海河流域沉积物中典型重金属的生态风险评估及验证

李宏伟, 张彦峰, 阳金希, 祝凌燕. 海河流域沉积物中典型重金属的生态风险评估及验证[J]. 生态毒理学报, 2020, 15(2): 149-159. doi: 10.7524/AJE.1673-5897.20190304001
引用本文: 李宏伟, 张彦峰, 阳金希, 祝凌燕. 海河流域沉积物中典型重金属的生态风险评估及验证[J]. 生态毒理学报, 2020, 15(2): 149-159. doi: 10.7524/AJE.1673-5897.20190304001
Li Hongwei, Zhang Yanfeng, Yang Jinxi, Zhu Lingyan. Ecological Risk Assessment and Verification of the Typical Heavy Metals for Sediment of Haihe River Basin[J]. Asian journal of ecotoxicology, 2020, 15(2): 149-159. doi: 10.7524/AJE.1673-5897.20190304001
Citation: Li Hongwei, Zhang Yanfeng, Yang Jinxi, Zhu Lingyan. Ecological Risk Assessment and Verification of the Typical Heavy Metals for Sediment of Haihe River Basin[J]. Asian journal of ecotoxicology, 2020, 15(2): 149-159. doi: 10.7524/AJE.1673-5897.20190304001

海河流域沉积物中典型重金属的生态风险评估及验证

    作者简介: 李宏伟(1993-),男,硕士研究生,研究方向为环境化学,E-mail:2244977404@qq.com
  • 基金项目:

    国家水体污染控制与治理科技重大专项子课题(2017ZX070301002)

  • 中图分类号: X171.5

Ecological Risk Assessment and Verification of the Typical Heavy Metals for Sediment of Haihe River Basin

  • Fund Project:
  • 摘要: 沉积物重金属污染及其生态风险评估日益受到关注,而沉积物质量基准是开展生态风险评估的有力工具。本研究通过物种敏感度分布法(species sensitivity distributions, SSD)和急慢性毒性比(acute to chronic ratios, ACR)推导了镍、铜、锌、镉和铅的沉积物质量基准(sediment quality guideline, SQG)。在获得合理的重金属沉积物慢性毒性数据的基础上,采用S-Logistic模型拟合镍、铜、镉和铅的慢性SSD曲线,采用S-Gompertz模型拟合锌的慢性SSD曲线。得到镍、铜、锌、镉和铅沉积物质量基准低值(sediment quality guideline low value, SQGlow)分别为18.6、69.9、107、1.26和38.4 mg kg−1,应用ACRs,得到相应的沉积物质量基准高值(sediment quality guideline high value, SQGhigh)分别为167、226、556、10.1和384 mg kg−1。与加拿大和澳大利亚重金属沉积物基准值具有一定的可比性。选择花翅摇蚊(Chironomus kiiensis)、伸展摇蚊(Chironomus tentans)和霍甫水丝蚓(Limnodrilus hoffmeisteri)3种底栖生物作为受试生物,验证基准值对海河流域沉积物重金属毒性的预测能力。结果表明,利用SQGs预测沉积物毒性的总准确率为76.2%,3种底栖生物验证准确率从高至低为:花翅摇蚊>伸展摇蚊>霍甫水丝蚓。
  • 加载中
  • Mendonca R M, Daley J M, Hudson M L, et al. Metal oxides in surface sediment control nickel bioavailability to benthic macroinvertebrates[J]. Environmental Science & Technology, 2017, 51:13407-13416
    韩雨薇,张彦峰,陈萌,等.沉积物中重金属Pb和Cd对河蚬的毒性效应研究[J].生态毒理学报, 2015, 10(4):129-137

    Han Y W, Zhang Y F, Chen M, et al. Toxicity of Pb/Cdspiked freshwater sediments to Corbicula fluminea[J]. Asian Journal of Ecotoxicology, 2015, 10(4):129-137(in Chinese)

    阳金希,张彦峰,祝凌燕.中国七大水系沉积物中典型重金属生态风险评估[J].环境科学研究, 2017, 30(3):423-432

    Yang J X, Zhang Y F, Zhu L Y. Pollution and risk assessment of typical heavy metals in river sediment of seven major watersheds in China[J]. Research of Environmental Sciences, 2017, 30(3):423-432(in Chinese)

