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Novel Analytical Methodologies for the Monitoring of Traditional and Non-traditional Pollutants in different Environmental Compartments of South Florida

机译:用于监测南佛罗里达州不同环境舱内传统和非传统污染物的新型分析方法

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摘要

Routine monitoring of environmental pollution demands simplicity and speed without sacrificing sensitivity or accuracy. The development and application of sensitive, fast and easy to implement analytical methodologies for detecting emerging and traditional water and airborne contaminants in South Florida is presented. A novel method was developed for quantification of the herbicide glyphosate based on lyophilization followed by derivatization and simultaneous detection by fluorescence and mass spectrometry. Samples were analyzed from water canals that will hydrate estuarine wetlands of Biscayne National Park, detecting inputs of glyphosate from both aquatic usage and agricultural runoff from farms. A second study describes a set of fast, automated LC-MS/MS protocols for the analysis of dioctyl sulfosuccinate (DOSS) and 2-butoxyethanol, two components of Corexit®. Around 1.8 million gallons of those dispersant formulations were used in the response efforts for the Gulf of Mexico oil spill in 2010. The methods presented here allow the trace-level detection of these compounds in seawater, crude oil and commercial dispersants formulations.In addition, two methodologies were developed for the analysis of well-known pollutants, namely Polycyclic Aromatic Hydrocarbons (PAHs) and airborne particulate matter (APM). PAHs are ubiquitous environmental contaminants and some are potent carcinogens. Traditional GC-MS analysis is labor-intensive and consumes large amounts of toxic solvents. My study provides an alternative automated SPE-LC-APPI-MS/MS analysis with minimal sample preparation and a lower solvent consumption. The system can inject, extract, clean, separate and detect 28 PAHs and 15 families of alkylated PAHs in 28 minutes. The methodology was tested with environmental samples from Miami. Airborne Particulate Matter is a mixture of particles of chemical and biological origin. Assessment of its elemental composition is critical for the protection of sensitive ecosystems and public health. The APM collected from Port Everglades between 2005 and 2010 was analyzed by ICP-MS after acid digestion of filters. The most abundant elements were Fe and Al, followed by Cu, V and Zn. Enrichment factors show that hazardous elements (Cd, Pb, As, Co, Ni and Cr) are introduced by anthropogenic activities. Data suggest that the major sources of APM were an electricity plant, road dust, industrial emissions and marine vessels.
机译:对环境污染的常规监测要求简单且快速,而又不牺牲灵敏度或准确性。介绍了开发,应用灵敏,快速且易于实施的分析方法来检测南佛罗里达州新兴和传统的水和空气污染物的方法。开发了一种基于冻干,衍生化并同时通过荧光和质谱检测同时定量除草剂草甘膦的新方法。分析了将为比斯坎湾国家公园的河口湿地增水的水渠中的样本,检测了水生植物和农场农业径流中的草甘膦投入。第二项研究描述了一套快速,自动化的LC-MS / MS规程,用于分析Corexit®的两个成分的磺基琥珀酸二辛酯(DOSS)和2-丁氧基乙醇。这些分散剂配方中约有180万加仑用于2010年墨西哥湾漏油事件的响应工作。此处介绍的方法可对海水,原油和市售分散剂配方中的这些化合物进行痕量检测。开发了两种用于分析著名污染物的方法,即多环芳烃(PAH)和空气传播的颗粒物(APM)。多环芳烃是普遍存在的环境污染物,有些是强致癌物。传统的GC-MS分析需要大量劳动,并且会消耗大量有毒溶剂。我的研究提供了另一种自动化的SPE-LC-APPI-MS / MS分析,其样品制备量最少,溶剂消耗较低。该系统可在28分钟内注入,提取,清洁,分离和检测28个PAH和15个烷基化PAH。该方法用迈阿密的环境样品进行了测试。空气中的颗粒物是化学和生物来源的颗粒的混合物。对其元素组成的评估对于保护敏感的生态系统和公共健康至关重要。过滤器经酸消化后,通过ICP-MS分析了从2005年至2010年从埃弗格莱兹港收集的APM。最丰富的元素是铁和铝,其次是铜,钒和锌。富集因子表明,人为活动会引入有害元素(镉,铅,砷,钴,镍和铬)。数据表明,APM的主要来源是发电厂,道路扬尘,工业排放物和船舶。

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    Ramirez Cesar E.;

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  • 年度 2013
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