Abstract:Mercury (Hg) and arsenic (As) contents were determined in surface sediment collected at 6—13 sampling sites from Daya Bay in 2009, 2012, 2015 and 2018 according to the analysis methods in the “Ocean Monitoring Specification” (GB 17378.5—2007) to evaluate the distribution characteristics and pollution situation in Daya Bay. The pollution level was assessed based on potential ecological risk. The results indicated that the concentrations of Hg was 0.005—0.070 mg/kg, 0.005—0.071 mg/kg, 0.070—0.160 mg/kg, 0.008—0.064 mg/kg, and the average concentrations of Hg was 0.04, 0.04, 0.12, 0.04 mg/kg. The concentrations of As was 4.56—10.90 mg/kg, 1.50—8.80 mg/kg, 4.52—8.06 mg/kg, 5.65—9.90 mg/kg, and the average concentrations of As was 7.98, 4.81, 6.78, 7.35 mg/kg. The contents of Hg and As were changed gently, all within the standards of first class of Marine Sediment Quality (GB 18668—2002). The contents of Hg and As were distributed roughly the same, showing a decreasing trend from the top of the bay to bay mouth. The main source of Hg was derived from the sewage discharges in the coastal areas and the combustion of fossil fuels by industrial enterprises. The main source of As was related to agricultural pollution. The potential ecological risk showed that Hg presented strong potential ecological risk and As presented slight potential ecological risk. In the past ten years, Hg pollution in Daya Bay sediments has not been alleviated and more sufficient attention should be paid to Hg pollution in sediments.
杨文超, 黄道建, 陈继鑫, 陈晓燕, 王宇珊. 大亚湾近十年沉积物中汞、砷分布及污染评价[J]. 水产科学, 2020, 39(6): 915-921.
YANG Wenchao, HUANG Daojian, CHEN Jixin, CHEN Xiaoyan, WANG Yushan. Distribution and Pollution Assessment of Hg and As Contents in Surface Sediments of Daya Bay in the Past Ten Years. Fisheries Science, 2020, 39(6): 915-921.
[1]Gao X L, Chen C T A. Heavy metal pollution status in surface sediments of the coastal Bohai Bay[J].Water Research,2012,46(6):1901-1911. [2]Dou Y G, Li J, Zhao J T, et al. Distribution, enrichment and source of heavy metals in surface sediments of the eastern Beibu Bay, South China Sea[J].Marine Pollution Bulletin,2013,67(1):137-145. [3]方利江,葛春盈,蒋红,等.舟山海域表层沉积物重金属分布、来源及潜在生态风险评价[J].海洋环境科学,2019,38(5):769-775. [4]Dassenakis M, Scoullos M, Gaitis A. Trace metals transport and behaviour in the Mediterranean estuary of Acheloos River[J].Marine Pollution Bulletin,1997,34(2):103-111. [5]Li X D, Lee S L, Wong S C, et al. The study of metal contamination in urban soils of Hong Kong using a GIS-based approach[J].Environmental Pollution,2004,129(1):113-124. [6]Raghunath R, Tripathi R M, Kumar A V, et al. Assessment of Pb, Cd, Cu, and Zn exposures of 6-to 10-year-old children in Mumbai[J].Environmental Research,1999,80(3):215-221. [7]Rainbow P S.Trace metal bioaccumulation:models, metabolic availability and toxicity[J].Environment International,2007,33(4):576-582. [8]Wang Y S, Lou Z P, Sun C C, et al.Multivariate statistical analysis of water quality and phytoplankton characteristics in Daya bay, China, from 1999 to 2002[J].Oceanologia,2006,48(2):193-211. [9]王友绍,王肇鼎,黄良民.近20年来大亚湾生态环境的变化及其发展趋势[J].热带海洋学报,2004,23(5):85-95. [10]刘开珍,杜飞雁,李亚芳,等.大亚湾大型底栖动物近30年次级生产力变化特征[J].南方水产科学,2018,14(2):1-9. [11]Yang W F, Zhao X F, Zhang F, et al. Identification of the earlier human-induced sedimentation change in Daya Bay, northern South China Sea using 210Pb and 137Cs[J]. Marine Pollution Bulletin,2018,126:334-337. [12]唐得昊,刘兴健.