    蔡深文,刘斌,高智席,等.遵义市湘江河表层沉积物中重金属赋存形态及潜在生态风险[J].环境科学研究, 2018, 31(3):562-568

    Cai S W, Liu B, Gao Z X, et al. Speciation and ecological risk of heavy metals in surface sediments of Xiangjiang River in Zunyi City[J]. Research of Environmental Sciences, 2018, 31(3):562-568(in Chinese)

    Fu J, Zhao C P, Luo Y P, et al. Heavy metals in surface sediments of the Jialu River, China:Their relations to environmental factors[J]. Journal of Hazardous Materials, 2014, 270:102-109
    钟文珏,曾毅,祝凌燕.水体沉积物质量基准研究现状[J].生态毒理学报, 2013, 8(3):285-294

    Zhong W J, Zeng Y, Zhu L Y. Current research status of sediment quality criteria[J]. Asian Journal of Ecotoxicology, 2013, 8(3):285-294(in Chinese)

    陈云增,杨浩,张振克,等.水体沉积物环境质量基准建立方法研究进展[J].地球科学进展, 2006, 21(1):53-61

    Chen Y Z, Yang H, Zhang Z K, et al. Review of approaches for deriving sediment quality guidelines[J]. Advances in Earth Sciences, 2006, 21(1):53-61(in Chinese)

    侯俊,王超,王沛芳,等.基于平衡分配法的太湖沉积物重金属质量基准及其在生态风险评价中的应用研究[J].环境科学学报, 2012, 32(12):2951-2959

    Hou J, Wang C, Wang P F, et al. Sediment quality guidelines and potential ecological risk assessment for heavy metals based on equilibrium partitioning approach in Taihu Lake[J]. Acta Scientiae Circumstantiae, 2012, 32(12):2951-2959(in Chinese)

    蒋博峰,桑磊鑫,孙卫玲,等.湘江沉积物镉和汞质量基准的建立及其应用[J].环境科学, 2013, 34(1):98-107

    Jiang B F, Sang L X, Sun W L, et al. Derivation and application of sediment quality criteria of Cd and Hg for the Xiangjiang River[J]. Environmental Science, 2013, 34(1):98-107(in Chinese)

    田大勇,常琛朝,王成志,等.环境中重金属和有机污染物的物种敏感性分布研究进展[J].生态毒理学报, 2015, 10(3):38-49

    Tian D Y, Chang C C, Wang C Z, et al. Review of species sensitivity distributions for heavy metals and organic contaminants[J]. Asian Journal of Ecotoxicology, 2015, 10(3):38-49(in Chinese)

    Vangheluwe M L U, Verdonck F A M, Besser J M, et al. Improving sediment-quality guidelines for nickel:Development and application of predictive bioavailability models to assess chronic toxicity of nickel in freshwater sediments[J]. Environmental Toxicology and Chemistry, 2013, 32(11):2507-2519
    Simpson S L, Batley G E, Chariton A A. Revision of the ANZECC/ARMCANZ Sediment Quality Guidelines (CSIRO Land and Water Science Report 08/07)[R]. Canberra:ANZECC/ARMCANZ, 2013
    陈心悦,张彦峰,沈兆爽,等.中国七大水系淡水沉积物中林丹(γ-HCH)的生态风险评估[J].生态毒理学报, 2018, 13(3):103-111

    Chen X Y, Zhang Y F, Shen Z S, et al. Ecological risk assessment of γ-HCH for freshwater sediment of seven major systems in China[J]. Asian Journal of Ecotoxicity, 2018, 13(3):103-111(in Chinese)

    雷炳莉,金小伟,黄圣彪,等.太湖流域3种氯酚类化合物水质基准的探讨[J].生态毒理学报, 2009, 4(1):40-49

    Lei B L, Jin X W, Huang S B, et al. Discussion of quality criteria for three chlorophenols in Taihu Lake[J]. Asian Journal of Ecotoxicology, 2009, 4(1):40-49(in Chinese)

    吴丰昌,冯承莲,曹宇静,等.锌对淡水生物的毒性特征与水质基准的研究[J].生态毒理学报, 2011, 6(4):367-382

    Wu F C, Feng C L, Cao Y J, et al. Toxicity characteristic of zinc to freshwater biota and its water quality criteria[J]. Asian Journal of Ecotoxicology, 2011, 6(4):367-382(in Chinese)

