mixed, mesophilic (35 ℃) methanogenic culture. Glucose was used as the carbon and energy source and the initial nitrate concentration was 70 mg N/L Dissimilatory nitrate reduction to ammonia (DNRA) and to dinitrogen (DNRN) were observed at BAC concentrations up to 25 mg/L. At and above 50 mg BAC/L, DNRA was inhibited and DNRN was incomplete resulting in accumulation of nitrous oxide. Long-term inhibition of methanogenesis and accumulation of volatile fatty acids were observed at and above 50 mg BAC/L. Over 99% of the added BAC was recovered from all cultures except the one amended with 100 mg BAC/L where 37% of the initially added BAC was transformed during the 100 day incubation period. Abiotic and biotic assays performed with 100 mg/L of BAC and 5 mM (in the liquid phase) of either nitrate, nitrite, or nitric oxide demonstrated that BAC transformation was abiotic and followed the modified Hofmann degradation pathway, i.e., bimolecular nucleophilic substitution with nitrite. Alkyl dimethyl amines (tertiary amines) were produced at equamolar levels to BAC transformed, but were not further degraded. This is the first report demonstrating the transformation of BAC under nitrate reducing conditions and elucidating the BAC transformation pathway.
机译:使用混合的,嗜温的(35℃)产甲烷菌进行分批测定,研究了浓度高达100 mg / L的苯扎氯铵(BAC)在硝酸盐还原条件下的作用和转化潜力。葡萄糖被用作碳和能源,硝酸盐的初始浓度为70 mg N / L在最高25 mg / L的BAC浓度下,硝酸盐会还原为氨(DNRA)和二氮(DNRN)。当BAC / L大于等于50 mg / L时,DNRA被抑制,而DNRN不完全,导致一氧化二氮积聚。在50 mg BAC / L或以上时,观察到对甲烷生成和挥发性脂肪酸积累的长期抑制。从所有培养物中回收了超过99%的添加的BAC,但用100 mg BAC / L进行了修改的培养基除外,其中100%BAC / L的最初添加的BAC在100天的培养期内进行了转化。用100 mg / L BAC和5 mM(液相)硝酸盐,亚硝酸盐或一氧化氮进行的非生物和生物测定表明,BAC转化是非生物的,并遵循修饰的Hofmann降解途径,即被双分子亲核取代亚硝酸盐。烷基二甲基胺(叔胺)的生成量与转化为BAC的等摩尔水平相同,但并未进一步降解。这是第一份证明在硝酸盐还原条件下BAC转化并阐明BAC转化途径的报告。

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  • 来源
    《Environmental Science & Technology》 |2009年第5期|1342-1348|共7页
  • 作者单位

    School of Civil and Environmental Engineering, Georgia Institute of Technology, Atlanta Georgia 30332-0512;

  • 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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  • 入库时间 2022-08-17 14:04:21

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