Page 183 - 《环境工程技术学报》2023年第1期
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第 1 期                 翁巧然等:基于控制单元划分的大辽河流域污染物空间分布及来源解析                                      · 179 ·

            [11]   王晋虎, 古向前, 周曼.京杭运河(苏州段)污染负荷核算及源解            [20]   孙宇.基于多方法的浑河流域水质模拟研究[J]. 陕西水利,
                 析[J]. 能源与环保,2021,43(2):73-77.                      2021(3):77-80.
                 WANG J H, GU X Q, ZHOU M. Pollution load calculation and  SUN  Y.  Research  on  water  quality  simulation  of  Hunhe  River
                 source  apportionment  of  Beijing-Hangzhou  Canal  (Suzhou  Basin  based  on  multiple  methods[J].  Shaanxi  Water  Resources,
                 section)[J].  China  Energy  and  Environmental  Protection,2021,  2021(3):77-80.
                 43(2):73-77.                                 [21]   李晓连. 基于水环境容量的辽河铁岭段污染负荷总量分配[D].
            [12]   荆延德, 樊蕊.基于CNKI和WOS的非点源污染模型的研究热点                  沈阳: 沈阳理工大学, 2016.
                 及趋势分析[J]. 生态学报,2018,38(11):4077-4087.        [22]   史美玲. 辽河盘锦段废水污染物减排对水环境质量的影响[D].
            [13]   CHENG H, LIN C, WANG L J, et al. The influence of different  沈阳: 沈阳理工大学, 2020.
                 forest characteristics on non-point source pollution: a case study  [23]   王永.辽河污染物允许排放量分配分析研究[J]. 陕西水利,
                 at  Chaohu  Basin,  China[J].  International  Journal  of
                                                                    2020(1):95-97.
                 Environmental Research and Public Health,2020,17(5):1790.
                                                              [24]   张利民, 刘伟京, 尤本胜, 等.太湖流域漕桥河污染物来源特
            [14]   PARK M, CHOI Y S, SHIN H J, et al. A comparison study of
                                                                    征[J]. 环境科学研究,2009,22(10):1150-1155.
                 runoff  characteristics  of  non-point  source  pollution  from  three
                                                                    ZHANG  L  M,  LIU  W  J,  YOU  B  S,  et  al.  Characteristics  of
                 watersheds in south Korea[J]. Water,2019,11(5):966.
                                                                    pollutant  sources  of  Caoqiao  River  in  Taihu  Lake  Basin[J].
            [15]   QIU  J  L,  SHEN  Z  Y,  CHEN  L,  et  al.  Quantifying  effects  of
                                                                    Research of Environmental Sciences,2009,22(10):1150-1155.
                 conservation  practices  on  non-point  source  pollution  in  the
                                                              [25]   付意成, 魏传江, 臧文斌, 等.浑太河污染物入河控制量研究[J].
                 Miyun   Reservoir   Watershed,   China[J]. Environmental
                                                                    水电能源科学,2010,28(12):21-25.
                 Monitoring and Assessment,2019,191(9):582.
                                                                    FU Y C, WEI C J, ZANG W B, et al. Research on contaminant
            [16]   CLESCERI N L, CURRAN S J, SEDLAK R I. Nutrient loads to
                                                                    control  quantity  of  entering  into  Huntai  River[J]. Water
                 Wisconsin  Lakes:  part  i.  nitrogen  and  phosphorus  export
                                                                    Resources and Power,2010,28(12):21-25.
                 coefficients1[J].  JAWRA  Journal  of  the  American  Water
                                                              [26]   娄保锋, 卓海华, 周正, 等.近18年长江干流水质和污染物通量
                 Resources Association,1986,22(6):983-990.
                                                                    变化趋势分析[J]. 环境科学研究,2020,33(5):1150-1162.
            [17]   JOHNES P J. Evaluation and management of the impact of land
                                                                    LOU B F, ZHUO H H, ZHOU Z, et al. Analysis on alteration of
                 use  change  on  the  nitrogen  and  phosphorus  load  delivered  to
                                                                    water  quality  and  pollutant  fluxes  in  the  Yangtze  mainstem
                 surface  waters:  the  export  coefficient  modelling  approach[J].
                                                                    during recently 18 years[J]. Research of Environmental Sciences,
                 Journal of Hydrology,1996,183(3/4):323-349.
            [18]   李怀恩, 庄咏涛.预测非点源营养负荷的输出系数法研究进展                     2020,33(5):1150-1162.
                                                              [27]   郝晨林, 邓义祥, 汪永辉, 等.河流污染物通量估算方法筛选及
                 与应用[J]. 西安理工大学学报,2003,19(4):307-312.
                                                                    误差分析[J]. 环境科学学报,2012,32(7):1670-1676.
                 LI  H  E,  ZHUANG  Y  T.  The  export  coefficient  modeling
                                                                    HAO C L, DENG Y X, WANG Y H, et al. Study on the selection
                 approach for load prediction of nutrient from nonpoint source and
                 its  application[J].  Journal  of  Xi'an  University  of  Technology,  and  error  analysis  of  riverine  pollutant  flux  estimation
                 2003,19(4):307-312.                                methods[J]. Acta Scientiae Circumstantiae,2012,32(7):1670-
            [19]   李政道, 刘鸿雁, 姜畅, 等.基于输出系数模型的红枫湖保护区                  1676.
                                                              [28]   富国.河流污染物通量估算方法分析(Ⅰ): 时段通量估算方法
                 非点源污染负荷研究[J]. 水土保持通报,2020,40(2):193-
                 198.                                               比较分析[J]. 环境科学研究,2003,16(1):1-4.
                 LI Z D, LIU H Y, JIANG C, et al. Non-point source pollution  FU G. Analysis of the estimation methods for the river pollutant
                 load  of  Hongfeng  Lake  reserve  based  on  export  coefficient  fluxes(Ⅰ): comparison and analysis of the estimation methods of
                 model[J]. Bulletin of Soil and Water Conservation,2020,40(2):  period  fluxes[J].  Research  of  Environmental  Sciences,2003,
                 193-198.                                           16(1):1-4. ⊕
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