• The Core Journal of China
  • Included in Chinese Science Citation Database
  • The Key Magazine of China technology
  • Frontrunner 5000—Top Articles in Outstanding S&T Journals of China
  • Included in Scopus
  • Included in Chemical Abstracts (CA)
  • Included in Russian Abstract Journal (AJ)
Advanced Search
CAO Shengwei, LIU Chunlei, LI Yasong, LI Jing, HAO Qichen, GAO Jie, DONG Yan, LU Chenming. Sources and ecological risk of heavy metals in the sediments of offshore area in Quanzhou Bay, Fujian Province[J]. GEOLOGY IN CHINA, 2022, 49(5): 1481-1496. DOI: 10.12029/gc20220508
Citation: CAO Shengwei, LIU Chunlei, LI Yasong, LI Jing, HAO Qichen, GAO Jie, DONG Yan, LU Chenming. Sources and ecological risk of heavy metals in the sediments of offshore area in Quanzhou Bay, Fujian Province[J]. GEOLOGY IN CHINA, 2022, 49(5): 1481-1496. DOI: 10.12029/gc20220508

Sources and ecological risk of heavy metals in the sediments of offshore area in Quanzhou Bay, Fujian Province

Funds: 

the project of China Geological Survey DD20190303

Basic Research Funds for National Research Institutes SK202114

More Information
  • Author Bio:

    CAO Shengwei, male, born in 1993, master, assistant researcher, engaged in coastal environment and hydrogeochemistry; E-mail: caoshengwei_hei@163.com

  • Corresponding author:

    LIU Chunlei, male, born in 1984, master, assistant researcher, engaged in hydrogeology and geothermic; E-mail: chunleiliu-dn@163.com

  • Received Date: December 28, 2021
  • Revised Date: February 15, 2022
  • Available Online: September 25, 2023
  • This paper is the result of marine and environmental geological survey engineering.

    Objective 

    The environmental quality of surface sediments in Quanzhou Bay faces great ecological risks caused by heavy metals, but the researches focused on the influencing factors and potential sources were relatively weak.

    Methods 

    By collecting surface sediment samples in offshore area of Quanzhou Bay, the distribution characteristics and enrichment degree of heavy metals were summarized based on element and grain size analysis, and the potential ecological risk was assessed using Hakanson method in study area. Positive definite matrix factor analysis (PMF) and principal component analysis (PCA) were further used to apportion the sources of heavy metals contamination.

    Results 

    Grain size of surface sediments was low at the converging area of Jin river and Luoyang river, which were prone to enrich heavy metals. The order of surface sediments heavy metals enrichment factors was Hg > As > Cd > Pb > Zn > Cu > Cr > Ni. Overall ecological risk of surface sediments in Quanzhou Bay was moderate, and contribution of Cd to potential ecological risk was the highest (37.90%), followed by Hg (29.38%). Cr and Ni were mainly from rock weathering. Besides rock weathering, Cu, Zn and Pb were strongly affected by mining smelting. Cd and As were contributed by sewage disposal and fuel combustion, respectively. However, the sources of Hg were relatively complicated. Main sources of heavy metals in study area were mining smelting, rock weathering, sewage disposal and fuel combustion, and the contribution of them were 33.95%, 31.16%, 22.26% and 12.21%, respectively.

    Conclusions 

    The transport of land substances with surface water runoff was the main cause for the ecological risk of surface sediments in Quanzhou Bay, and furthermore it is necessary to strength the research on the fate and environmental behavior of Hg in different media in the future.

