2021 Vol. 48, No. 6
Article Contents

PENG Bo, WANG Jilong, TONG Meng, WU Bin, LIU Xiaoqiang, NIU Shujie, LIN Mudong, ZHANG Hua, LI Maotian, YU Junjie. 2021. Heavy metal deposition and its impact on ecological environment in Sanduao Bay of Fujian Province during the past century under the influence of human activities[J]. Geology in China, 48(6): 1759-1769. doi: 10.12029/gc20210608
Citation: PENG Bo, WANG Jilong, TONG Meng, WU Bin, LIU Xiaoqiang, NIU Shujie, LIN Mudong, ZHANG Hua, LI Maotian, YU Junjie. 2021. Heavy metal deposition and its impact on ecological environment in Sanduao Bay of Fujian Province during the past century under the influence of human activities[J]. Geology in China, 48(6): 1759-1769. doi: 10.12029/gc20210608

Heavy metal deposition and its impact on ecological environment in Sanduao Bay of Fujian Province during the past century under the influence of human activities

    Fund Project: Supported by the project of China Geological Survey (No. DD20189505)
More Information
  • Author Bio: PENG Bo, male, born in 1986, assistant researcher, engaged in hydrogeological engineering and environmental geology; E-mail: pengbocc@163.com
  • Corresponding author: YU Junjie, male, born in 1983, senior engineer, engaged in Quaternary geology, hydrogeological engineering and environmental geology; E-mail: yjunjie@mail.cgs.gov.cn
  • Heavy metals are difficult to be biodegraded, meanwhile easy to form toxic environmental factors. The evolution of heavy metals pollution in sediments is a common global ecological environmental problem since industrialization. To reveal the relationship between human activities and heavy metals deposition in Sanduao Bay of Fujian Province, 6 sediment cores were collected in the Bay for grain size testing, 210Pb dating and assay of Cu, Pb, Zn, Cr, As, Cd and Hg contents. The results show that over the past century, heavy metal contents in sediments of Sanduao Bay exhibit a significant increase trend. The top is 1.01-2.8 times higher than the bottom, and the evolution process can be divided into three stages, relatively stable period during 1900-1950s, slowly increasing during 1950-2000s, and sharply increasing since the 2000s. Those changes are closely related to population and economic development. The content of heavy metals in landward zone is generally higher than that in seaward zone, and the evolution trend of sediments in landward zone has been different from the sediments in seaward zone since 2000s. The heavy metals content of sediments in landward zone has decreased, while the heavy metals content of sediments in seaward zone has increased sharply in Sanduao Bay. This spatial difference is closely related to the change of grain size and regional industry distribution. Heavy metals have a great impact on the marine ecological environment of Sanduao Bay. As the increasing intensity of fish farming in the Bay, enough attention should be paid to the rapid increase of heavy metal contents in the Bay in recent years, so as to improve the management and remediation to avoid marine ecological damage.

  • 加载中
  • Appleby P G, Oldfield F. 1978. The calculation of lead-210 dates assuming a constant rate of supply of unsupported 210Pb to the sediment[J]. Catena, 5(1): 1-8. doi: 10.1016/S0341-8162(78)80002-2

    CrossRef Google Scholar

    Chai Sheli, Gao Lina, Qiu Dianming, Chai Yuan, Guo Jia, Xu Xuechun. 2013. 210Pb and 137Cs dating of the sediment core and its recent accumulation rates in Yueliang Lake in West Jilin Province[J]. Journal of Jilin University(Earth Science Edition), 43(1): 134-141(in Chinese with English abstract).

    Google Scholar

    Chen Jingsheng, Wang Feiyue, Chen Jianglin. 1994. Relation of aquatic particulate grain size to heavy metals concentrations in Eastern Chinese Rivers[J]. Acta Scientiae Circumstantiae, 14(4): 419-425(in Chinese with English abstract).

