Xing Huang, Xueping Wang, Xiuzhen Li, Zhongzheng Yan, Yongguang Sun. Occurrence and transfer of heavy metals in sediments and plants of Aegiceras corniculatum community in the Qinzhou Bay, southwestern China[J]. Acta Oceanologica Sinica, 2020, 39(2): 79-88. doi: 10.1007/s13131-020-1555-7
Citation: Xing Huang, Xueping Wang, Xiuzhen Li, Zhongzheng Yan, Yongguang Sun. Occurrence and transfer of heavy metals in sediments and plants of Aegiceras corniculatum community in the Qinzhou Bay, southwestern China[J]. Acta Oceanologica Sinica, 2020, 39(2): 79-88. doi: 10.1007/s13131-020-1555-7

Occurrence and transfer of heavy metals in sediments and plants of Aegiceras corniculatum community in the Qinzhou Bay, southwestern China

doi: 10.1007/s13131-020-1555-7
Funds:  The National Basic Research Program (973 Program) of China under contract No. 2010CB951203; the National Natural Science Foundation of China under contract Nos 41201179, 41201525, 41907320 and 41901226; the foundation of the State Key Laboratory of Estuarine and Coastal Research under contract No. SKLEC-KF-201309; the foundations of Guangxi Key Laboratory of Marine Disaster in the Beibu Gulf, Beibu Gulf University under contract Nos 2018TS01 and 2018TS04.
More Information
  • Corresponding author: E-mail: xzli@sklec.ecnu.edu.cn
  • Received Date: 2019-03-12
  • Accepted Date: 2019-05-06
  • Available Online: 2020-04-21
  • Publish Date: 2020-02-25
  • Mangrove wetlands can reduce heavy metal pollution by trapping heavy metals. In this study, the concentration, transport and bioaccumulation of Cr, Cd, Cu, Zn and Pb in the sediments and different parts of Aegiceras corniculatum at four different sites in the Qinzhou Bay in southwestern China were investigated. The results showed that although the potential ecological risk of all five heavy metals was slight, the concentration of Cr was at a moderate pollution level due to the emissions of industries and aquaculture waste water. Core sediment records indicated that the concentrations of heavy metals at the depth of 0–20 cm were relatively high, showing an increasing trend of heavy metals over the past 20–30 years. Cr, Cu, Pb and Cd accumulated mainly in the roots of A. corniculatum, while Zn accumulated mainly in the stems. Aegiceras corniculatum showed the strongest transport capacity for Zn and Cu and the strongest bioaccumulation ability for Cd. Compared with other mangrove communities, A. corniculatum can be chosen as a restoration species in tropical and subtropical coastal zones polluted by Zn, Cu and Cd.
  • †These authors contributed equally to this work.
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  • [1]
    Agoramoorthy G, Chen Fnan, Hsu M J. 2008. Threat of heavy metal pollution in halophytic and mangrove plants of Tamil Nadu, India. Environmental Pollution, 155(2): 320–326. doi: 10.1016/j.envpol.2007.11.011
    [2]
    Alongi D M, Clough B F, Dixon P, et al. 2003. Nutrient partitioning and storage in arid-zone forests of the mangroves Rhizophora stylosa and Avicennia marina. Trees, 17(1): 51–60. doi: 10.1007/s00468-002-0206-2
    [3]
    Analuddin K, Sharma S, Jamili, et al. 2017. Heavy metal bioaccumulation in mangrove ecosystem at the coral triangle ecoregion, Southeast Sulawesi, Indonesia. Marine Pollution Bulletin, 125(1–2): 472–480. doi: 10.1016/j.marpolbul.2017.07.065
    [4]