  • Belousova N I. 2006. Oxalate-soluble compounds of Al, Fe, and Si in soils of cold humid regions as a function of weathering[J]. Eurasian Soil Science, 39(1): 1-11. doi: 10.1134/S1064229306010017
    Chen Bin, Wang Jinkeng, Zhang Yusheng, Tang Sengming, Lin Jinghong, Zheng Fengwu, Zhang Jiwei. 2004. Impact of reclamation activities on marine environment in Quanzhou Bay[J]. Journal of Oceanography in Taiwan Strait, 23(2): 192-198 (in Chinese with English abstract). doi: 10.3969/j.issn.1000-8160.2004.02.010
    Chen Ming, Cai Qingyun, Xu Hui, Zhao Ling, Zhao Yonghong. 2015. Research progress of risk assessment of heavy metals pollution in water body sediments[J]. Ecology and Environment Sciences, (6): 1069-1074 (in Chinese with English abstract).
    Chen Nengwang, Wang Deli, Lu Ting, Wang Fenfang, Jiang Yan, Lin Guohui, Zhuang Mazhan. 2018. Manganese pollution in the Jiulong River watershed: Sources and transformation[J]. Acta Scientiae Circumstantiae, 38(8): 2955-2964 (in Chinese with English abstract).
    Cheng Xiaohui, Deng Jingsong. 2019. Comparation of pretreatment methods in determination of 12 metal elements in soil by inductively coupled plasma mass spectrometry[J]. Chemical Analysis and Meterage, 28(4): 115-118 (in Chinese with English abstract).
    Duan Xiaoyong, Yin Ping, Liu Jinqing, Zhang Daolai, Cao Ke, Gao Fei, Chen Xiaoying. 2016. Heavy metals and polycyclic aromatic hydrocarbons in surface sediments of Luan River estuary: Distributions, sources and ecological risk assessments[J]. China Environmental Science, 36(4): 1198-1206 (in Chinese with English abstract).
    General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China. 2002. Marine Sediment Quality[S]. 243-244, 8 (in Chinese).
    Guan Baocong, Lei Huanyan, Lin Binghuang, Liu Haoran, Shi Yuezhong, Lin Jianning. 2010. Elemental characteristics and geochemical significance of surface sediments in Quanzhou Bay[J]. Journal of Oceanography in Taiwan Strait, 29(1): 58-65 (in Chinese with English abstract).
    Hakanson L. 1980. An ecological risk index for aquatic pollution control: A sedimentological approach[J]. Water Research, 14(8): 975-1001.
    Hao Wu, Ding Zhenhua, Liu Yang, Liu Jinling, Yan Haiyu, Pan Jiayong, Li Liuqiang, Lin Huina, Lin Guanghui, Lu Haoliang. 2011. Methylmercury and sulfate-reducing bacteria in mangrove sediments from Jiulong River Estuary, China[J]. Journal of Environmental Sciences, 23(1): 14-21.
    Hu Yuanan, Liu Xueping, Bai Jinmei, Shih Kaimin, Zeng Eddy Y, Cheng Hefa. 2013. Assessing heavy metal pollution in the surface soils of a region that had undergone three decades of intense industrialization and urbanization[J]. Environmental Science and Pollution Research, 20(9): 6150-6159.
    Li Chaoxin, Liu Miaoguang, Liu Zhenxia, Hu Zejian, Bian Shuhua, Diao Shaobo. 2008. Sediment transport and Changes in scour and silting in the Quanzhou Bay[J]. Advances in Marine Science, (1): 26-34 (in Chinese with English abstract).
    Li Fu, Liu Yingnan, Guo Dianfan, Qi Xingtian, Zang Shuying, Ni Hongwei. 2019. Distribution and potential ecological risk assessment of heavy metals in the sediment of the Songjiang wetland in Harbin City[J]. Research of Environmental Sciences, 32(11): 1869-1878 (in Chinese with English abstract).
    Li Guihai. 2007. Environmental Geochemistry of Heavy Metals and Depositional Environment in Xiamen Seas[D]. Qingdao: China Ocean University, 1-107 (in Chinese with English abstract).
    Li Jun, Zou Shengzhang, Liang Yongping, Lin Yongsheng, Zhou Changsong, Zhao Yi. 2020. Metal distributions and human health risk assessments on waters in the Huixian Karst wetland, China[J]. Environmental Science, 41(11): 4948-4957 (in Chinese with English abstract).
    Li Yunhai, Chen Jian, Huang Caibin, Wang Aijun, Li Dongyi. 2010. Distribution patterns of heavy metals in surface sediments of the Quanzhou Bay and environmental quality assessment[J]. Environmental Science, 31(4): 931-938 (in Chinese with English abstract).