    吴丰昌,冯承莲,曹宇静,等.我国铜的淡水生物水质基准研究[J].生态毒理学报, 2011, 6(6):617-628

    Wu F C, Feng C L, Cao Y J, et al. Aquatic life ambient freshwater quality criteria for copper in China[J]. Asian Journal of Ecotoxicology, 2011, 6(6):617-628(in Chinese)

    何丽,蔡靳,高富,等.铅水生生物基准研究与初步应用[J].环境科学与技术, 2014, 37(4):31-37

    , 95 He L, Cai J, Gao F, et al. Studies of freshwater aquatic life water ambient quality criteria for lead and their tentative application to risk assessment[J]. Environmental Science and Technology, 2014, 37(4):31-37, 95(in Chinese)

    Tang W Z, Zhang C, Zhao Y, et al. Pollution, toxicity and ecological risk of heavy metals in surface river sediments of a large basin undergoing rapid economic development[J]. Environmental Toxicology and Chemistry, 2017, 5(36):1149-1155
    Zhang C, Shan B Q, Tang W Z, et al. Heavy metal concentrations and speciation in riverine sediments and the risks posed in three urban belts in the Haihe Basin[J]. Ecotoxicology and Environmental Safety, 2017, 139:263-271
    刘征涛,王晓南,闫振广."三门六科"水质基准最少毒性数据需求原则[J].环境科学研究, 2012, 25(12):1364-1369

    Liu Z T, Wang X N, Yan Z G. Discussion of minimum "3 Phyla and 6 Families" toxicity data requirements for deriving water quality criteria[J]. Research of Environmental Sciences, 2012, 25(12):1364-1369(in Chinese)

    金小伟,王业耀,王子健.淡水水生态基准方法学研究:数据筛选与模型计算[J].生态毒理学报, 2014, 9(1):1-13

    Jin X W, Wang Y Y, Wang Z J. Methodologies for deriving aquatic life criteria (ALC):Data screening and model calculating[J]. Asian Journal of Ecotoxicology, 2014, 9(1):1-13(in Chinese)

    刘建梅,王蕾,刘济宁,等.微宇宙技术和物种敏感度分布曲线法评估铜离子生态危害比对研究[J].生态毒理学报, 2015, 10(4):34-46

    Liu J M, Wang L, Liu J N, et al. A microcosm study compared to the species sensitiviy distribution approach:A case study with the copper ion[J]. Asian Journal of Ecotoxicology, 2015, 10(4):34-46(in Chinese)

    Organization for Economic Cooperation and Development (OECD). OECD guidelines for the testing of chemicals No.225 sediment-water Lumbriculus toxicity test using spiked sediment[S]. Paris:OECD, 2007
    OECD. OECD guidelines for the testing of chemicals No. 218 sediment-water chironomid toxicity test using spiked sediment[S]. Paris:OECD, 2004
    Zhang Y F, Han Y W, Yang J X, et al. Toxicities and risk assessment of heavy metals in sediments of Taihu Lake, China, based on sediment quality guidelines[J]. Journal of Environmental Sciences, 2017, 62:31-38
    Long E R, Jay F L, Macdonald D D. Predicting toxicity in marine sediments with numerical sediment quality guidelines[J]. Environmental Toxicology and Chemistry, 1998, 17(4):714-727
    Anderson B S, Lowe S, Phillips B M, et al. Relative sensitivities of toxicity test protocols with the amphipods Eohaustorius estuarius and Ampelisca abdita[J]. Ecotoxicology and Environmental Safety, 2008, 69(1):24-31
    Gale S A, King C K, Hyne R V. Chronic sublethal sediment toxicity testing using the estuarine amphipod, Melita plumulosa (Zeidler):Evaluation using metal-spiked and field contaminated sediments[J]. Environmental Toxicology and Chemistry, 2006, 25(7):1887-1898
    Jeppe K J, Yang J H, Long S M, et al. Detecting copper toxicity in sediments:From the subindividual level to the population level[J]. Journal of Applied Ecology, 2017, 54(5):1331-1342
    Milani D, Reynoldson T B, Borgmann U, et al. The relative sensitivity of four benthic invertebrates to metals in spiked-sediment exposures and application to contaminated field sediment[J]. Environmental Toxicology and Chemistry, 2003, 22(4):845-854
    Roman Y E, Schamphelaere K A C, Nguyen L T H, et al. Chronic toxicity of copper to five benthic invertebrates in laboratory-formulated sediment:Sensitivity comparison and preliminary risk assessment[J]. Science of the Total Environment, 2007, 387(1-3):128-140
    Ward T J, Gaertner K E, Gorsuch J W, et al. Survival and growth of the marine polychaete, Neanthes arenaceodentata, following laboratory exposure to copper-spiked sediment[J]. Bulletin of Environmental Contamination and Toxicology, 2015, 95(4):428-433
    沈洪艳,张红燕,刘丽,等.淡水沉积物中重金属对底栖生物毒性及其生物有效性研究[J].环境科学学报, 2014, 34(1):272-280