    Google Scholar

    Chen Shiyue, Wang Sumin, Chen Yingying, Zhang Enlou, Chen Yongjin, Zhu Yuxin. 2009. Vertical distribution and chronological implication of 210Pb and 137Cs in sediments of dongping lake, Shandong Province[J]. Quaternary Sciences, 29(5): 981-987(in Chinese with English abstract).

    Google Scholar

    De Groot A J, De Goeij J J M, Zegers C. 1971. Contents and behaviour of mercury as compared with other heavy metals in sediments from the rivers Rhine and Ems[J]. Geologie en Mijnbouw, 50: 393-398.

    Google Scholar

    Du Rongbin, Liu Liming, Wang Aimin, Wang Yongqiang. 2013. Effects of temperature, algae biomass and ambient nutrient on the absorption of dissolved nitrogen and phosphate by rhodophyte gracilaria asiatica[J]. Chinese Journal of Oceanology and Limnology, 31(2): 353-365. doi: 10.1007/s00343-013-2114-2

    CrossRef Google Scholar

    Fu Haixia, Liu Yi, Dong Zhiying, Li Ye. 2016. Progress in research on ecological toxicity of combined pollution of antibiotics and heavy metals[J]. Environmental Engineering, 34(4): 60-63(in Chinese with English abstract).

    Google Scholar

    General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China. 2002. Marine Sediment Quality (GB 18868-2002)[S]. Beijing: China Standards Press, 242-245(in Chinese).

    Google Scholar

    Helmke P A, Koons R D, Schomberg P J, Iskandar I K. 1977. Determination of trace element contamination of sediments by multielement analysis of clay-size fraction[J]. Environmental Science and Technology, 11(10): 984-989. doi: 10.1021/es60133a015

    CrossRef Google Scholar

    Hong Yajun, Feng Cheng lian, Xu Zuxin, Liao Wei, Yan Zhenfei, Liu Daqing, Fu Zhiyou. 2019. Advances on ecotoxicity effects of heavy metals to aquatic organisms and the mechanisms[J]. Environmental Engineering, 37(11): 1-9(in Chinese with English abstract).

    Google Scholar

    Huang Biao, Qian Lumin, Liu Jiafu. 2002. Nutrient salts content and eutrophication assessment for Sanduao Sea Area, Fujian[J]. Journal of Oceanography in Taiwan Strait, 21(4): 411-415(in Chinese with English abstract).

    Google Scholar

    Liu Jiafu, Zheng Qinhua, Chen Hongqing, Yu Zuojian, Lin Yongtian. 2003. Water quality condition in Sansha Bay[J]. Journal of Oceanography in Taiwan Strait, 22(2): 201-204(in Chinese with English abstract).

    Google Scholar

    Liu Yong, Yu Junqing, Zhang Lisha, Gao Chunliang, Cheng Aiying. 2012. Heavy metal pollution record of Xingyun Lake in the past 60 years[J]. Journal of Salt Lake Research, 20(2): 1-10(in Chinese with English abstract).

    Google Scholar

    Lu Xiaotian, Lu Yonglong, Chen Deliang, Su Chao, Song Shuai, Wang Tieyu, Tian Hanqin, Liang Ruoyu, Zhang Meng, Khan Kifayatullah. 2019. Climate change induced eutrophication of cold-water lake in an ecologically fragile nature reserve[J]. Journal of Environmental Sciences, 75(1): 359-369.

    Google Scholar

    Luo Wei, Lu Yonglong, Wang Tieyu, Kong Peiru, Jiao Wentao, Hu Wenyou, Jia Junmei, Naile J E, Khim J S, Giesy J P. 2013. Environmental concentrations and bioaccumulations of cadmium and zinc in coastal watersheds along the Chinese northern Bohai and Yellow Seas[J]. Environmental Toxicology and Chemistry, 32(4): 831-840. doi: 10.1002/etc.2136

    CrossRef Google Scholar

    Mahler B J, Van Metre P C, Callender E. 2006. Trends in metals in urban and reference lake sediments across the United States[J]. Environmental Toxicology and Chemistry, 25(7): 1698-1709. doi: 10.1897/05-459R.1

    CrossRef Google Scholar

    Ningde Municipal Statistical Bureau. 2018. Ningde Statistical Yearbook[M]. Beijing: China Statistics Press, 1-535(in Chinese).

