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A combined experimental and density functional theory study of metformin oxy-cracking for pharmaceutical wastewater treatment

机译:二甲双胍氧裂解处理制药废水的实验与密度泛函理论研究

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摘要

Pharmaceutical compounds are emerging contaminants that have been detected in surface water across the world. Because conventional wastewater treatment plants are not designed to treat such pollutants, new technologies are needed to degrade and oxidize such contaminants. The newly developed oxy-cracking process was utilized to treat the antidiabetic drug, metformin. The process, which involved partial oxidation of metformin in alkaline aqueous medium, proved to decompose the drug into small organic molecules, with minimum emission of CO _(2) , therefore, increasing its biodegradability and removal from industrial treatment plants. The reaction gaseous products were probed by online gas chromatography. The liquid phase before and after oxy-cracking was analyzed for total carbon content by TOC and gas chromatography mass spectrometry. The products formed from the nitrogen-rich drug included ammonia, amines, amidines, and urea derivatives. A reaction mechanism for the oxy-cracking process is proposed. Because the hydroxyl radical (˙OH) is believed to play a central role in the oxy-cracking process, the mechanism is initiated by ˙OH attacks on metformin, followed by single decomposition or isomerization steps into stable products. The reactions were investigated using density functional theory calculations and validated using high quality 2 ~(nd) order M?ller–Plesset perturbation theory energy calculations.
机译:药物化合物是新兴污染物,已经在全世界的地表水中检测到。由于传统的废水处理厂并非设计用于处理此类污染物,因此需要新技术来降解和氧化此类污染物。新开发的氧裂解工艺被用于治疗抗糖尿病药物二甲双胍。该过程涉及在碱性水介质中对二甲双胍进行部分氧化,被证明可将药物分解成小的有机分子,并减少了CO _(2)的排放,因此提高了其生物降解性并从工业处理厂中去除。通过在线气相色谱探测反应气态产物。通过TOC和气相色谱质谱法分析了氧裂之前和之后的液相的总碳含量。由富氮药物形成的产物包括氨,胺,am和尿素衍生物。提出了氧裂化反应的反应机理。因为羟基自由基(radicalOH)被认为在氧裂化过程中起着关键作用,所以该机理是由˙OH攻击二甲双胍引发的,然后是单个分解或异构化步骤,形成稳定的产物。使用密度泛函理论计算对反应进行了研究,并使用高质量的2阶M?ller–Plesset摄动理论能量计算进行了验证。

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