    Shen H Y, Zhang H Y, Liu L, et al. Bio-toxicity and bioavailability of metal-spiked freshwater sediments to benthic invertebrates[J]. Acta Scientiae Circumstantiae, 2014, 34(1):272-280(in Chinese)

    韩雨薇,钟文珏,张彦峰,等.沉积物中Pb和Cd对泥鳅的毒性效应及其基准阈值的验证[J].环境科学研究, 2015, 28(7):1078-1084

    Han Y W, Zhong W J, Zhang Y F, et al. Toxicities of Pb/Cd-spiked freshwater sediments to Misgurnus anguillicaudatus and assessment of Pb/Cd sediment quality guidelines[J]. Research of Environmental Sciences, 2015, 28(7):1078-1084(in Chinese)

    Yake B, Norton D, Stinson M. Application of the triad approach to freshwater sediment assessment:An initial investigation of sediment quality near Gas Works Park, Lake Union. Segment No. 04-08-01-04-08-03[R]. Olympia:Water Quality Investigations Section Washington Department of Ecology, 1986
    Leire M F, Maite M M, Pilar R. Toxicity and critical body residues of Cd, Cu and Cr in the aquatic oligochaete Tubifex tubifex (Muller) based on lethal and sublethal effects[J]. Ecotoxicology, 2013, 22(10):1445-1460
    Malueg K W, Schytema G S, Krawczyk D F, et al. Laboratory sediment toxicity tests, sediment chemistry and distribution of benthic macroinvertebrates in sediments from the Keweenaw Waterway, Michigan[J]. Environmental Toxicology and Chemistry, 1984, 3(2):233-242
    United States Environmental Protection Agency (US EPA). Comparative toxicity testing of selected benthic and epibenthic organisms for the development of sediment quality test protocols (EPA/600/R-99/011)[R]. Washington DC:Office of Research and Development, 1999
    Sparling D W, Sherry K, Manuel O S. Effects of leadcontaminated sediment on Rana sphenocephala tadpoles[J]. Archives of Environmental Contamination and Toxicology, 2006, 51(3):458-466
    Stanley J K, Alan J K, Farrar J D, et al. Evaluation of reduced sediment volume procedures for acute toxicity tests using the estuarine amphipod Leptocheirus plumulosus[J]. Environmental Toxicology and Chemistry, 2010, 29(12):2769-2776
    洪松.水体沉积物重金属质量基准研究[D].北京:北京大学, 2001:109-125 Hong S. Study on aquatic sediment quality criteria for heavy metals[D]. Beijing:Peking University, 2001:109

    -125(in Chinese)

    Mcgreer E R. Factors affecting the distribution of the bivalve, Macoma balthica (L.) on a mudflat receiving sewage effluent, Fraser River estuary, British Columbia[J]. Marine Environmental Research, 1982, 7(2):131-149
    Burton G A, Nguyen L T H, Janssen C, et al. Field validation of sediment zinc toxicity[J]. Environmental Toxicology and Chemistry, 2005, 24(3):541-553
    Lee G F. Evaluation of the significance of waterway sediment associated contaminants on water quality at the dredged material disposal[J]. Aquatic Toxicology and Hazard Evaluation, 1977, 634:196-213
    Haroldo L, Mendez F L, Martinez M M, et al. Acute toxicity of zinc and arsenic to the warmwater aquatic oligochaete Branchiura sowerbyi as compared to its coldwater counterpart Tubifex tubifex (Annelida, Clitellata)[J]. Journal of Soils and Sediments, 2016, 16(12):2766-2774
    Malueg K W, Schuytema G S, Gakstatter J H, et al. Toxicity of sediments from three metal contaminated areas[J]. Environmental Toxicology and Chemistry, 2010, 3(3):279-291
    Besser J M, Brumbaugh W G, Ingersoll C G, et al. Chronic toxicity of nickel spiked freshwater sediment:Variation in toxicity among eight invertebrate taxa and eight sediment[J]. Environmental Toxicology and Chemistry, 2013, 32(11):2495-2506
    United States Environmental Protection Agency (US EPA). National Recommended Water Quality Criteria[R]. Washington DC:Office of Science and Technology, 2009
    闫振广,孟伟,刘征涛,等.我国淡水水生生物镉基准研究[J].环境科学学报, 2009, 29(11):2393-2406