    Lin Chengqi, Chen Fenghua, Hu Gongren, Yu Ruilian, Huang Huabin. 2020. Source apportionment of heavy metals in surface sediments of the Jiulong River Estuary based on positive matrix factorization[J]. Earth and Environment, 48(4): 443-451 (in Chinese with English abstract).
    Liu Bingxing, Yu Ruilian, Hu Gongren, Zhang Liling. 2015. Distribution and transfer of heavy metals in the mangrove wetland of Quanzhou Bay estuary[J]. Chinese Journal of Ecology, 34(4): 1136-1142 (in Chinese with English abstract).
    Liu Chunlei, Zheng Jianhua, Li Zhenghong, Li Yasong, Hao Qichen, Li Jianfeng. 2021. Analysis on the situation and countermeasures of water resources supply and demand in the cities of small and medium-sized river basins along southeast coast of China -Taking Xiamen City as an example[J]. Journal of Groundwater Science and Engineering, 9(4): 350-358.
    Liu Kun, Sun Yongguang, Qi Yue, Wang Weiwei, Yuan Xiutang, Fu Yuanbin, Li Peiying. 2018. The spatial differentiation and spatial correlation analysis with TC and TN of grain size in intertidal sediments[J]. Marine Environmental Science, 37(1): 95-100, 150 (in Chinese with English abstract).
    Liu Shengran, Wang Tieyu, Yang Jie, Meng Jing, He Bo, Zhao Hui, Xiao Rongbo. 2019. Source apportionment methods of soil heavy metals in typical urban units: An empirical study[J]. Acta Ecologica Sinica, 39(4): 1278-1289 (in Chinese with English abstract).
    Liu Xiangqi, Song Lei, Wu Qilong, Li Guomin, Mao Xin. 2020. Application of the affinity propagation clustering algorithm based on grain-size distribution curve to discrimination of sedimentary environment——A case study in Baiyangdian area[J]. Marine Geology & Quaternary Geology, 40(1): 198-209 (in Chinese with English abstract).
    Liu Yaci, Wu Lin, Shi Guowei, Cao Shengwei, Li Yasong. 2022. Characteristics and sources of microplastic pollution in the water and sediments of the Jinjiang River Basin, Fujian Province, China[J]. China Geology, 5: 429-438.
    Liu Yongqing. 1995. Study and application of the soil environmental background values in Fujian coastal zone[J]. Marine Environmental Science, (2): 68-73 (in Chinese with English abstract).
    Liu Yu. 2018. Spatial Temporal Distribution and Environmental Risk Assessment of Polybrominated Diphenyl Ethers in Sediments from Quanzhou Shanmei Reservoir and Quanzhou Bay[D]. Quanzhou: Huaqiao University, 1-157 (in Chinese with English abstract).
    Liu Zongcheng. 2013. Present situation and treatment suggestions of mining geological environment in Quanzhou City, Fujian Province[J]. Energy and Environment, (5): 80-81 (in Chinese with English abstract).
    Ma Rong, Zhang Bin, Zhou Xiaoni. 2020. The effects of climate change and groundwater exploitation on the spatial and temporal variations of heavy metal content in maize in the Luan River catchment of China[J]. Environmental Science and Pollution Research, 27(1): 1035-52.
    Meng Xi, Chang Fangqiang, Lin Congmou. 2014. Study on the evolution characteristics and control factors of scouring and silting in Quanzhou Bay[J]. Journal of Natural Disasters, 23(5): 185-191 (in Chinese with English abstract).
    Miao Xiongyi, Hao Yupei, Zhang, Fawang, Zou Shengzhang, Ye Siyuan, Xie Zhouqing. 2020. Correction to: Spatial distribution of heavy metals and their potential sources in the soil of Yellow River Delta: A traditional oil field in China[J]. Environmental Geochemistry and Health, 42(2): 709-709.
    Paatero P. 1997. Least squares formulation of robust non-negative factor analysis[J]. Chemometrics and Intelligent Laboratory Systems, 37(1): 23-35.
    Pan Ke, Wang Wenxiong. 2012. Trace metal contamination in estuarine and coastal environments in China[J]. Science of the Total Environment, 421/422: 3-16.
