首页> 外文期刊>The Science of the Total Environment >Environmental forensic characterization of former rail yard soils located adjacent to the Statue of Liberty in the New York/New Jersey harbor
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Environmental forensic characterization of former rail yard soils located adjacent to the Statue of Liberty in the New York/New Jersey harbor

机译:在纽约/新泽西港邻近的自由女神像附近的前铁杆土壤的环境法医表征

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Identifying inorganic and organic soil contaminants in urban brownfields can give insights into the adverse effects of industrial activities on soil function, ecological health, and environmental quality. Liberty State Park in Jersey City (NJ., USA) once supported a major rail yard that had dock facilities for both cargo and passenger service; a portion remains dosed to the public, and a forest developed and spread in this area. The objectives of this study were to: 1) characterize the organic and inorganic compounds in Liberty State Park soils and compare the findings to an uncontaminated reference site (Hutcheson Memorial Forest); and 2) identify differences between the barren low-functioning areas and the forested high-functioning areas of the brownfield. Soil samples were solvent-extracted, fractionated, and analyzed by gas chromatography-mass spectrometry and subjected to loss-on-ignition, pyrolysis-gas chromatography-mass spectrometry, inductively-coupled-plasma mass spectrometry, and optical microscopy analyses. Compared to soil from the reference site, the forested soils in Liberty State Park contained elevated percentages of organic matter (30-45%) and more contaminants, such as fossilfuel-derived hydrocarbons and coal particles. Microscopy revealed bituminous and anthracite coal, coke, tar/pitch, and ash particles. Barren and low-functioning site 25R had a similar organic contaminant profile but contained a higher metal load than other Liberty State Park sites and also lacked higher plant indicators. These can obscure the signatures of contaminants, and data from adjacent barren and vegetated sites are valuable references for soils studies. A deeper understanding of the chemistry, biochemistry, and ecology of barren soils can be leveraged to prevent land degradation and to restore dysfunctional and phytotoxic soils. (C) 2019 Elsevier B.V. All rights reserved.
机译:鉴定城市棕片中的无机和有机土壤污染物可以深入了解工业活动对土壤功能,生态健康和环境质量的不利影响。泽西市的自由州立公园(美国NJ)曾支持一座主要的铁路院子,该码头有货物和乘客服务的码头设施;一部分仍然向公众提出,在这一领域开发和传播的森林。本研究的目的是:1)表征自由州立公园土壤中的有机和无机化合物,并将研究结果与未污染的参考网站(Hutcheson Memorial Forest)进行比较; 2)识别荒野的贫瘠低功能区域与棕色地区的森林高功能区域之间的差异。通过气相色谱 - 质谱法溶剂提取,分级分析和分析土壤样品,并经受脱落 - 点火丧失,热解 - 气相色谱 - 质谱,电感耦合等离子体质谱和光学显微镜分析。与来自参考现场的土壤相比,自由州立公园的森林土壤含有升高的有机物(30-45%)和更多污染物,例如化石衍生的碳氢化合物和煤颗粒。显微镜显微镜揭示沥青和无烟煤煤,焦炭,焦油/间距和灰分颗粒。贫瘠和低功能部位25R具有类似的有机污染物型材,但含有比其他自由州立局的乐队载荷更高的金属负荷,并且还缺乏较高的植物指标。这些可以模糊污染物的签名,来自邻近贫瘠和植物部位的数据是对土壤研究的有价值的参考。可以利用对化学,生物化学和生态学的深入了解,以防止土地降解并恢复功能障碍和植物毒性土壤。 (c)2019 Elsevier B.v.保留所有权利。

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