大亚湾表层沉积物中重金属污染与潜在生态风险评价[J].亚热带资源与环境学报,2018,13(4):1-7. [13]徐姗楠,陈作志,林琳,等. 大亚湾石化排污海域生态系统健康评价[J].生态学报,2016,36(5):1421-1430. [14]曹玲珑,王建华,黄楚光,等.大亚湾表层沉积物重金属元素形态特征、控制因素及风险评价分析[J].吉林大学学报:地球科学版,2014,44(6):1988-1999. [15]Zhao G M, Ye S Y, Yuan H M, et al. Distribution and contamination of heavy metals in surface sediments of the Daya Bay and adjacent shelf, China[J].Marine Pollution Bulletin,2016,112(1/2):420-426. [16]张小华,钟立峰,苗莉,等.粤东典型海湾表层沉积物Cd的分布及其潜在生态危害评价[J].热带海洋学报,2013,32(2):118-127. [17]Yu X J, Yan Y, Wang W X. The distribution and speciation of trace metals in surface sediments from the Pearl River Estuary and the Daya Bay, Southern China[J].Marine Pollution Bulletin,2010,60(8):1364-1371. [18]Gao X L, Chen S Y, Long A M. Composition and sources of organic matter and its solvent extractable components in surface sediments of a bay under serious anthropogenic influences:Daya Bay, China[J].Marine Pollution Bulletin,2008,56:1066-1075. [19]Yan W, Chi J S, Wang Z Y, et al. Spatial and temporal distribution of polycyclic aromatic hydrocarbons (PAHs) in sediments from Daya Bay, South China[J].Environmental Pollution,2009,157(6):1823-1830. [20]沈园,张景平,张霞,等.大亚湾沉积物磷的形态特征及其潜在可释放性[J].海洋环境科学,2017,36(5):641-647,661. [21]Liu J J, Ni Z X, Diao Z H, et al. Contamination level, chemical fraction and ecological risk of heavy metals in sediments from Daya Bay, South China Sea[J].Marine Pollution Bulletin,2018,128:132-139. [22]曲宝晓,宋金明,袁华茂.近百年来大亚湾沉积物有机质的沉积记录及对人为活动的响应[J].海洋学报:中文版,2018,40(10):119-130. [23]林丽华,魏虎进,黄华梅.大亚湾表层沉积物和底栖生物中重金属的污染特征与生物积累[J].生态科学,2017,36(6):173-181. [24]周鹏,李冬梅,李海涛,等.大亚湾西部海域沉积物中生物硅的含量及其分布特征[J].应用海洋学学报,2019,38(1):109-117. [25]谷阳光,王朝晖,方军,等.大亚湾表层沉积物中重金属分布特征及潜在生态危害评价[J].分析测试学报,2009,28(4):449-453. [26]黄小平,郭芳,黄良民.大亚湾典型养殖区表层沉积物环境特征研究[J].热带海洋学报,2008,27(5):37-42. [27]Hakanson L. An ecological risk index for aquatic pollution control:a sedimentological approach[J].Water Research,1980,14(8):975-1001. [28]张玉凤,宋永刚,王立军,等.锦州湾沉积物重金属生态风险评价[J].水产科学,2011,30(3):156-159. [29]张银英.大亚湾沉积物中重金属元素背景值研究[J].热带海洋,1991,10(3):76-80. [30]徐争启,倪师军,庹先国,等.潜在生态危害指数法评价中重金属毒性系数计算[J].环境科学与技术,2008,31(2):112-115. [31]梁庆洋,齐占会,巩秀玉,等.大亚湾鱼类深水网箱养殖对环境的影响[J].南方水产科学,2017,13(5):25-32. [32]谷阳光,林钦,王增焕,等.柘林湾及邻近海域沉积物重金属分布与潜在生态风险[J].南方水产科学,2013,9(2):32-37. [33]乔永民,黄长江,林潮平,等.粤东柘林湾表层沉积物的汞和砷研究[J].热带海洋学报,2004,23(3):28-35. [34]Shahidul Islam M, Tanaka M. Impacts of pollution on coastal and marine ecosystems including coastal and marine fisheries and approach for management:a review and synthesis[J].Marine Pollution Bulletin,2004,48(7/8):624-649. [35]何松琴,宋金明,李学刚,等.长江口及邻近海域夏季表层沉积物中重金属等的分布、来源与沉积物环境质量[J].海洋科学,2011,35(5):4-9. [36]丘耀文,颜文,王肇鼎,等.大亚湾海水、沉积物和生物体中重金属分布及其生态危害[J].热带海洋学报,2005,24(5):69-76. [37]Sapkota A, Sapkota A R, Kucharski M, et al. Aquaculture practices and potential human health risks: current knowledge and future priorities[J].Environment International,2008,34(8):1215-1226. [38]崔毅,陈碧鹃,陈聚法.黄渤海海水养殖自身污染的评估[J].应用生态学报, 2005,16(1):180-185. [39]田金,李超,宛立,等.海洋重金属污染的研究进展[J].水产科学,2009,28(7):413-418. [40]吴文成,任露陆,蔡信德,等.茅尾海沉积物重金属空间分布特征与生态风险[J].环境科学研究,2014,27(2):147-156. [41]李玉,管明雷,俞阳,等.Hg、As在海州湾不同功能区沉积物中的污染特征及污染历史演变评估[J].海洋湖沼通报,2017(3):15-22. [42]陈金民.南海表层沉积物中总砷含量的分布特征[J].台湾海峡,2005,24(1):58-62. [43]方利江,葛春盈,蒋红,等.舟山海域表层沉积物重金属分布、来源及潜在生态风险评价[J].海洋环境科学,2019,38(5):769-775. [44]彭鹏飞,李绪录,杨琴,等.珠江口黄茅海表层海水和沉积物中重金属的分布及评价[J].环境监测管理与技术,2017,29(4):28-32. [45]徐姗楠,李纯厚,徐娇娇,等.大亚湾石化排污海域重金属污染及生态风险评价[J].环境科学,2014,35(6):2075-2084. [46]丘耀文,王肇鼎.大亚湾海域重金属潜在生态危害评价[J].热带海洋,1997,16(4):49-53.