    Quanzhou Ocean and Fisheries Bureau. 2011. Quanzhou Marine Environment Situation Bulletin[R]. Quanzhou Ocean and Fisheries Bureau, 1-27 (in Chinese).
    Quanzhou Ocean and Fisheries Bureau. 2018. Quanzhou marine environment situation Bulletin[R]. Quanzhou Ocean and Fisheries Bureau, 1-22 (in Chinese).
    Rao Qinghua, Li Jiabing, Hu Minjie, Xie Rongrong, Zhang Xiangyu, Qiu Yu. 2018. Effect of enrichment of nitrogen and sulfate load on N2O fluxes from tidal flat wetland in the subtropical estuary[J]. Acta Scientiae Circumstantiae, 38(5): 2045-2054 (in Chinese with English abstract).
    Soto-Jiménez M, Páez-Osuna F. 2001. Cd, Cu, Pb, and Zn in Lagoonal sediments from Mazatlán Harbor (SE Gulf of California): Bioavailability and geochemical fractioning[J]. B. Environ. Contam. Tox., 66(3): 350-6.
    Tan Fanglin, Ye Gongfu, Cui Lijuan, Zhang Lihua, Luo Meijuan, Sun Zhitong, Lin Jie, Luo Cailian, Le Tongchao, Huang Li, Lin Yongyuan. 2010. Site type classification of mongrove in Quanzhou Estuary wetlands[J]. Wetland Science, 8(4): 366-370 (in Chinese with English abstract).
    Tang Junjian, Chen Chuhan, Wen Shenghui. 2011. Numerical simulation of tidal current field of Quanzhou Bay sea crossing bridge[C]//Proceedings of the 15th China Offshore Engineering Symposium. Taiyuan, 978-985 (in Chinese with English abstract).
    Wang Aijun, Chen Jian, Li Dongyi, Zhuo Zhiqiang. 2007. Spatial variations of carbon and nitrogen in coastal wetland sediments of Quanzhou Bay in China[J]. Environmental Science, (10): 2361-2368 (in Chinese with English abstract).
    Wang Shuailong, Xu Xiangrong, Sun Yuxin, Liu Jinling, Li Huabin. 2013. Heavy metal pollution in coastal areas of South China: A review[J]. Marine Pollution Bulletin, 76(1): 7-15.
    Wang Wei, Gu Xiaoyuan, Zhao Hui, Ding Xigui, Ye Siyuan, Xiao Nan, Yu Jianfeng, Li Jinpeng. 2018. Distribution and environment assessment of heavy metals in sediments of the Zhifu Bay[J]. Marine Sciences, 42(7): 3-11 (in Chinese with English abstract).
    Wu Wei, Wu Ping, Yang Fang, Sun Danling, Zhang Dexing, Zhou, Yikai. 2018. Assessment of heavy metal pollution and human health risks in urban soils around an electronics manufacturing facility[J]. Science of The Total Environment, 630: 53-61.
    Xia Peng, Meng Xianwei, Yin Ping, Cao Zhimin, Wang Xiangqin. 2011. Eighty-year sedimentary record of heavy metal inputs in the intertidal sediments from the Nanliu River estuary, Beibu Gulf of South China Sea[J]. Environmental Pollution, 159(1): 92-99.
    Xia Peng, Meng Xianwei, Feng Aiping, Yin Ping, Zhang Jun, Wang Xiangqin. 2012. Geochemical characteristics of heavy metals in coastal sediments from the northern Beibu Gulf (SW China): The background levels and recent contamination[J]. Environmental Earth Sciences, 66(5): 1337-44.
    Xie Wenping, Chen Zheng, Zhu Xinping, Zheng Guangming, Cai Zexian, Zhang Liang, Li Ziqing. 2020. Occurrence form and pollution evaluation of heavy metals in fish pond in Pearl River network area[J]. Environmental Science & Technology, 43(S1): 176-182 (in Chinese with English abstract).
    Xiong Shaobo, Jin Dongmin, Sun Kezhong, Zou Yisheng, Fan Xubang, Du Xiaogang. 1991. Some characteristics of deep structure of the Zhangzhou geothermal field and it's neighbourhood in the Fujian Province[J]. Acta Geophysica Sinica, (1): 55-63 (in Chinese with English abstract).
    Xu Jinglin, Cha Xuan. 2009. Soil erosion risk assessment based on the research of impact factors: Taking Anxi County as an example[J]. Journal of Geo-Information Science, 11(5): 577-584 (in Chinese with English abstract).
    Xu Lianghui, Li Jialin, Li Weifang, Zhao Si, Yuan Qixiang, Wang Mingyue, Yang Lei, Lu Xuezhu. 2014. Progress in impact of human activities on coastal resource and environment[J]. Journal of Nanjing Normal University (Natural Science Edition), 37(3): 124-131 (in Chinese with English abstract).
