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Formation of haloacetic acids and N-nitrosodimethylamine via the chlorination of carbon nanotubes

机译:通过碳纳米管的氯化形成卤乙酸和N-硝基甲酰亚胺甲胺

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摘要

Recent investigations have shown that engineered nanomaterials such as carbon nanotubes (CNTs) are a source and precursor for disinfection byproduct (DBP) formation. The aim of this study was to extend previous research of CNTs by investigating the potential for other classes of CNTs to generate disinfection byproducts (DBP) during chlorination. We examined particular types of CNTs with surface groups analogous to suspected model precursors for DBP formation.Specifically, we conducted experiments to determine the formation of haloacetic acids (HAAs) and N-nitrosodimethylamine (NDMA) via the chlorination of carbon nanotubes.Polymer coated CNTs generated the greatest total HAA concentration of up to 170 μg-HAA/mg-CNT. Results showed that the presence of surface oxide groups (e.g. surface carboxylic acid groups) promotes HAA formation. We observed a reasonably strong correlation between the extent of HAA formation and the concentration of surface oxygen on the CNT surface. Results also showed that CNTs behave similar to model precursors for di- and trichloroacetic acid formation (DCAA and TCAA, respectively).Nitrogen containing CNTs have been shown as source of N-nitrosodimethylamine (NDMA). Surprisingly, CS PEG, which does not contain N, produces NDMA when reacted with ethylenediamine (EDA). Ultimately, EDA is contributing N to CS PEG by sorbing to the CNT surface, which is the likely source of N for NDMA formation. At lower EDA concentrations, NDMA production is limited by available EDA. Conversely, at higher EDA concentrations, NDMA production is limited by available chlorine that is in competition with EDA and the CNT surface.
机译:最近的研究已经表明,工程纳米材料如碳纳米管(CNT)是用于消毒副产物(DBP)形成源和前体。这项研究的目的是通过调查对氯化过程中其他类碳纳米管与产生消毒副产物(DBP)的潜力,延长碳纳米管的前期研究。我们检查了特定类型的CNT与表面基团类似于疑似模型前体DBP formation.Specifically,我们进行了实验经由碳nanotubes.Polymer涂敷CNT的氯化,以确定的卤乙酸(杂环胺)和N-亚硝基二甲胺(NDMA)的形成产生高达170微克-HAA /毫克-CNT的最大总HAA浓度。结果表明,表面氧化物基团的存在(例如,表面羧酸基团)促进HAA形成。我们观察到的HAA形成的程度和表面氧的CNT表面上的浓度之间的合理的强相关性。结果还表明,碳纳米管表现类似于二 - 和三氯乙酸形成(分别DCAA和TCAA).Nitrogen含有CNT的已示出如N-亚硝基二甲胺(NDMA)的源模型的前体。令人惊讶地,CS PEG,其不含有N,当与乙二胺(EDA)反应产生NDMA。最终,EDA是由吸附在CNT表面上,这是N为NDMA形成可能有助于源N到CS PEG。在较低浓度的EDA,NDMA的生产是通过提供EDA限制。相反,在较高浓度的EDA,NDMA的产生通过有效氯,其与EDA和CNT表面的竞争限制。

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    Kyle Jeffery Nelson;

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