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第 5 期                        李扬等:基于生物配位体模型的汾河铜水质基准研究                                       · 1717 ·

                 Conservation,2011,9(3):59-64.                      2017.
            [16]   张旭芳. 汾河上游藻类植物群落结构及水质评价[D]. 太原: 山           [27]   王亚妮.春夏季汾河二库浮游动物群落特征及其水质评价[J].
                 西大学, 2013.                                         山西水利科技,2018(4):93-96.
            [17]   杨国义, 闫雨龙, 何秋生, 等.汾河沉积物中重金属污染及生态                  WANG Y N. Characteristics of zooplankton community and its
                 风险评价[J]. 太原科技大学学报,2010,31(4):339-344.              water quality evaluation of the Fenhe second reservoir in spring
                 YANG G Y, YAN Y L, HE Q S, et al. Pollution and ecological  and summer[J]. Shanxi Hydrotechnics,2018(4):93-96.
                 risk assessment of heavy metals in sediment of Fenhe River[J].  [28]   王林芳, 李华, 党晋华, 等.汾河上中游流域大型底栖动物群落
                 Journal of Taiyuan University of Science and Technology,2010,  特征及其多样性评价[J]. 环境化学,2020,39(1):128-137.
                 31(4):339-344.                                     WANG L F, LI H, DANG J H, et al. Characteristics and diversity
            [18]   霍雪萍.汾河流域沉积物中重金属分布及潜在风险评价[J]. 太                   evaluation of macrobenthos in upper and middle reaches of Fen
                 原科技大学学报,2017,38(5):397-404.                        River Basin[J]. Environmental Chemistry,2020,39(1):128-137.
                 HUO  X  P.  Distribution  of  heavy  metals  in  sediments  of  Fen  [29]   US  EPA,  2016.  Update  of  ambient  water  quality  criteria  for
                 River  and  potential  risk  evaluation[J].  Journal  of  Taiyuan  cadmium[R].  United  States  Environmental  Protection  Agency
                 University of Science and Technology,2017,38(5):397-404.  2016.
            [19]   高爱枝, 张铁刚, 武如心.汾河临汾断面原生动物种类初步调              [30]   NEBEKER A V, CAIRNS M A, ONJUKKA S T, et al. Effect of
                 查[J]. 山西农业大学学报,2000,20(2):138-139.                 age  on  sensitivity  of  Daphnia  magna  to  cadmium,  copper  and
                 GAO  A  Z,  ZHANG  T  G,  WU  R  X.  Pretimiary  investigation  cyanazine[J].  Environmental  Toxicology  and  Chemistry,1986,
                 about the variery of protozoon in Linfen section of Fen River[J].  5(6):527.
                 Journal of Shanxi Agricultural University,2000,20(2):138-139.  [31]   BAIRD  D  J,  BARBER  I,  BRADLEY  M,  et  al.  A  comparative
            [20]   王慧敏, 张峰, 庞春花, 等.汾河流域中下游植物群落物种多样                  study of genotype sensitivity to acute toxic stress using clones of
                 性与土壤因子的关系[J]. 西北植物学报,2013,33(10):2077-             Daphnia  magna straus[J].   Ecotoxicology  and  Environmental
                 2085.                                              Safety,1991,21(3):257-265.
                 WANG H M, ZHANG F, PANG C H, et al. Interrelation between  [32]   ZHOU T Y, CAO Y, QIN L M, et al. Application of biotic ligand
                 plant species diversity and soil factors in the middle and lower  model for the acute toxicity of copper to Daphnia magna in water
                 reaches  of  Fenhe  River[J].  Acta  Botanica  Boreali-Occidentalia  of  Liaohe  River  and  Taihu  Lake[J].  Environmental  Science,
                 Sinica,2013,33(10):2077-2085.                      2014,35(5):1962-1967.