    Yang Xia, Peng Bo, Wu Yaqi, Zhang Kun, Kuang Xiaoliang, Wu Beijuan, Tan Changyin, Tu Xianglin. 2016. Geochemical study on heavy-metal contamination developed in river-bank sediments at the Xiangtan section of the Xiangjiang River, Hunan Province, China[J]. Geochimica, 45(1): 62-76 (in Chinese with English abstract).
    Yin Ping, Lin Liangjun, Chen Bin, Xiao Guoqiang, Cao Ke, Yang Jilong, Li Meina, Duan Xiaoyong, Qiu Jiandong, Hu Yunzhuang, Wang Lei, Sun Xiaoming. 2017. Coastal zone geo-resources and geo-environment in China[J]. Geology in China, 44(5): 842-856 (in Chinese with English abstract).
    You Huiming, Han Jianliang, Pan Dezhuo, Xie Huicheng, Le Tongchao, Ma Jianbin, Huang Sizhong, Tan Fanglin. 2019. Dynamic evaluation and driving forces of ecosystem services in Quanzhou Bay estuary wetland, China[J]. Chinese Journal of Applied Ecology, 30(12): 4286-4292 (in Chinese with English abstract).
    Yu Linsong, Liu Hongbo, Wan Fang, Hu Zunfang, Luo Huaidong, Zhang Xiuwen. 2021. Geochemical records of the sediments and their significance in Dongping Lake Area, the lower reach of Yellow River, North China[J]. Journal of Groundwater Science and Engineering, 9(2): 140-151.
    Yu Ruilian, Wang Li Juan, Hu GongRen, Zhao Yuanhui. 2008. Speciation and potential ecological risk of heavy metals in sediments from tidal reaches of the Jinjiang River[J]. Earth and Environment, (2): 113-118 (in Chinese with English abstract).
    Yu Ruilian. 2009. Environmental Geochemistry of Heavy Metals in the Intertidal Sediments from Quanzhou Bay, Fujian Province[D]. Changchun: Northeast Normal University, 57-58 (in Chinese with English abstract).
    Yu Ruilian, Hu Gongren, Zhao Jinxiu, Han Zhong. 2013. Distribution, transfer and stock of heavy metals in Kandelia candel mangrove situated in Quanzhou bay Wetland, southeast coast of China[J]. Environmental Chemistry, (1): 125-131 (in Chinese with English abstract).
    Yu Ruilian, Zhang Weifang, Hu Gongren, Zhang Chenchen, Wang Xiaoming. 2015. Pollution history and source analysis of heavy metals in sediments from Jinjiang River Estuary[J]. Research of Environmental Sciences, 28(6): 907-914 (in Chinese with English abstract).
    Zhang Qian. 2020. The Distribution and Ecological Risk Assessment of Heavy Metals and Rare Earth Elements in Soils from the Earth's Critical Zone Observation: A Study on Puding Area in Guizhou Province and Jiulongjiang River Catchment in Fujian Province, China[D]. China University of Geosciences(Beijing), 1-113 (in Chinese with English abstract).
    陈彬, 王金坑, 张玉生, 唐森铭, 林景宏, 郑凤武, 张继伟. 2004. 泉州湾围海工程对海洋环境的影响[J]. 台湾海峡, 23(2): 192-198. https://www.cnki.com.cn/Article/CJFDTOTAL-TWHX200402010.htm
    陈明, 蔡青云, 徐慧, 赵玲, 赵永红. 2015. 水体沉积物重金属污染风险评价研究进展[J]. 生态环境学报, 24(6): 1069-1074. https://www.cnki.com.cn/Article/CJFDTOTAL-TRYJ201506024.htm
    陈能汪, 王德利, 鲁婷, 王芬芳, 姜艳, 林国辉, 庄马展. 2018. 九龙江流域地表水锰的污染来源和迁移转化机制[J]. 环境科学学报, 38(8): 2955-2964. https://www.cnki.com.cn/Article/CJFDTOTAL-HJXX201808001.htm
    程小会, 邓敬颂. 2019. ICP-MS法测定土壤中12种金属元素时的样品前处理方法[J]. 化学分析计量, 28(4): 115-118. https://www.cnki.com.cn/Article/CJFDTOTAL-HXFJ201904035.htm
    段晓勇, 印萍, 刘金庆, 张道来, 曹珂, 高飞, 陈小英. 2016. 滦河口表层沉积物中重金属和多环芳烃的分布、来源及风险评估[J]. 中国环境科学, 36(4): 1198-1206. https://www.cnki.com.cn/Article/CJFDTOTAL-ZGHJ201604041.htm
    官宝聪, 雷怀彦, 林炳煌, 柳浩然, 史跃中, 林建宁. 2010. 泉州湾表层沉积物元素特征及其地球化学意义[J]. 台湾海峡, 29(1): 58-65. https://www.cnki.com.cn/Article/CJFDTOTAL-TWHX201001008.htm
    国家海洋局国家海洋环境监测中心. 2002. 海洋沉积物质量: GB 18668-2002[S].
    李朝新, 刘焱光, 刘振夏, 胡泽建, 边淑华, 刁少波. 2008. 泉州湾泥沙运移与冲淤变化[J]. 海洋科学进展, (1): 26-34. https://www.cnki.com.cn/Article/CJFDTOTAL-HBHH200801003.htm
    李富, 刘赢男, 郭殿凡, 齐兴田, 臧淑英, 倪红伟. 2019. 哈尔滨松江湿地重金属空间分布及潜在生态风险评价[J]. 环境科学研究, 32(11): 1869-1878. https://www.cnki.com.cn/Article/CJFDTOTAL-HJKX201911011.htm
    李桂海. 2007. 厦门海域现代沉积环境及重金属元素的环境地球化学研究[D]. 青岛: 中国海洋大学, 1-107.
