Li Zhengyan, Li Donghao, Oh Jae-Ryoung, Je Jong-Geel
South Sea Institute, Korea Ocean Research and Development Institute, Jangmok-myon 391, Geoje-shi, Gyungsangnamdo 656-834, South Korea.
Chemosphere. 2004 Aug;56(6):611-8. doi: 10.1016/j.chemosphere.2004.04.022.
Alkylphenols (APs) have been known as endocrine disruptors and consequently received much environmental concern. This study focused on seasonal variation and spatial distribution of nonylphenol (NP) in various matrixes including dissolved water, particulates, surface sediment, sediment trap and sediment core taken from Shihwa Lake and its adjacent areas. A total of 11 phenolic compounds including nonylphenol, t-octylphenol (t-OP) and bisphenol A (BPA) were measured in February, June and October 2002. NP is the most abundant chemical among the phenolic compounds and its concentrations in dissolved water, particulates and surface sediments from Shihwa Lake were measured as 17.4-1533.1 ng/l, 4.3-831.2 ng/l and 10.4-5054.1 ng/g dw, respectively. NP concentration in dissolved water varied with seasons and generally showed a decreasing order of June > October > February, while the seasonal trend was hardly found in sediment. High levels of NP were measured in surrounding industrial complexes, the concentrations was decreased gradually with distance from the industrial areas. NP in core samples showed an increasing trend toward the core depth. There exists a reasonable correlation between NP in dissolved water and in particulates, whereas the correlation between NP in dissolved water and in sediments is not significant. APs concentrations in Shihwa Lake were comparable to other highly polluted areas of the world and their possible effects on various organisms in the lake are discussed.
烷基酚(APs)被认为是内分泌干扰物,因此受到了广泛的环境关注。本研究聚焦于从石湖及其周边地区采集的各种基质(包括溶解水、颗粒物、表层沉积物、沉积物陷阱和沉积物岩芯)中壬基酚(NP)的季节变化和空间分布。2002年2月、6月和10月共测定了包括壬基酚、叔辛基酚(t-OP)和双酚A(BPA)在内的11种酚类化合物。NP是酚类化合物中含量最丰富的化学物质,石湖溶解水、颗粒物和表层沉积物中的NP浓度分别测定为17.4 - 1533.1 ng/L、4.3 - 831.2 ng/L和10.4 - 5054.1 ng/g干重。溶解水中NP浓度随季节变化,一般呈现6月>10月>2月的递减顺序,而沉积物中几乎未发现季节性趋势。在周边工业园区测得的NP含量较高,其浓度随与工业区距离的增加而逐渐降低。岩芯样品中的NP随岩芯深度呈增加趋势。溶解水中的NP与颗粒物中的NP之间存在合理的相关性,而溶解水中的NP与沉积物中的NP之间的相关性不显著。石湖中的APs浓度与世界其他高污染地区相当,并讨论了其对湖中各种生物可能产生的影响。