    Bayen S. 2012. Occurrence, bioavailability and toxic effects of trace metals and organic contaminants in mangrove ecosystems: a review. Environment International, 48: 84–101. doi: 10.1016/j.envint.2012.07.008
    [5]
    Che R G O. 1999. Concentration of 7 heavy metals in sediments and mangrove root samples from Mai Po, Hong Kong. Marine Pollution Bulletin, 39(1–12): 269–279. doi: 10.1016/S0025-326X(99)00056-9
    [6]
    Chen Xiaoyong, Tsang E P K, Chan A L W. 2003. Heavy metals contents in sediments, mangroves and bivalves from Ting Kok, Hong Kong. China Environmental Science (in Chinese), 23(5): 480–484
    [7]
    Cheng Han, Liu Yong, Tam N F Y, et al. 2010. The role of radial oxygen loss and root anatomy on zinc uptake and tolerance in mangrove seedlings. Environmental Pollution, 158(5): 1189–1196. doi: 10.1016/j.envpol.2010.01.025
    [8]
    Cuong D T, Bayen S, Wurl O, et al. 2005. Heavy metal contamination in mangrove habitats of Singapore. Marine Pollution Bulletin, 50(12): 1732–1738. doi: 10.1016/j.marpolbul.2005.09.008
    [9]
    Defew L H, Mair J M, Guzman H M. 2005. An assessment of metal contamination in mangrove sediments and leaves from Punta Mala Bay, Pacific Panama. Marine Pollution Bulletin, 50(5): 547–552. doi: 10.1016/j.marpolbul.2004.11.047
    [10]
    Gan Huayang, Liang Kai, Lin Jinqing, et al. 2013. Distribution and accumulation of arsenic, cadmium and mercury in coastal wetland sediment of northern Beibu Gulf. Marine Geology & Quaternary Geology (in Chinese), 33(3): 15–28
    [11]
    Hakanson L. 1980. An ecological risk index for aquatic pollution control. a sedimentological approach. Water Research, 14(8): 975–1001. doi: 10.1016/0043-1354(80)90143-8
    [12]
    He Qinfei, Jiang Yi, Liu Xiu, et al. 2011. An analysis of soil properties of different types of mangroves in Qinzhou bay. Wetland Science & Management (in Chinese), 7(3): 45–48
    [13]
    Kehrig H A, Pinto F N, Moreira I, et al. 2003. Heavy metals and methylmercury in a tropical coastal estuary and a mangrove in Brazil. Organic Geochemistry, 34(5): 661–669. doi: 10.1016/S0146-6380(03)00021-4
    [14]
    Lau S S S. 2000. The significance of temporal variability in sediment quality for contamination assessment in a coastal wetland. Water Research, 34(2): 387–394. doi: 10.1016/S0043-1354(99)00344-9
    [15]
    Li Chungan, Dai Huabing. 2015. Mechanism analysis of temporal dynamics in mangrove spatial distribution in Guangxi, China: 1960–2010. Acta Ecologica Sinica (in Chinese), 35(18): 5992–6006
    [16]
    Li Liuqiang, Ding Zhenhua, Liu Jinling, et al. 2008. Distribution of heavy metals in surficial sediments from main mangrove wetlands of China and their influence factors. Haiyang Xuebao (in Chinese), 30(5): 159–164
    [17]
    Li Lilin, Mo Liping, Lu Yuan. 2014. Heavy metal content studies in sediments of Qinzhou port mangrove wetlands. Western China Communication Science & Technology (in Chinese), (5): 76–80
    [18]
    Liang Yan, Wong Minghung. 2003. Spatial and temporal organic and heavy metal pollution at Mai Po Marshes Nature Reserve, Hong Kong. Chemosphere, 52(9): 1647–1658. doi: 10.1016/S0045-6535(03)00505-8
    [19]
    Liu Baolin, Hu Ke, Jiang Zhenglong, et al. 2011. Distribution and enrichment of heavy metals in a sediment core from the Pearl River Estuary. Environmental Earth Sciences, 62(2): 265–275. doi: 10.1007/s12665-010-0520-8
    [20]
    Liu Yong, Tam N F Y, Yang Jingxian, et al. 2009. Mixed heavy metals tolerance and radial oxygen loss in mangrove seedlings. Marine Pollution Bulletin, 58(12): 1843–1849. doi: 10.1016/j.marpolbul.2009.07.023