            [21]   王爱爱, 冯佳, 谢树莲.汾河中下游浮游藻类群落特征及水质分             [33]   CARLSON  A  R,  NELSON  H,  HAMMERMEISTER  D.
                 析[J]. 环境科学,2014,35(3):915-923.                     Development and validation of site-specific water quality criteria
                 WANG  A  A,  FENG  J,  XIE  S  L.  Phytoplankton  community  for  copper[J].  Environmental  Toxicology  and  Chemistry,1986,
                 structure and assessment of water quality in the middle and lower  5(11):997-1012.
                 reaches of Fenhe River[J]. Environmental Science,2014,35(3):  [34]   BELANGER S E, FARRIS J L, CHERRY D S. Effects of diet,
                 915-923.                                           water  hardness,  and  population  source  on  acute  and  chronic
            [22]   朱国清, 赵瑞亮, 胡振平, 等.山西省主要河流鱼类分布及物种                  copper  toxicity  to  Ceriodaphnia  dubia[J].  Archives  of
                 多样性分析[J]. 水产学杂志,2014,27(2):38-45.                  Environmental  Contamination  and  Toxicology,1989 ,18 (4 ) :
                 ZHU  G  Q,  ZHAO  R  L,  HU  Z  P,  et  al.  Fish  distribution  and  601-611.
                 species diversity in major rivers in Shanxi Province[J]. Chinese  [35]   ORIS J T, WINNER R W, MOORE M V. A four-day survival
                 Journal of Fisheries,2014,27(2):38-45.             and  reproduction  toxicity  test  for  Ceriodaphnia  dubia[J].
            [23]   李文华, 赵瑞亮.汾河渔业资源现状及分析[J]. 山西水利,                   Environmental Toxicology and Chemistry,1991,10(2):217.
                 2015,31(5):31-32.                            [36]   DIAMOND  J  M,  KOPLISH  D  E,  MCMAHON  J  III,  et  al.
            [24]   李安萍, 高晋华.汾河太原段底栖动物群落结构与水质生物学                     Evaluation  of  the  water-effect  ratio  procedure  for  metals  in  a
                 评价[J]. 太原师范学院学报(自然科学版),2016,15(4):81-86.           riverine  system[J].  Environmental  Toxicology  and  Chemistry,
                 LI A P, GAO J H. Community structure of macrozoobenthos and  1997,16(3):509-520.
                 bioassessment  of  water  quality  in  Fenhe  River[J].  Journal  of  [37]   BELANGER  S  E,  CHERRY  D  S.  Interacting  effects  of  pH
                 Taiyuan  Normal  University  (Natural  Science  Edition),2016,  acclimation, pH, and heavy metals on acute and chronic toxicity
                 15(4):81-86.                                       to  Ceriodaphnia  dubia  (Cladocera)[J].  Journal  of  Crustacean
            [25]   冯佳, 郭宇宁, 王飞, 等.太原汾河景区浮游植物群落结构及其                  Biology,1990,10(2):225-235.
                 与环境因子关系分析[J]. 环境科学,2016,37(4):1353-1361.     [38]   SCHUBAUER-BERIGAN M K, DIERKES J R, MONSON P D,
                 FENG J, GUO Y N, WANG F, et al. Relationship between the  et  al.  PH-DEPENDENT  toxicity  of  cd,  Cu,  Ni,  Pb  and  Zn  to
                 phytoplankton  distribution  and  environmental  factors  in  Fenhe  Ceriodaphnia dubia, Pimephales promelas, Hyalella azteca and
                 scenic spot of Taiyuan[J]. Environmental Science,2016,37(4):  Lumbriculus  variegatus[J].  Environmental  Toxicology  and
                 1353-1361.                                         Chemistry,1993,12(7):1261.
            [26]   张淼淼. 汾河上中游植被数量生态研究[D]. 太原: 山西大学,           [39]   WANG W B, CHEN S, WU M, et al. Predicting copper toxicity
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