    Yan Z G, Meng W, Liu Z T, et al. Biological criteria for freshwater Cd in China[J]. Acta Scientiae Circumstantiae, 2009, 29(11):2393-2406(in Chinese)

    Stringer T J, Glover C N, Keesing V, et al. Development of acute and chronic sediment bioassays with the harpacticoid copepod Quinquelaophonte sp.[J]. Ecotoxicology and Environmental Safety, 2014, 99:82-91
  • 加载中
计量
  • 文章访问数:  4630
  • HTML全文浏览数:  4630
  • PDF下载数:  137
  • 施引文献:  0
出版历程
  • 收稿日期:  2019-03-04
李宏伟, 张彦峰, 阳金希, 祝凌燕. 海河流域沉积物中典型重金属的生态风险评估及验证[J]. 生态毒理学报, 2020, 15(2): 149-159. doi: 10.7524/AJE.1673-5897.20190304001
引用本文: 李宏伟, 张彦峰, 阳金希, 祝凌燕. 海河流域沉积物中典型重金属的生态风险评估及验证[J]. 生态毒理学报, 2020, 15(2): 149-159. doi: 10.7524/AJE.1673-5897.20190304001
Li Hongwei, Zhang Yanfeng, Yang Jinxi, Zhu Lingyan. Ecological Risk Assessment and Verification of the Typical Heavy Metals for Sediment of Haihe River Basin[J]. Asian journal of ecotoxicology, 2020, 15(2): 149-159. doi: 10.7524/AJE.1673-5897.20190304001
Citation: Li Hongwei, Zhang Yanfeng, Yang Jinxi, Zhu Lingyan. Ecological Risk Assessment and Verification of the Typical Heavy Metals for Sediment of Haihe River Basin[J]. Asian journal of ecotoxicology, 2020, 15(2): 149-159. doi: 10.7524/AJE.1673-5897.20190304001

海河流域沉积物中典型重金属的生态风险评估及验证

    作者简介: 李宏伟(1993-),男,硕士研究生,研究方向为环境化学,E-mail:2244977404@qq.com
  • 南开大学环境科学与工程学院, 环境污染过程与基准教育部重点实验室, 天津 300350
基金项目:

国家水体污染控制与治理科技重大专项子课题(2017ZX070301002)

摘要: 沉积物重金属污染及其生态风险评估日益受到关注,而沉积物质量基准是开展生态风险评估的有力工具。本研究通过物种敏感度分布法(species sensitivity distributions, SSD)和急慢性毒性比(acute to chronic ratios, ACR)推导了镍、铜、锌、镉和铅的沉积物质量基准(sediment quality guideline, SQG)。在获得合理的重金属沉积物慢性毒性数据的基础上,采用S-Logistic模型拟合镍、铜、镉和铅的慢性SSD曲线,采用S-Gompertz模型拟合锌的慢性SSD曲线。得到镍、铜、锌、镉和铅沉积物质量基准低值(sediment quality guideline low value, SQGlow)分别为18.6、69.9、107、1.26和38.4 mg kg−1,应用ACRs,得到相应的沉积物质量基准高值(sediment quality guideline high value, SQGhigh)分别为167、226、556、10.1和384 mg kg−1。与加拿大和澳大利亚重金属沉积物基准值具有一定的可比性。选择花翅摇蚊(Chironomus kiiensis)、伸展摇蚊(Chironomus tentans)和霍甫水丝蚓(Limnodrilus hoffmeisteri)3种底栖生物作为受试生物,验证基准值对海河流域沉积物重金属毒性的预测能力。结果表明,利用SQGs预测沉积物毒性的总准确率为76.2%,3种底栖生物验证准确率从高至低为:花翅摇蚊>伸展摇蚊>霍甫水丝蚓。

English Abstract

参考文献 (50)

返回顶部

目录

/

返回文章
返回