    李军, 邹胜章, 梁永平, 林永生, 周长松, 赵一. 2020. 会仙岩溶湿地水体金属元素分布与健康风险评价[J]. 环境科学, 41(11): 4948-4957. https://www.cnki.com.cn/Article/CJFDTOTAL-HJKZ202011021.htm
    李云海, 陈坚, 黄财宾, 王爱军, 李东义. 2010. 泉州湾沉积物重金属分布特征及环境质量评价[J]. 环境科学, 31(4): 931-938. https://www.cnki.com.cn/Article/CJFDTOTAL-HJKZ201004016.htm
    林承奇, 陈枫桦, 胡恭任, 于瑞莲, 黄华斌. 2020. 基于PMF模型解析九龙江河口表层沉积物重金属来源[J]. 地球与环境, 48(4): 443-451. https://www.cnki.com.cn/Article/CJFDTOTAL-DZDQ202004005.htm
    刘冰星, 于瑞莲, 胡恭任, 张丽玲. 2015. 泉州湾河口红树林湿地重金属的分布与迁移[J]. 生态学杂志, 34(4): 1136-1142. https://www.cnki.com.cn/Article/CJFDTOTAL-STXZ201504035.htm
    刘昆, 孙永光, 齐玥, 王伟伟, 袁秀堂, 付元宾, 李培英. 2018. 潮间带沉积物粒度空间分异及其与TC、TN的空间相关性分析[J]. 海洋环境科学, 37(1): 95-100, 150. https://www.cnki.com.cn/Article/CJFDTOTAL-HYHJ201801015.htm
    刘胜然, 王铁宇, 汤洁, 孟晶, 何博, 赵慧, 肖荣波. 2019. 典型城市单元的土壤重金属溯源方法与实证研究[J]. 生态学报, 39(4): 1278-1289. https://www.cnki.com.cn/Article/CJFDTOTAL-STXB201904014.htm
    刘祥奇, 宋磊, 吴奇龙, 李国民, 毛欣. 2020. 基于粒度分布曲线的邻近传播聚类算法在沉积环境识别中的应用——以白洋淀地区为例[J]. 海洋地质与第四纪地质, 40(1): 198-209. https://www.cnki.com.cn/Article/CJFDTOTAL-HYDZ202001019.htm
    刘用清. 1995. 福建省海岸带土壤环境背景值研究及其应用[J]. 海洋环境科学, (2): 68-73. https://www.cnki.com.cn/Article/CJFDTOTAL-HYHJ502.010.htm
    刘豫. 2018. 泉州山美水库、泉州湾沉积物中多溴二苯醚的时空分布和环境风险评价[D]. 泉州: 华侨大学, 1-157.
    刘宗成. 2013. 福建省泉州市矿山开采地质环境现状与治理建议[J]. 能源与环境, (5): 80-81. https://www.cnki.com.cn/Article/CJFDTOTAL-FJNJ201305055.htm
    孟希, 常方强, 林从谋. 2014. 泉州湾冲淤演化特征及控制因素研究[J]. 自然灾害学报, 23(5): 185-191. https://www.cnki.com.cn/Article/CJFDTOTAL-ZRZH201405023.htm
    泉州市海洋与渔业局. 2011.2011年泉州市海洋环境状况公报[R], 1-27.
    泉州市海洋与渔业局. 2018. 2018年泉州市海洋环境状况公报[R]. 1-22.
    饶清华, 李家兵, 胡敏杰, 谢蓉蓉, 张祥雨, 邱宇. 2018. 亚热带河口潮滩湿地N2O排放对氮硫增强输入的响应[J]. 环境科学学报, 38(5): 2045-2054. https://www.cnki.com.cn/Article/CJFDTOTAL-HJXX201805041.htm
    谭芳林, 叶功富, 崔丽娟, 张立华, 罗美娟, 孙志同, 林捷, 罗彩莲, 乐通潮, 黄丽, 林永源. 2010. 泉州湾河口湿地红树林立地类型划分[J]. 湿地科学, 8(4): 366-370. https://www.cnki.com.cn/Article/CJFDTOTAL-KXSD201004011.htm
    汤军健, 陈楚汉, 温生辉. 2011. 泉州湾跨海大桥潮流场数值模拟[C]. 第十五届中国海洋(岸)工程学术讨论会论文集, 太原. 978-985.
    王爱军, 陈坚, 李东义, 卓志强. 2007. 泉州湾海岸湿地沉积物C、N的空间变化[J]. 环境科学, (10): 2361-2368. https://www.cnki.com.cn/Article/CJFDTOTAL-HJKZ200710038.htm
    王伟, 顾效源, 赵辉, 丁喜桂, 叶思源, 肖楠, 于剑峰, 李金鹏. 2018. 山东芝罘湾表层沉积物重金属含量与环境质量评价[J]. 海洋科学, 42(7): 3-11. https://www.cnki.com.cn/Article/CJFDTOTAL-HYKX201807001.htm
    谢文平, 陈政, 朱新平, 郑光明, 蔡泽贤, 张亮, 李子晴. 2020. 珠江河网区鱼塘重金属赋存形态及污染评价[J]. 环境科学与技术, 43(S1): 176-182. https://www.cnki.com.cn/Article/CJFDTOTAL-FJKS2020S1030.htm
    熊绍柏, 金东敏, 孙克忠, 邹以生, 樊叙邦, 杜小刚. 1991. 福建漳州地热田及其邻近地区的地壳深部构造特征[J]. 地球物理学报, (1): 55-63. https://www.cnki.com.cn/Article/CJFDTOTAL-DQWX199101006.htm
    徐劲林, 查轩. 2009. 土壤侵蚀危险度的计算与影响因子分析——以福建安溪红壤水土流失区为例[J]. 地球信息科学学报, 11(5): 577-584. https://www.cnki.com.cn/Article/CJFDTOTAL-DQXX200905005.htm
    徐谅慧, 李加林, 李伟芳, 赵斯, 袁麒翔, 王明月, 杨磊, 卢雪珠. 2014. 人类活动对海岸带资源环境的影响研究综述[J]. 南京师大学报(自然科学版), 37(3): 124-131. https://www.cnki.com.cn/Article/CJFDTOTAL-NJSF201403024.htm
    杨霞, 彭渤, 吴雅霁, 张坤, 匡晓亮, 吴蓓娟, 谭长银, 涂湘林. 2016. 湘江湘潭段河岸沉积物重金属污染地球化学分析[J]. 地球化学, 45(1): 62-76. https://www.cnki.com.cn/Article/CJFDTOTAL-DQHX201601005.htm
    印萍, 林良俊, 陈斌, 肖国强, 曹珂, 杨吉龙, 李梅娜, 段晓勇, 仇建东, 胡云壮, 王磊, 孙晓明. 2017. 中国海岸带地质资源与环境评价研究[J]. 中国地质, 44(5): 842-856. http://geochina.cgs.gov.cn/geochina/article/abstract/20170502?st=search
    游惠明, 韩建亮, 潘德灼, 谢会成, 乐通潮, 马键斌, 黄思忠, 谭芳林. 2019. 泉州湾河口湿地生态系统服务价值的动态评价及驱动力分析[J]. 应用生态学报, 30(12): 4286-4292. https://www.cnki.com.cn/Article/CJFDTOTAL-YYSB201912033.htm
    于瑞莲, 王荔娟, 胡恭任, 赵元慧. 2008. 晋江感潮河段沉积物重金属赋存形态及潜在生态风险[J]. 地球与环境, (2): 113-118. https://www.cnki.com.cn/Article/CJFDTOTAL-DZDQ200802003.htm
    于瑞莲. 2009. 泉州湾潮间带沉积物中重金属元素的环境地球化学研究[D]. 长春: 东北师范大学, 57-58.
    于瑞莲, 胡恭任, 赵金秀, 韩仲. 2013. 泉州湾河口湿地秋茄红树林中重金属的分布、迁移和储量[J]. 环境化学, (1): 125-131. https://www.cnki.com.cn/Article/CJFDTOTAL-HJHX201301020.htm
    于瑞莲, 张伟芳, 胡恭任, 张晨晨, 王晓明. 2015. 晋江河口沉积物重金属污染历史与来源[J]. 环境科学研究, 28(6): 907-914. https://www.cnki.com.cn/Article/CJFDTOTAL-HJKX201506010.htm
    张倩. 2020. 地球关键带土壤中重金属和稀土元素分布及生态风险评价[D]. 中国地质大学(北京), 2-3.
  • Related Articles