    Google Scholar

    Presley B, Trefry J, Shokes R. 1980. Heavy metal inputs to Mississippi Delta sediments[J]. Water, Air, & Soil Pollution, 13(4): 481-494.

    Google Scholar

    Qiao Lei, Yuan Xuyin, Li A'mei. 2005. Heavy metals in littoral zone of Jiangsu Province and an ecological risk evaluation of heavy metals to this zone[J]. Journal of Agro-Environment Science, 24(supp. ): 178-182(in Chinese with English abstract).

    Google Scholar

    Shi Yong, Liu Zhishuai, Gao Jianhua, Wang Xiaoyong. 2015. An approach for correcting "grain size effect" base on the size-frequency distribution[J]. Marine Environmental Science, 34(4): 606-610(in Chinese with English abstract).

    Google Scholar

    State Oceanic Administration. 2018. Bulletin of China Marine Ecological Environment Status[R]. (in Chinese).

    Google Scholar

    Sun Deyao, Zang Shuying, Sun Huajie, Zhang Nannan, Zhang Ke, Sun Li. 2018. Pollution history and potential ecological risk assessment of heavy metals in core sediments in Hulun Lake during the past 150 years[J]. Journal of Agro-Environment Science, 37(1): 137-147(in Chinese with English abstract).

    Google Scholar

    Wang Fu, Yang Biao, Tian Lizhu, Li Jianfen, Shang Zhiwen, Chen Yongshen, Jiang Xinyu, Yang Jilong, Wang Hong. 2016. The choice of CIC and CRS models of 210Pbexc dating for tidal flat area[J]. Earth Science, 41(6): 971-981(in Chinese with English abstract).

    Google Scholar

    Wang Xian, Li Wenquan, Zhang Fan. 2002. Assessment on present status and quality of sediment in Fujian shore bay[J]. Acta Oceanologica Sinica, 24(4): 127-131(in Chinese with English abstract).

    Google Scholar

    Wang XiaoLei, Yang Hao, Ding ZhaoYun, Yang Benjun, Zhang Mingli. 2011. Modern sedimentation rates of Fuxian Lake by 210Pb and 137Cs dating[J]. Acta Geographica Sinica, 66(11): 1551-1561(in Chinese with English abstract).

    Google Scholar

    Whitney P R. 1975. Relationship of manganese-iron oxides and associated heavy metals to grain size in stream sediments[J]. Journal of Geochemical Exploration, 4(2): 251-263. doi: 10.1016/0375-6742(75)90005-9

    CrossRef Google Scholar

    Xu Fangjian, Liu Zhaoqing, Cao Yingchang, Qiu Longwei, Feng Jianwei, Xu Feng, Tian Xu. 2017. Assessment of heavy metal contamination in urban river sediments in the Jiaozhou Bay catchment, Qingdao, China[J]. Catena, 150: 9-16. doi: 10.1016/j.catena.2016.11.004

    CrossRef Google Scholar

    Xu Yingjiang, Liu Ge, Cui Yanmei, Jiang Fang, Cao Wei, Wang Minglei, Len Nan, Yang Yufang, Gong Xianghong, Tian Xiuhui. 2020. Application of omics in marine ecotoxicology: A Review[J]. Modern Food Science and Technology, 329-336(in Chinese with English abstract).

