Ren Chen, Wu Yaketon, Zhang Shuo, Wu Liang-Liang, Liang Xiao-Guo, Chen Tian-Hu, Zhu Cheng-Zhu, Sojinu Samuel O, Wang Ji-Zhong
School of Resources & Environmental Engineering, Hefei University of Technology, Hefei, Anhui, 23009, China.
Environ Sci Pollut Res Int. 2015 Feb;22(3):1687-96. doi: 10.1007/s11356-014-3141-z. Epub 2014 Jun 21.
In the present study, 28 polycyclic aromatic hydrocarbons (PAHs) were investigated in four sediment cores collected from the main river estuaries of Chaohu Lake, one of the severely polluted lakes in China. The results indicate that elevated concentrations of total PAHs (Σ28PAH) were found in the samples from the estuary of Nanfei River (ENF), considering BaP-based total toxicity equivalent (TEQ-BaP) and toxic unit (TU) results; there are potential adverse environmental implications. The total organic carbon (TOC) played an important role on the accumulation of PAHs at ENF and the estuary of Tongyang River (ETY). The predominant PAHs are high molecular weight (HMW) homologous for all samples; as a result, industrial wastewater from a steel company is expectedly the key source of PAHs in ENF, while coke consumption would be the important source of PAHs at other three sampling sites. Vertical distribution of PAHs in the sediment cores could be explained by the local social and economic activities. Furthermore, a minor variation of PAH composition in the sediment core could be justified by the stable structure of energy consumption in the Anhui Province. These results justify the need for further enhancement of industrial wastewater treatment and development of renewable energies which are the key factors on the control of PAH pollution in China.
在本研究中,对从中国重度污染湖泊之一巢湖的主要河口采集的四个沉积物岩芯中的28种多环芳烃(PAHs)进行了调查。结果表明,考虑到基于苯并[a]芘的总毒性当量(TEQ-BaP)和毒性单位(TU)结果,在南淝河河口(ENF)的样品中发现总PAHs(Σ28PAH)浓度升高;存在潜在的不利环境影响。总有机碳(TOC)在ENF和通洋河河口(ETY)的PAHs积累中起重要作用。所有样品中主要的PAHs都是高分子量(HMW)同系物;因此,一家钢铁公司的工业废水预计是ENF中PAHs的主要来源,而焦炭消耗则是其他三个采样点PAHs的重要来源。沉积物岩芯中PAHs的垂直分布可以通过当地的社会和经济活动来解释。此外,沉积物岩芯中PAH组成的微小变化可以通过安徽省稳定的能源消费结构来解释。这些结果证明有必要进一步加强工业废水处理和开发可再生能源,这是中国控制PAH污染的关键因素。