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采用 XAS、DFT 和 LDI-MS 对 Mg/Cu 双金属处理的 2,4-二硝基苯甲醚(DNAN)及其中间产物的降解和归宿进行表面考察。

Degradation and fate of 2,4-dinitroanisole (DNAN) and its intermediates treated with Mg/Cu bimetal: Surface examination with XAS, DFT, and LDI-MS.

机构信息

Center for Environmental Systems, Stevens Institute of Technology, Hoboken, NJ 07030, USA.

School of Engineering and Technology, University of Washington Tacoma, Tacoma, WA 98402, USA.

出版信息

J Environ Sci (China). 2023 Jul;129:161-173. doi: 10.1016/j.jes.2022.09.007. Epub 2022 Sep 15.

Abstract

A novel Mg-based bimetal reagent (Mg/Cu) was used as an enhanced reductive system to degrade insensitive munition 2,4-dinitroanisole (DNAN), a contaminant found in energetic-laden waste. Degradation of DNAN was significantly impacted by dissolved oxygen and studied in anoxic and oxic bimetal systems (i.e., purging with N, air, or O gas). Degradation occurred through sequential nitroreduction: first one nitro group was reduced (ortho or para) to form short-lived intermediates 2-amino-4-nitroanisole or 4-amino-2-nitroanisole (2-ANAN or 4-ANAN), and then subsequent reduction of the other nitro group formed 2,4-diaminoanisole (DAAN). The nitro-amino intermediates demonstrated regioselective reduction in the ortho position to 2-ANAN; Regioselectivity was also impacted by the anoxic/oxic environment. Under O-purging DNAN degradation rate was slightly enhanced, but most notably O significantly accelerated DAAN generation. DAAN also further degraded only in the oxygenated Mg/Cu system. Adsorption of DNAN byproducts to the reagent occurred regardless of anoxic/oxic condition, resulting in a partition of carbon mass between the adsorbed phase (27%-35%) and dissolved phase (59%-72%). Additional surface techniques were applied to investigate contaminant interaction with Cu. Density functional theory (DFT) calculations identified preferential adsorption structures for DNAN on Cu with binding through two O atoms of one or both nitro groups. X-ray absorption spectroscopy (XAS) measurements determined the oxidation state of catalytic metal Cu and formation of a Cu-O-N bond during treatment. Laser desorption ionization mass spectrometry (LDI-MS) measurements also identified intermediate 2-ANAN adsorbed to the bimetal surface.

摘要

一种新型的镁基双金属试剂(Mg/Cu)被用作增强的还原体系,以降解在含能废物中发现的钝感弹药 2,4-二硝基苯甲醚(DNAN)污染物。DNAN 的降解受溶解氧的显著影响,并在缺氧和需氧双金属体系中进行了研究(即,用 N、空气或 O 气体吹扫)。降解通过顺序硝基还原发生:首先一个硝基被还原(邻位或对位)形成短寿命中间体 2-氨基-4-硝基苯甲醚或 4-氨基-2-硝基苯甲醚(2-ANAN 或 4-ANAN),然后另一个硝基的还原形成 2,4-二氨基苯甲醚(DAAN)。硝基-氨基中间体表现出邻位的区域选择性还原为 2-ANAN;区域选择性也受到缺氧/需氧环境的影响。在 O 吹扫下,DNAN 的降解速率略有提高,但值得注意的是,O 显著加速了 DAAN 的生成。DAAN 也仅在充氧的 Mg/Cu 体系中进一步降解。DNAN 副产物的吸附与双金属试剂有关,无论缺氧/需氧条件如何,都会导致碳质量在吸附相(27%-35%)和溶解相(59%-72%)之间分配。还应用了其他表面技术来研究污染物与 Cu 的相互作用。密度泛函理论(DFT)计算确定了 DNAN 在 Cu 上的优先吸附结构,通过一个或两个硝基的两个 O 原子与 Cu 结合。X 射线吸收光谱(XAS)测量确定了催化金属 Cu 的氧化态和在处理过程中形成的 Cu-O-N 键。激光解吸电离质谱(LDI-MS)测量还确定了吸附在双金属表面的中间体 2-ANAN。

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