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Characterization of landfill leachate molecular composition using ultrahigh resolution mass spectrometry

机译:利用超高分辨率质谱法表征垃圾填埋渗滤液分子组合物

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摘要

Landfill leachate (LL) is a complex wastewater and an important potential source of environmental contamination. LL can contain high concentrations of ammonia, metals, other inorganic species, and dissolved organic carbon; however, bulk composition of dissolved LL organic matter (LLOM) is poorly understood. A better understanding of LLOM composition will inform treatment development and improve LL pollution tracing. In this study, we addressed this need for compositional and treatment information by characterizing LL from an active bioreactor municipal solid waste (MSW) landfill as well as from a closed MSW landfill. Through non-targeted ultrahigh resolution Fourier transform ion cyclotron resonance mass spectrometry (FT-ICR-MS) we were able to assign chemical formulas to thousands of singly charged molecular ions and compare samples to natural dissolved organic matter (DOM). LLOM was differentiated by a higher presence of sulfur-, nitrogen-, and chlorine-, particularly nitrogen-sulfur-, containing formulas. The abundance of chlorine-containing molecular formulas supports the existence of a non-volatile organochlorine component in MSW LL. We performed tandem MS (MS-MS) analyses to tentatively identify the presence of the flame retardant, chlorendic acid, and likely related compounds. Additionally, we measured contaminants of emerging concern (CECs) and other chemical parameters to further characterize LLs and found evidence suggesting a significant percent of Fe may be bound in Fe-organic complexes.
机译:垃圾填埋场渗滤液(LL)是一种复杂的废水和一个重要的环境污染源。 LL可含有高浓度的氨,金属,其他无机物质和溶解的有机碳;然而,溶解的L1有机物质(LLOM)的本体组成较差。更好地了解LLOM组成将为治疗发展提供信息,提高LL污染跟踪。在这项研究中,我们通过从活性生物反应器城市固体废物(MSW)垃圾填埋场以及封闭的MSW垃圾填埋场来解决方案,解决了这种组成和治疗信息。通过非目标超高分辨率傅里叶变换离子回旋谐振质谱(FT-ICR-MS),我们能够将化学公式分配到数千个单电荷的分子离子,并将样品与天然溶解的有机物质(DOM)进行比较。通过硫 - ,氮气和氯,特别是氮硫 - ,含有式的含量较高的较高存在,LLOM分化。含氯的分子式的丰度支持在MSW L1中存在非挥发性有机氯组分。我们进行了串联MS(MS-MS)分析以暂时识别阻燃剂,氯酸和可能相关化合物的存在。另外,我们测量了新兴担忧(CEC)和其他化学参数的污染物,以进一步表征LLS,并发现表明占Fe的显着百分比的证据可以在Fe-有机络合物中结合。

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    Univ Maryland Chesapeake Biol Lab Ctr Environm Sci Solomons MD 20688 USA;

    Univ Florida Dept Environm Engn Sci Gainesville FL 32611 USA;

    Univ Maryland Chesapeake Biol Lab Ctr Environm Sci Solomons MD 20688 USA;

    Univ Maryland Chesapeake Biol Lab Ctr Environm Sci Solomons MD 20688 USA;

    Univ Maryland Chesapeake Biol Lab Ctr Environm Sci Solomons MD 20688 USA;

    Univ Maryland Chesapeake Biol Lab Ctr Environm Sci Solomons MD 20688 USA|Helmholtz Zentrum Munchen Res Unit Analyt BioGeoChem D-85764 Neuherberg Germany|Tech Univ Munich Chair Analyt Food Chem D-85354 Freising Weihenstephan Germany;

    Univ Florida Dept Environm Engn Sci Gainesville FL 32611 USA;

    Univ Florida Dept Environm Engn Sci Gainesville FL 32611 USA;

    Univ Maryland Chesapeake Biol Lab Ctr Environm Sci Solomons MD 20688 USA;

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  • 入库时间 2022-08-19 02:36:02

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