    [21]
    Liu Jinling, Wu Hao, Feng Jianxiang, et al. 2014. Heavy metal contamination and ecological risk assessments in the sediments and zoobenthos of selected mangrove ecosystems, South China. CATENA, 119: 136–142. doi: 10.1016/j.catena.2014.02.009
    [22]
    MacFarlane G R, Burchett M D. 1999. Zinc distribution and excretion in the leaves of the grey mangrove, Avicennia marina (Forsk.) Vierh. Environmental and Experimental Botany, 41(2): 167–175. doi: 10.1016/S0098-8472(99)00002-7
    [23]
    MacFarlane G R, Burchett M D. 2002. Toxicity, growth and accumulation relationships of copper, lead and zinc in the grey mangrove Avicennia marina (Forsk.) Vierh. Marine Environmental Research, 54(1): 65–84. doi: 10.1016/S0141-1136(02)00095-8
    [24]
    MacFarlane G R, Koller C E, Blomberg S P. 2007. Accumulation and partitioning of heavy metals in mangroves: a synthesis of field-based studies. Chemosphere, 69(9): 1454–1464. doi: 10.1016/j.chemosphere.2007.04.059
    [25]
    MacFarlane G R, Pulkownik A, Burchett M D. 2003. Accumulation and distribution of heavy metals in the grey mangrove, Avicennia marina (Forsk.) Vierh.: biological indication potential. Environmental Pollution, 123(1): 139–151. doi: 10.1016/S0269-7491(02)00342-1
    [26]
    Machado W, Silva-Filho E V, Oliveira R R, et al. 2002. Trace metal retention in mangrove ecosystems in Guanabara Bay, SE Brazil. Marine Pollution Bulletin, 44(11): 1277–1280. doi: 10.1016/S0025-326X(02)00232-1
    [27]
    Meng Xianwei, Xia Peng, Li Zhen, et al. 2016. Mangrove degradation and response to anthropogenic disturbance in the Maowei Sea (SW China) since 1926 AD: mangrove-derived OM and pollen. Organic Geochemistry, 98: 166–175. doi: 10.1016/j.orggeochem.2016.06.001
    [28]
    Mokrzycki E, Uliasz-Bocheńczyk A, Sarna M. 2003. Use of alternative fuels in the Polish cement industry. Applied Energy, 74(1–2): 101–111. doi: 10.1016/S0306-2619(02)00136-8
    [29]
    Nagelkerken I, Blaber S J M, Bouillon S, et al. 2008. The habitat function of mangroves for terrestrial and marine fauna: a review. Aquatic Botany, 89(2): 155–185. doi: 10.1016/j.aquabot.2007.12.007
    [30]
    Pan Ke, Wang Wenxiong. 2012. Trace metal contamination in estuarine and coastal environments in China. Science of the Total Environment, 421–422: 3–16. doi: 10.1016/j.scitotenv.2011.03.013
    [31]
    Percival J B, Outridge P M. 2013. A test of the stability of Cd, Cu, Hg, Pb and Zn profiles over two decades in lake sediments near the Flin Flon Smelter, Manitoba, Canada. Science of the Total Environment, 454–455: 307–318. doi: 10.1016/j.scitotenv.2013.03.011
    [32]
    Perdomo L, Ensminger I, Fernanda Espinosa L, et al. 1999. The mangrove ecosystem of the Ciénaga Grande de Santa Marta (Colombia): observations on regeneration and trace metals in sediment. Marine Pollution Bulletin, 37(8–12): 393–403. doi: 10.1016/S0025-326X(99)00075-2
    [33]
    Preda M, Cox M E. 2002. Trace metal occurrence and distribution in sediments and mangroves, Pumicestone region, southeast Queensland, Australia. Environment International, 28(5): 433–449. doi: 10.1016/S0160-4120(02)00074-0
    [34]
    Qin Guangqiu, Yan Chongling, Lu Haoliang. 2007. Influence of heavy metals on the carbohydrate and phenolics in mangrove, Aegiceras corniculatum L., seedlings. Bulletin of Environmental Contamination and Toxicology, 78(6): 440–444. doi: 10.1007/s00128-007-9204-9