    Google Scholar

    Youssef M, EL-Sobogy A, Kahtany K AL, Otiaby N A L. 2015. Environmental assessment of coastal surface sediments at Tarut Island, Arabian Gulf (Saudi Arabia)[J]. Marine Pollution Bulletin, 96: 424-433. doi: 10.1016/j.marpolbul.2015.05.010

    CrossRef Google Scholar

    Zhang Chaosheng, Wang Lijun, Li Guosheng, Dong Shuangshuang, Yang Jingrong, Wang Xiuli. 2002. Grain size effect on multi-element concentrations in sediments from the intertidal flats of Bohai Bay, China[J]. Applied Geochemistry, 17(1): 59-68. doi: 10.1016/S0883-2927(01)00079-8

    CrossRef Google Scholar

    Zhang Yuan, Tao Ran, Yu Tao, Zhang Yan. 2013. Sediment particle size and the distribution of heavy metals in the typical districts of Dianchi Lake[J]. Research of Environmental Sciences, 26(4): 370-379(in Chinese with English abstract).

    Google Scholar

    Zhao Weihong. 2006. The current situation of water quality of the sea areas adjacent to the coast in Fujian Province and pollution-prevention countermeasures[J]. Fujian Geography, 21(2): 107-109(in Chinese with English abstract).

    Google Scholar

    Zheng Huang, Yang Dan, Xing XinLi, Zhang Zezhou, Shu Quanlai. 2016. Historical records, distribution characteristics and sources of heavy metals from sediment core in Honghu Lake, China[J]. China Environmental Science, 36(7): 2139-2145(in Chinese with English abstract).

    Google Scholar

    Zheng Qinhua. 2010. Water environment monitoring and evaluation of fisheries waters of Sandu Bay[J]. Journal of Ningde Teachers College(Natural Science), 22(3): 250-254(in Chinese with English abstract).

    Google Scholar

    Zhu Qingqing, Wang Zhongliang. 2012. Distribution characteristics and source analysis of heavy metals in sediments of the main river systems in China[J]. Earth and Environment, 40(3): 305-313(in Chinese with English abstract).

    Google Scholar

    柴社立, 高丽娜, 邱殿明, 柴源, 郭佳, 徐学纯. 2013. 吉林省西部月亮湖沉积物的210Pb和137Cs测年及沉积速率[J]. 吉林大学学报(地球科学版), 43(1): 134-141.

    Google Scholar

    陈静生, 王飞越, 陈江麟. 1994. 论小于63μm粒级作为水体颗粒物重金属研究介质的合理性及有关粒级转化模型研究[J]. 环境科学学报, 14(4): 419-424.

    Google Scholar

    陈诗越, 王苏民, 陈影影, 张恩楼, 陈永金, 朱瑜馨. 2009. 东平湖沉积物210Pb、137Cs垂直分布及年代学意义[J]. 第四纪研究, 29(5): 981-987. doi: 10.3969/j.issn.1001-7410.2009.05.16

    CrossRef Google Scholar

    傅海霞, 刘怡, 董志英, 李烨. 2016. 抗生素与重金属复合污染的生态毒理效应研究进展[J]. 环境工程, 34(4): 60-63.

    Google Scholar

    国家海洋局. 2018. 2017年中国海洋生态环境状况公报[R].

    Google Scholar

    洪亚军, 冯承莲, 徐祖信, 廖伟, 闫振飞, 刘大庆, 符志友. 2019. 重金属对水生生物的毒性效应机制研究进展[J]. 环境工程, 37(11): 1-9.

    Google Scholar

    黄标, 钱鲁闽, 刘家富. 2002. 福建三沙湾水产养殖区水体氮磷含量及潜在性富营养化程度分析[J]. 台湾海峡, 21(4): 411-415. doi: 10.3969/j.issn.1000-8160.2002.04.004

    CrossRef Google Scholar

    刘家富, 郑钦华, 陈洪清, 余祚溅, 林永添. 2003. 三沙湾的水质状况[J]. 台湾海峡, 22(2): 201-204. doi: 10.3969/j.issn.1000-8160.2003.02.012

    CrossRef Google Scholar

    刘永, 余俊清, 张丽莎, 高春亮, 成艾颖. 2012. 近60年来星云湖沉积物中重金属污染记录[J]. 盐湖研究, 20(2): 1-10.

