通过将新数据库建设纳入疑似筛选工作流程,破译聚合物降解化学原理

IF 3.9 3区 环境科学与生态学 Q1 CHEMISTRY, ANALYTICAL
Phoebe Keyes, Noor Halimah and Boya Xiong
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引用次数: 0

摘要

水溶性合成聚合物及其环境降解产物是废水中被忽视的重要工业污染物。然而,降解产物的检测仅限于大体积溶液化学,分子水平的分析仍然无法实现。在这项工作中,我们利用液相色谱-高分辨质谱法(LC-HRMS)评估了当前可疑物筛选和非目标物工作流程的可行性,以阐明聚丙烯酰胺(PAM)及其在自由基作用下降解产物的分子水平信息。使用热激活过硫酸盐对 PAM(10 kDa)进行自由基链裂解,以模拟深层地下的水力压裂条件。我们发现,由于对高质和高电荷特征的峰值拾取和公式预测能力有限,目前商业软件中的工作流程生成的预测公式准确度较低。通过模拟文献报道的降解途径,我们构建了一个包含 463,000 多个独特配方的降解产物数据库,从而提高了预测配方的准确性。对于匹配的特征,我们发现在 24 小时的降解过程中,醛/酮终止分子丰度的比率会增加,这表明自由基诱导的 PAM 氧化链断裂会增加醛的含量。这与之前提出的由羟基自由基引发的聚合物骨架上碳中心自由基位置比例相矛盾。通过对 MS1 特征进行硅破碎,我们利用其 MS2 信息确定了 11 个置信度为 2b 和 3 的结构。这是利用 HRMS 解决复杂聚合物降解化学问题的首次尝试,它可以提高我们检测环境样本中水溶性聚合物污染物及其转化产物的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Deciphering polymer degradation chemistry via integrating new database construction into suspect screening analysis†

Deciphering polymer degradation chemistry via integrating new database construction into suspect screening analysis†

Water-soluble synthetic polymers and their environmental degradation products are overlooked but important industrial pollutants in wastewater. However, the detection of degradation products is limited to bulk solution chemistry and molecular-level analysis remains unreachable. In this work, we assessed the feasibility of current suspect screening and nontarget workflow using liquid chromatography-high resolution mass spectrometry (LC-HRMS) to elucidate molecular level information about polyacrylamide (PAM) and its degraded products by free radicals. Radical chain scission of PAM (10 kDa) using heat-activated persulfate was conducted to simulate hydraulic fracturing conditions in the deep subsurface. We found that the current workflows in the commercial software generated predicted formulae with low accuracy, due to limited capability of peak picking and formula prediction for high mass and charge features. By modeling literature-reported degradation pathways, we constructed a degradation product database of over 463 000 unique formulae, which improved the accuracy of the predicted formula. For the matched features, the ratio of aldehyde/ketone terminating molecule abundance was found to increase over 24 h degradation time, suggesting increasing content of aldehydes by radical-induced oxidative chain scission of PAM. This is contradictory to previously proposed ratios of carbon-centered radical position on polymer backbone initiated by hydroxyl radicals. Using in silico fragmentation of MS1 features, we identified 11 structures with confidence levels 2b and 3 using their MS2 information. This is the first attempt to resolve complex polymer degradation chemistry using HRMS that can advance our ability to detect water-soluble polymer pollutants and their transformation products in environmental samples.

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来源期刊
Environmental Science: Processes & Impacts
Environmental Science: Processes & Impacts CHEMISTRY, ANALYTICAL-ENVIRONMENTAL SCIENCES
CiteScore
9.50
自引率
3.60%
发文量
202
审稿时长
1 months
期刊介绍: Environmental Science: Processes & Impacts publishes high quality papers in all areas of the environmental chemical sciences, including chemistry of the air, water, soil and sediment. We welcome studies on the environmental fate and effects of anthropogenic and naturally occurring contaminants, both chemical and microbiological, as well as related natural element cycling processes.
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