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中国厦门海域表层沉积物质量的时空变化。

Spatiotemporal Variation of Surface Sediment Quality in the Xiamen Sea Area, China.

机构信息

Third Institute of Oceanography, Ministry of Natural Resources, Xiamen 361005, China.

Key Laboratory of Marine Ecological Conservation and Restoration, Ministry of Natural Resources, Xiamen 361005, China.

出版信息

J Environ Public Health. 2022 Sep 27;2022:4950588. doi: 10.1155/2022/4950588. eCollection 2022.

Abstract

The study analyzes the survey data on the surface sediments in 355 stations in Xiamen Sea area during 2004-2006, 2007-2009, 2010-2013, and 2014-2016. The result finds that contents of TOC, sulfide, and oils in the surface sediments were generally low but showed significant spatial differences ( < 0.05) in most cases, with TOC in the West Sea area (WS) staying significantly higher than other sea areas. Xiamen Sea area suffered universal heavy metal pollution mainly from Cu and Zn for years in the WS, the Jiulong River Estuary (JE), and the East Sea area (ES), and the heavy metal pollution index (HPI) exhibited significant spatial differences across the four periods ( < 0.05). With the source of heavy metals in the WS being mainly related to human activities, Cu and Zn were related to the development of port shipping and Pb to aquaculture. The heavy metal pollution in JE was mainly related to the input of rivers emptying into the sea. The high Cu content in the ES was related to the direct discharge of massive domestic sewage into the sea at the time. From 2004 to 2016, the potential ecological risks of heavy metals in Xiamen Sea area stayed low.

摘要

本研究分析了 2004-2006 年、2007-2009 年、2010-2013 年和 2014-2016 年厦门海域 355 个站位的表层沉积物调查数据。结果表明,表层沉积物中 TOC、硫化物和油类的含量普遍较低,但在大多数情况下存在显著的空间差异(<0.05),其中西海域(WS)的 TOC 明显高于其他海域。多年来,厦门海域 WS、九龙江口(JE)和东海区(ES)普遍受到重金属污染,主要来自 Cu 和 Zn,重金属污染指数(HPI)在四个时期均存在显著的空间差异(<0.05)。WS 区重金属的来源主要与人类活动有关,Cu 和 Zn 与港口航运的发展有关,Pb 与水产养殖有关。JE 的重金属污染主要与入海河流的输入有关。ES 区高 Cu 含量与当时大量生活污水直接入海有关。自 2004 年至 2016 年,厦门海域重金属的潜在生态风险保持在低水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/500d/9532091/8e31cdaf4cfe/JEPH2022-4950588.001.jpg

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