    Google Scholar

    宁德市统计局. 2018. 宁德统计年鉴[M]. 北京: 中国统计出版社, 1-535.

    Google Scholar

    乔磊, 袁旭音, 李阿梅. 2005. 江苏海岸带的重金属特征及生态风险分析[J]. 农业环境科学学报, 24(增刊): 178-182.

    Google Scholar

    石勇, 刘治帅, 高建华, 汪小勇. 2015. 一种基于粒度频率分布的"粒度效应"校正方法[J]. 海洋环境科学, 34(4): 606-610.

    Google Scholar

    孙德尧, 臧淑英, 孙华杰, 张囡囡, 张科, 孙丽. 2018. 近150年呼伦湖重金属污染历史及潜在生态风险[J]. 农业环境科学学报, 37(1): 137-147.

    Google Scholar

    王福, 杨彪, 田立柱, 李建芬, 商志文, 陈永胜, 姜兴钰, 杨吉龙, 王宏. 2016. 开放潮坪地区210Pbexc测年CIC和CRS计算模式的选择[J]. 地球科学, 41(6): 971-981.

    Google Scholar

    王宪, 李文权, 张钒. 2002. 福建省近岸港湾沉积物质量状况[J]. 海洋学报, 24(4): 127-131. doi: 10.3321/j.issn:0253-4193.2002.04.015

    CrossRef Google Scholar

    王小雷, 杨浩, 丁兆运, 杨本俊, 张明礼. 2011. 云南抚仙湖近现代沉积速率变化研究[J]. 地理学报, 66(11): 1551-1561. doi: 10.11821/xb201111011

    CrossRef Google Scholar

    徐英江, 刘鸽, 崔艳梅, 姜芳, 曹伟, 王明磊, 冷男, 杨玉芳, 宫向红, 田秀慧. 2020. 组学技术在海洋生态毒理学研究中的应用[J]. 现代食品科技, 36(5): 329-336.

    Google Scholar

    张远, 陶然, 于涛, 张彦. 2013. 滇池典型湖区沉积物粒径与重金属分布特征[J]. 环境科学研究, 26(4): 370-379.

    Google Scholar

    赵卫红. 2006. 福建近岸海域水质现状及污染防治对策[J]. 福建地理, 21(2): 107-109. doi: 10.3969/j.issn.1673-7105.2006.02.033

    CrossRef Google Scholar

    郑煌, 杨丹, 邢新丽, 张泽洲, 舒全来. 2016. 洪湖沉积柱中重金属的历史分布特征及来源[J]. 中国环境科学, 36(7): 2139-2145. doi: 10.3969/j.issn.1000-6923.2016.07.035

    CrossRef Google Scholar

    郑钦华. 2010. 福建三都澳渔业水域水环境监测与评价[J]. 宁德师专学报(自然科学版), 22(3): 250-254. doi: 10.3969/j.issn.2095-2481.2010.03.007

    CrossRef Google Scholar

    中华人民共和国国家质量监督检验检疫总局. 2002. 海洋沉积物质量(GB 18868-2002)[S]. 北京: 中国标准出版社, 242-245.

    Google Scholar

    朱青青, 王中良. 2012. 中国主要水系沉积物中重金属分布特征及来源分析[J]. 地球与环境, 40(3): 305-313.

    Google Scholar

  • 加载中
通讯作者: 陈斌, bchen63@163.com
  • 1. 

    沈阳化工大学材料科学与工程学院 沈阳 110142

  1. 本站搜索
  2. 百度学术搜索
  3. 万方数据库搜索
  4. CNKI搜索

Figures(5)

Tables(3)

Article Metrics

Article views(2895) PDF downloads(71) Cited by(0)

Access History

Catalog

    /

    DownLoad:  Full-Size Img  PowerPoint