    [35]
    Qiu Yaowen, Yu Kefu, Zhang Gan, et al. 2011. Accumulation and partitioning of seven trace metals in mangroves and sediment cores from three estuarine wetlands of Hainan Island, China. Journal of Hazardous Materials, 190(1–3): 631–638. doi: 10.1016/j.jhazmat.2011.03.091
    [36]
    Ramanathan A L, Subramanian V, Ramesh R, et al. 1999. Environmental geochemistry of the Pichavaram mangrove ecosystem (tropical), southeast coast of India. Environmental Geology, 37(3): 223–233. doi: 10.1007/s002540050380
    [37]
    Ramos e Silva C A, da Silva A P, de Oliveira S R, et al. 2006. Concentration, stock and transport rate of heavy metals in a tropical red mangrove, Natal, Brazil. Marine Chemistry, 99(1–4): 2–11. doi: 10.1016/j.marchem.2005.09.010
    [38]
    Ray A K, Tripathy S C, Patra S, et al. 2006. Assessment of Godavari estuarine mangrove ecosystem through trace metal studies. Environment International, 32(2): 219–223. doi: 10.1016/j.envint.2005.08.014
    [39]
    Saenger P, McConchie D, Clark M W. 1991. Mangrove forests as a buffer zone between anthropogenically polluted areas and the sea. In: Proceedings of 1990 Workshop on Coastal Zone Management. Yeppoon, Qld: Geo-Processors Pty Ltd, 280–299
    [40]
    Senthilkumar B, Purvaja R, Ramesh R. 2013. Vertical profile distribution and accumulation of heavy metals in mangrove sediments (Pichavaram), southeast coast of India. Journal of Applied Geochemistry, 15(3): 318–355
    [41]
    Shriadah M M A. 1999. Heavy metals in mangrove sediments of the United Arab Emirates shoreline (Arabian Gulf). Water, Air, and Soil Pollution, 116(3–4): 523–534
    [42]
    Tam N F Y, Wong Y S. 1995. Spatial and temporal variations of heavy metal contamination in sediments of a mangrove swamp in Hong Kong. Marine Pollution Bulletin, 31(4–12): 254–261. doi: 10.1016/0025-326X(95)00141-9
    [43]
    Tam N F Y, Wong Y S. 1996. Retention and distribution of heavy metals in mangrove soils receiving wastewater. Environmental Pollution, 94(3): 283–291. doi: 10.1016/S0269-7491(96)00115-7
    [44]
    Tam N F Y, Wong Y S. 1997. Accumulation and distribution of heavy metals in a simulated mangrove system treated with sewage. Hydrobiologia, 352(1–3): 67–75
    [45]
    Tam N F Y, Wong Y S. 2000. Spatial variation of heavy metals in surface sediments of Hong Kong mangrove swamps. Environmental Pollution, 110(2): 195–205. doi: 10.1016/S0269-7491(99)00310-3
    [46]
    Tam N F Y, Wong Y S, Lan C Y, et al. 1995. Community structure and standing crop biomass of a mangrove forest in Futian Nature Reserve, Shenzhen, China. Hydrobiologia, 295(1–3): 193–201. doi: 10.1007/BF00029126
    [47]
    Tam N F Y, Wong Y S, Wong M H. 2009. Novel technology in pollutant removal at source and bioremediation. Ocean & Coastal Management, 52(7): 368–373
    [48]
    Thomas G, Fernandez T V. 1997. Incidence of heavy metals in the mangrove flora and sediments in Kerala, India. Hydrobiologia, 352(1–3): 77–87
    [49]
    Usman A R A, Alkredaa R S, Al-Wabel M I. 2013. Heavy metal contamination in sediments and mangroves from the coast of Red Sea: Avicennia marina as potential metal bioaccumulator. Ecotoxicology and Environmental Safety, 97: 263–270. doi: 10.1016/j.ecoenv.2013.08.009
    [50]
    Usman A R A, Lee S S, Awad Y M, et al. 2012. Soil pollution assessment and identification of hyperaccumulating plants in chromated copper arsenate (CCA) contaminated sites, Korea. Chemosphere, 87(8): 872–878. doi: 10.1016/j.chemosphere.2012.01.028