    [1]SONG Danhui, HAN Runsheng, WANG Feng, WANG Mingzhi, HE Zhi, ZHOU Wei, LUO Da. Structural ore−controlling mechanism of the Qingshan lead−zinc deposit in northwestern Guizhou, China and its implications for deep prospecting[J]. GEOLOGY IN CHINA, 2024, 51(2): 399-425. DOI: 10.12029/gc20200828002
    [2]ZHANG Geli, TIAN Tao, WANG Ruiting, GAO Weihong, CHANG Zongdong. S, Pb isotopic composition of the Dongtangzi Pb-Zn deposit in the Fengtai ore concentration area of Shaanxi Province for tracing sources of ore-forming materials[J]. GEOLOGY IN CHINA, 2020, 47(2): 472-484. DOI: 10.12029/gc20200214
    [3]WEI Jin, XU Jiehui, WANG Xianguang, YAN Jiayong, ZHANG Xuehui, LIU Jianguang, Meng Delei, HE Xirong, RAO Jianfeng, MENG Zhiyu, OUYANG Yongpeng. Metallogenic conditions and prospecting potential of the Henglu mining area in the Zhuxi ore concentration area[J]. GEOLOGY IN CHINA, 2019, 46(4): 906-918. DOI: 10.12029/gc20190419
    [4]ZHANG Kun, LÜ Qingtian, YAN Jiayong, ZHAO Jinhua. The three-dimensional electrical characteristics of the typical iron and copper deposits in the Lujiang-Zongyang ore concentration area[J]. GEOLOGY IN CHINA, 2019, 46(4): 807-817. DOI: 10.12029/gc20190411
    [5]WANG Gang, FANG Hui, QIU Gengen, HUANG Jimin. The deep electrical structure across Anqing-Guichi ore concentration area[J]. GEOLOGY IN CHINA, 2019, 46(4): 795-806. DOI: 10.12029/gc20190410
    [6]DIAO Lipin, WANG Zhonggui, WU Bangji, XIE Xiaoyong. Information analysis and optimization of ore targets in the Dushan antimony ore concentration area, Guizhou Province[J]. GEOLOGY IN CHINA, 2017, 44(4): 793-809. DOI: 10.12029/gc20170411
    [7]YANG Yi, ZHANG Zhi, TANG Ju-xing, CHEN Yu-chuan, LI Yu-bin, WANG Li-qiang, LI Jian-li, GAO Ke, WANG Qin, YANG Huan-huan. Mineralization, alteration and vein systems of the Bolong porphyry copper deposit in the Duolong ore concentration area, Tibet[J]. GEOLOGY IN CHINA, 2015, 42(3): 759-776. DOI: 10.12029/gc20150326
    [8]WANG Yong-lei, CHEN Yu-chuan, WANG Deng-hong, XU Jue, CHEN Zheng-hui, LIANG Ting. The principal antimony concentration areas in China and their resource potentials[J]. GEOLOGY IN CHINA, 2013, 40(5): 1366-1378. DOI: 10.12029/gc20130503
    [9]HUANG Fan, CHEN Yu-chuan, WANG Deng-hong, YUAN Zhong-xin, CHEN Zheng-hui. A discussion on the major molybdenum ore concentration areas in China and their resource potential[J]. GEOLOGY IN CHINA, 2011, 38(5): 1111-1134. DOI: 10.12029/gc20110501
    [10]YAO Peng, WANG Quan-hai, LI Jin-gao. Ore and ore resource prospects of the Jiama-Qulong ore concentration area, Tibet[J]. GEOLOGY IN CHINA, 2002, (2): 197-202. DOI: 10.12029/gc20020217
  • Cited by

