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Covalent bonding of aromatic amine daughter products of 2,4-dinitroanisole (DNAN) with model quinone compounds representing humus via nucleophilic addition

机译:通过亲核添加剂的2,4-二硝基吲哚(DNAN)的芳族胺基产物的共价键合2,4-二硝基吲哚(DNAN),通过亲核加成代表腐殖质的模型醌化合物

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2,4-Dinitroanisole (DNAN) is a component of insensitive munitions (IM), which are replacing traditional explosives due to their improved safety. Incomplete IM combustion releases DNAN onto the soil, where it can leach into the subsurface with rainwater, encounter anoxic conditions, and undergo (a)biotic reduction to aromatic amines 2-methoxy-5-nitroaniline (MENA), 4-methoxy-3-nitroaniline (iMENA, isomer of MENA), and 2,4-diaminoanisole (DAAN). We report here studies of nucleophilic addition mechanisms that may account for the sequestration of aromatic amine daughter products of DNAN into soil organic matter (humus), effectively removing these toxic compounds from the aqueous environment. Because quinones are important moieties in humus, we incubated MENA, iMENA, DAAN, and related analogs with model compounds 1,4-benzoquinone and 2,3-dimethyl-1,4-benzoquinone under anoxic conditions. Mass spectrometry and ultra-high performance liquid chromatography revealed that the aromatic amines had covalently bonded to either carbonyl carbons or ring carbons beta to carbonyl carbons of the quinones, producing a mixture of imines and Michael adducts, respectively. These products formed rapidly and accumulated in the one-to four-day incubations. Nucleophilic addition reactions, which do not require catalysis or oxic conditions, are proposed as a mechanism resulting in the binding of DNAN to soil observed in previous studies. To remediate sites contaminated with DNAN or other nitroaromatics, reducing conditions and humus amendments may promote their immobilization into the soil matrix. (C) 2020 Elsevier Ltd. All rights reserved.
机译:2,4-二硝基唑(DNAN)是由于其提高安全而取代了传统爆炸物的不敏感弹药(IM)的组成部分。 IM燃烧将DNAN释放到土壤上,可以用雨水,遇到缺氧条件浸出到地下,并经过(a)生物还原到芳族胺2-甲氧基-5-硝基苯胺(MENA),4-甲氧基-3- Nitroaniline(IMENA,MENA的异构体)和2,4-氨基烷吲哚(Daan)。我们在这里报告了可以考虑DNAN芳族胺女分代产物(腐殖质)的芳香族胺类产物的螯合,有效地从水性环境中除去这些毒性化合物的亲核添加机制的研究。因为Quinones是腐殖质中的重要部分,我们在缺氧条件下用模型化合物1,4-苯醌和2,3-二甲基-1,4-苯醌孵育Mena,Imena,Daan和相关类似物。质谱和超高效液相色谱显示,芳族胺与醌的羰基碳或环碳粘蛋白与醌的羰基碳共价键合,产生亚胺和迈克尔加合物的混合物。这些产品在一对四天的孵育中迅速和积累。拟合不需要催化或氧体条件的亲核添加反应作为在先前研究中观察到的DNAN与土壤结合的机制。为了修复含有DNAN或其他硝基甲虫的污染的部位,降低条件和腐殖质修正可以促进其固定到土壤基质中。 (c)2020 elestvier有限公司保留所有权利。

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