    [51]
    Wang Beihong, Ma Zhihong, Fu Weili. 2008. Determination of heavy metal in soil by high pressure sealed vessels assisted digestion-atomic absorption spectrometry. Transactions of the Chinese Society of Agricultural Engineering (in Chinese), 24(S2): 255–259
    [52]
    Wang Qiang, Mei Degang, Chen Jingyan, et al. 2019. Sequestration of heavy metal by glomalin-related soil protein: implication for water quality improvement in mangrove wetlands. Water Research, 148: 142–152. doi: 10.1016/j.watres.2018.10.043
    [53]
    Wang Xiaojuan, Wang Wenbin, Yang Long, et al. 2015. Transport pathways of cadmium (Cd) and its regulatory mechanisms in plant. Acta Ecologica Sinica (in Chinese), 35(23): 7921–929
    [54]
    Weis J S, Weis P. 2004. Metal uptake, transport and release by wetland plants: implications for phytoremediation and restoration. Environment International, 30(5): 685–700. doi: 10.1016/j.envint.2003.11.002
    [55]
    Wu Qihang, Tam N F Y, Leung J Y S, et al. 2014. Ecological risk and pollution history of heavy metals in Nansha mangrove, South China. Ecotoxicology and Environmental Safety, 104: 143–151. doi: 10.1016/j.ecoenv.2014.02.017
    [56]
    Xia Peng, Meng Xianwei, Li Zhen, et al. 2016. Sedimentary records of mangrove evolution during the past one hundred years based on stable carbon isotope and pollen evidences in Maowei, SW China. Journal of Ocean University of China, 15(3): 447–455. doi: 10.1007/s11802-016-2687-4
    [57]
    Xu Youhou, Liao Riquan, Su Jia, et al. 2017. The content and pollution evaluation of six heavy metals in surface water and plankton in the eastern area of Qinzhou Bay. Oceanologia et Limnologia Sinica (in Chinese), 48(5): 960–969
    [58]
    Yan Xinxing, Liu Guoting. 2006. Study on deposition characteristics and channel siltation in offshore zone of Qinzhou Bay. Journal of Waterway and Harbor (in Chinese), 27(2): 79–83
    [59]
    Yan Zhongzheng, Tam N F Y. 2013. Differences in lead tolerance between Kandelia obovata and Acanthus ilicifolius seedlings under varying treatment times. Aquatic Toxicology, 126: 154–162. doi: 10.1016/j.aquatox.2012.10.011
    [60]
    Zhang Dan, Li Darong, Chen Jianhua, et al. 2014a. Distribution and pollution characteristics of heavy metals in marine and riverine sediments of Qinzhou Bay, China. Safety and Environmental Engineering (in Chinese), 21(5): 11–15
    [61]
    Zhang Shaofeng, Lin Mingyu, Wei Chunlei, et al. 2010. Pollution assessment and potential ecological risk evolution for heavy metals in the sediments of Qinzhou Bay. Marine Science Bulletin (in Chinese), 29(4): 450–454
    [62]
    Zhang Zaiwang, Xu Xiangrong, Sun Yuxin, et al. 2014b. Heavy metal and organic contaminants in mangrove ecosystems of China: a review. Environmental Science and Pollution Research, 21(20): 11938–11950. doi: 10.1007/s11356-014-3100-8
    [63]
    Zhou Yanwu, Peng Yisheng, Li Xulin, et al. 2011. Accumulation and partitioning of heavy metals in mangrove rhizosphere sediments. Environmental Earth Sciences, 64(3): 799–807. doi: 10.1007/s12665-011-0904-4
    [64]
    Zuo Ping, Wang Yaping, Min Fengyang, et al. 2009. Distribution characteristics of heavy metals in surface sediments and core sediments of the Shenzhen Bay in Guangdong Province, China. Acta Oceanologica Sinica, 28(6): 53–60
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