    Periodical cited type(29)

    1. 杨立强,杨伟,张良,高雪,申世龙,王偲瑞,徐瀚涛,贾晓晨,邓军. 热液成矿系统构造控矿理论. 地学前缘. 2024(01): 239-266 .
    2. 方维萱,郭玉乾,李天成,贾润幸,马振飞. 矿田构造岩相学填图理论及应用. 地质力学学报. 2024(01): 88-106 .
    3. 方维萱,郭玉乾,李天成. 滇东地区裂谷盆地内火山—侵入岩序列与金属成矿. 地质学报. 2024(06): 1776-1802 .
    4. 袁峰,李晓晖,田卫东,周官群,汪金菊,葛粲,国显正,郑超杰. 三维成矿预测关键问题. 地学前缘. 2024(04): 119-128 .
    5. 张万益,杜璨,胡雅璐,刘江涛,夏烨,王丰翔,黄宽,史淳元. 地球系统科学基本原理与应用展望. 地质通报. 2024(08): 1277-1288 .
    6. 郭冬,丁文祥,兰学毅,陶龙,张媛媛,陆三明. 基于重磁电震综合解释的三维地质建模——以南陵—宣城矿集区为例. 中国地质调查. 2024(05): 139-152 .
    7. 李帝铨,何继善,蒋奇云,王永兵. 便携式节点化广域电磁探测系统. 地球物理学报. 2024(12): 4544-4554 .
    8. 郭冬,兰学毅,陆三明. 长江中下游铁—铜成矿系统末端三维综合地球物理探测:以宣城矿集区为例. 地质论评. 2023(S1): 225-226 .
    9. 陈昌昕,严加永,史大年,刘振东,赵金花,刘卫强. 成矿系统多尺度地球物理探测. 地质论评. 2023(S1): 347-348 .
    10. 王彪,范裕,周涛发,李飞,赵永建,钟镇海,刘冠宇,高轩昊. 安徽庐枞盆地黄屯隐爆角砾岩筒型金铜矿床碲元素的分布、分配特征及沉淀机制研究. 岩石学报. 2023(10): 3048-3068 .
    11. 张昆,吕庆田,满祖辉,兰学毅,郭东,陶龙,赵金花. 长江中下游成矿带岩浆-成矿系统深部背景和过程的电性结构约束. 岩石学报. 2022(02): 573-583 .
    12. 汤聪,符力耘,肖富森,杜启振. 金属矿地震勘探进展与展望. 地球与行星物理论评. 2022(02): 187-203 .
    13. 徐峣,张永谦,严加永,徐志伍,陈淼,王栩,陈昌昕,张文文. 武夷山成矿带及邻区上地幔速度结构及其对燕山期岩浆-成矿活动的启示. 岩石学报. 2022(02): 529-543 .
    14. 宋明春,宋英昕,李杰,曹春国,丁正江,刘晓,周明岭,李世勇. 深部矿阶梯找矿方法:以胶东金矿集区深部找矿为例. 中国地质. 2022(01): 1-15 . 本站查看
    15. 李天成,方维萱,王磊,陈家乐,张平. 综合地球物理方法找矿应用:以智利科皮亚波地区月亮山磁铁矿型IOCG矿床为例. 地质力学学报. 2022(01): 22-35 .
    16. 孟贵祥,邓震,祁光,汤贺军,肖艳东,王召林,薛融晖. 新疆东准噶尔成矿带浅覆盖区地质填图效果——以杜热一带浅覆盖区基岩地质填图为例. 地质通报. 2022(Z1): 374-387 .
    17. 董基恩,叶高峰,魏文博,金胜,李玉龙,董小军,魏有宁. 华南陆块东北部构造特征、成矿作用与动力学机制——来自大地电磁测深的认识. 地质论评. 2022(03): 921-937 .
    18. 王存智,黄志忠,赵希林,褚平利,黄文成,宋世明,徐杨,杨超. 下扬子地区姚村A型花岗岩年代学、地球化学特征及岩石成因. 中国地质. 2021(02): 549-563 . 本站查看
    19. 徐波,黄旭,蔡晓兵,王克友. 长江中下游安徽段离子吸附型稀土矿成矿条件分析. 四川地质学报. 2021(02): 209-214 .
    20. 张传文,孟庆强,唐玄. 油页岩开采技术现状与展望. 矿产勘查. 2021(08): 1798-1805 .
    21. 叶卓,李秋生,张洪双,王晓冉,韩如冰,吴庆宇. 下扬子及其邻区地壳和上地幔结构的接收函数研究及其地质意义. 地质学报. 2020(03): 707-715 .
    22. 吕庆田,孟贵祥,严加永,张昆,龚雪婧,高凤霞. 长江中下游成矿带铁-铜成矿系统结构的地球物理探测:综合分析. 地学前缘. 2020(02): 232-253 .
    23. 李轲,陈鹏,何宗南. 长江中下游成矿带的地质构造演化研究. 世界有色金属. 2020(06): 241-242 .
    24. 吴迪,于炳松,吴才来,雷敏,徐楠,郑坤. 安徽铜陵焦冲矿田侵入岩锆石U-Pb定年、Hf同位素特征及成因. 中国地质. 2020(04): 1069-1091 . 本站查看
    25. 陈昌昕,严加永,周文月,王志辉,张代磊. 地热地球物理勘探现状与展望. 地球物理学进展. 2020(04): 1223-1231 .
    26. 郑洪伟,李廷栋,贺日政. 长江中下游成矿带深部结构层析成像图像揭示华北板块的东南向俯冲. 地球科学. 2020(11): 4187-4197 .
    27. WAN Qiu,DU Jianguo,YANG Bo,LAN Xueyi,XIAO Xiao,SHI Ke. Deep Mineralization Background and Metallogenic Regularity of the Tongling Ore District. Acta Geologica Sinica(English Edition). 2020(06): 1893-1908 .
    28. 汪青松,张顺林,张金会,张家嘉,尤淼. 皖东北厚覆盖区构造蚀变岩型金矿勘查模式与关键技术——以五河金矿整装勘查区为例. 安徽地质. 2020(04): 295-301 .
    29. 陈宣华,邵兆刚,熊小松,高锐,刘雪军,王财富,李冰,王增振,张义平. 祁连造山带断裂构造体系、深部结构与构造演化. 中国地质. 2019(05): 995-1020 . 本站查看

    Other cited types(7)

Catalog

    Article views (2752) PDF downloads (1901) Cited by(36)

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return