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PAH sources and depositional history in sediments from the Lower Hudson River Basin.

机译:下哈德逊河流域沉积物中的PAH来源和沉积历史。

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摘要

Dated cores and surface sediment samples collected from the Lower Hudson River Basin were analyzed to evaluate the sensitivities and limitations of various polycyclic aromatic hydrocarbons (PAH) source indicators. Results have shown that two molecular ratios, Ring456/TPAH [fraction of PAH with 4, 5 and 6 rings] and Par/(Par+Alkyl) [fraction of PAH with no side chains], are sensitive indicators that may be used to differentiate petrogenic (e.g. petroleum spills) and pyrogenic (e.g. combustion of petroleum, coal, and wood) sources. Specific pyrogenic sources can be identified by isomer ratios of Fl/(Fl+Py) and 1,7/2,6-DMP. Emissions of softwood combustion typically have high ratios (>5) of 1,7/2,6-DMP and Ret/Chy than other sources (2). U/R ratio [ratio of chromatographically unresolved to chromatographically resolved peaks] is responsive to petroleum usage including petroleum spills and petroleum combustion. The isomer ratios of A/(Pa+A), BaA/(BaA+Chy), and IP/(IP+Bghi) show no correlation with the source-sensitive ratios including delta 13C, possibly reflecting differences in environmental behavior between their constituent compounds and/or less definitive source signatures.; An over 100 year historical record of energy usage in New York City has been reconstructed from the combined application of PAH indicators in one core from Central Park Lake. The reconstructed history is consistent with data provided by the US Department of Energy. Wood combustion was dominant one century ago in Manhattan, followed by coal combustion dominance from the 1900s to the 1940s. Petroleum combustion (mainly motor vehicles in Manhattan) increased gradually from the 1920s, and became the dominant PAH input after 1940s. In most samples collected from elsewhere in the lower Hudson River Basin, petroleum combustion was the dominant PAH input in the last half century. Petroleum spills were considerable sources of PAHs in some harbor samples (e.g. Jamaica Bay and the Passaic River) from the 1960s to the 1980s, and they were the dominant sources in the Arthur Kill during most of the last century. In Newark Bay, coal combustion was a major input in ∼1930, but decreased gradually in the next two decades and remained minor after that. Coal combustion became important in the past several decades in some areas in the mainstem Hudson, presumably due to a major fuel shift from oil to coal in some electricity generating stations along the river. Natural diagenetic sources of PAHs were insignificant in urban waters, but were found to dominate in historical sections of cores from more rural areas of the Hudson Basin.
机译:分析了从下哈德逊河流域采集的陈旧岩心和地表沉积物样本,以评估各种多环芳烃(PAH)源指标的敏感性和局限性。结果表明,Ring456 / TPAH [带有4、5和6个环的PAH的分数]和Par /(Par +烷基)[没有侧链的PAH的分数]这两个分子比是可以用来区分的分子指示剂。生源(例如石油泄漏)和热源(例如石油,煤炭和木材的燃烧)来源。可以通过F1 /(F1 + Py)和1,7 / 2,6-DMP的异构体比率来鉴定特定的热源。与其他来源(<2)相比,软木燃烧的排放物通常具有较高的比率(> 5)1、7 / 2,6-DMP和Ret / Chy。 U / R比[未色谱分离的色谱峰与色谱分离的色谱峰之比]对包括石油泄漏和石油燃烧在内的石油使用有响应。 A /(Pa + A),BaA /(BaA + Chy)和IP /(IP + Bghi)的异构体比率与包括13C的源敏感比率不相关,可能反映了它们之间的环境行为差异化合物和/或不太明确的来源签名。通过将PAH指标联合应用到Central Park Lake的一个核心中,重建了纽约市超过100年的能源使用历史记录。重建的历史与美国能源部提供的数据一致。木材燃烧在一个世纪前在曼哈顿占主导地位,随后在1900年代至1940年代占煤炭燃烧的主导地位。石油燃烧(主要是曼哈顿的汽车)从1920年代开始逐渐增加,并在1940年代成为主要的PAH输入。在哈德逊河下游地区其他地方收集的大多数样本中,石油燃烧是近半个世纪来主要的PAH输入。从1960年代到1980年代,石油泄漏是某些港口样本(例如,牙买加湾和Passaic河)中多环芳烃的重要来源,它们是上世纪大部分时间在亚瑟·哈尔的主要来源。在纽瓦克湾,煤燃烧是1930年前的主要投入,但在随后的20年中逐渐减少,此后仍然很小。在过去的几十年中,哈德逊干区的某些地区的煤炭燃烧变得非常重要,这大概是由于沿河的一些发电站将燃料从石油大量转移到了煤炭。 PAHs的天然成岩来源在城市水域中微不足道,但在哈德逊盆地更多农村地区的岩心的历史部分中占主导地位。

著录项

  • 作者

    Yan, Beizhan.;

  • 作者单位

    Rensselaer Polytechnic Institute.;

  • 授予单位 Rensselaer Polytechnic Institute.;
  • 学科 Geology.; Environmental Sciences.; Geochemistry.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 286 p.
  • 总页数 286
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;环境科学基础理论;地质学;
  • 关键词

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