[1] |
SINGH P, SAXENA S. Towards developing a river health index[J]. Ecological Indicators, 2018, 85: 999-1011.
|
[2] |
LEOPOLD A S. Wilderness as a land laboratory[J]. Living Wilderness, 1941(6):3.
|
[3] |
崔保山, 杨志峰. 湿地生态系统健康研究进展[J]. 生态学杂志, 2001, 20(3): 31-36.
|
[4] |
Oceans and coastal resources: a briefing book/Oceans and Coastal Management Issues Team, Congressional Research Service[M]. Washington, D.C.: Congressional Research Service, Library of Congress, 1993.
|
[5] |
KARR J R. Defining and measuring river health[J]. Freshwater Biology, 1999, 41(2): 221-234.
|
[6] |
SCHOFIELD N, DAVIES P. Measuring the health of our rivers[J]. Water, 1996, 23: 39-43.
|
[7] |
MEYER J L. Stream health: incorporating the human dimension to advance stream ecology[J]. Journal of the North American Benthological Society, 1997, 16(2): 439-447.
|
[8] |
孙然好, 魏琳沅, 张海萍, 等. 河流生态系统健康研究现状与展望: 基于文献计量研究[J]. 生态学报, 2020, 40(10): 3526-3536.
|
[9] |
KARR J R. Biological integrity: a long-neglected aspect of water resource management[J]. Ecological Applications: a Publication of the Ecological Society of America, 1991, 1(1): 66-84.
|
[10] |
NOVOTNY V, BARTOŠOVÁ A, O'REILLY N, et al. Unlocking the relationship of biotic integrity of impaired waters to anthropogenic stresses[J]. Water Research, 2005, 39(1): 184-198.
|
[11] |
BARBOUR M T, GERRITSEN J, SNYDER B D, et al. Rapid bioassessment protocols for use in streams and wadeable rivers: periphyyton, benthic macroinvertebrates, and fish[M]. 2nd edition. Washington DC, USA: Environmental Protection Agency, 1999.
|
[12] |
VOULVOULIS N, ARPON K D, GIAKOUMIS T. The EU Water Framework Directive: from great expectations to problems with implementation[J]. Science of the Total Environment, 2017, 575: 358-366.
|
[13] |
马克明, 孔红梅, 关文彬, 等. 生态系统健康评价: 方法与方向[J]. 生态学报, 2001, 21(12): 2106-2116.
|
[14] |
唐涛, 蔡庆华, 刘建康. 河流生态系统健康及其评价[J]. 应用生态学报, 2002, 13(9): 1191-1194.
|
[15] |
张宇航, 渠晓东, 王少明, 等. 浑河流域底栖动物生物完整性指数构建与健康评价[J]. 长江流域资源与环境, 2020, 29(6): 1374-1386.
|
[16] |
刘守海, 张昊飞, 何彦龙, 等. 基于河口生物完整性指数评价上海周边海域健康状况的初步研究[J]. 生态环境学报, 2018, 27(8): 1494-1501.
|
[17] |
赵衡, 闫旭, 王富强, 等. 基于PSR模型的三门峡库区湿地生态系统健康评价[J]. 水资源保护, 2020, 36(4): 21-25, 74.
|
[18] |
吴庭天, 杨众养, 陈宗铸, 等. 红树林生态系统健康评价指标体系的建立与应用[J]. 热带林业, 2020, 48(1): 67-70, 74.
|
[19] |
BEAUCHARD O, VERÍSSIMO H, QUEIRÓS A M, et al. The use of multiple biological traits in marine community ecology and its potential in ecological indicator development[J]. Ecological Indicators, 2017, 76: 81-96.
|
[20] |
全峰, 朱麟. 海岸带生态健康评价方法综述[J]. 海南师范大学学报(自然科学版), 2011, 24(2): 204-209.
|
[21] |
BOZZETTI M, SCHULZ U H. An index of biotic integrity based on fish assemblages for subtropical streams in southern Brazil[J]. Hydrobiologia, 2004, 529(1): 133-144.
|
[22] |
林群, 袁伟, 单秀娟, 等. 莱州湾水域鱼类生物完整性评价[J]. 水生态学杂志, 2021, 42(2): 101-106.
|
[23] |
REAVIE E D, JICHA T M, ANGRADI T R, et al. Algal assemblages for large river monitoring: comparison among biovolume, absolute and relative abundance metrics[J]. Ecological Indicators, 2010, 10(2): 167-177.
|
[24] |
徐宗学, 刘麟菲. 基于着生藻类的渭河流域水生态系统健康评价[J]. 人民黄河, 2020, 42(9): 123-129.
|
[25] |
BORJA A, MUXIKA I, RODRÍGUEZ J G. Paradigmatic responses of marine benthic communities to different anthropogenic pressures, using M-AMBI, within the European Water Framework Directive[J]. Marine Ecology, 2009, 30(2): 214-227.
|
[26] |
李金京, 李卫明, 粟一帆, 等. 长江支流桥边河大型底栖动物群落结构及水质生物评价[J]. 环境科学学报, 2020, 40(8): 3020-3027.
|
[27] |
SOUZA G B G, VIANNA M. Fish-based indices for assessing ecological quality and biotic integrity in transitional waters: a systematic review[J]. Ecological Indicators, 2020, 109: 105665.
|
[28] |
徐宗学, 武玮, 殷旭旺. 渭河流域水生态系统群落结构特征及其健康评价[J]. 水利水电科技进展, 2016, 36(1): 23-30.
|
[29] |
DEINER K, BIK H M, MÄCHLER E, et al. Environmental DNA metabarcoding: transforming how we survey animal and plant communities[J]. Molecular Ecology, 2017, 26(21): 5872-5895.
|
[30] |
赵志江, 崔丽娟, 朱利, 等. 指标体系法在我国湿地生态系统健康评价研究中的应用进展[J]. 湿地科学与管理, 2018, 14(4): 9-13.
|
[31] |
崔保山, 杨志峰. 湿地生态系统健康评价指标体系Ⅰ.理论[J]. 生态学报, 2002, 22(7): 1005-1011.
|
[32] |
YANG W, ZHANG Z Y, SUN T, et al. Marine ecological and environmental health assessment using the pressure-state-response framework at different spatial scales, China[J]. Ecological Indicators, 2021, 121: 106965.
|
[33] |
陈凤, 苏少川, 陈妍, 等. 基于PSR模型的闽东滨海湿地生态系统健康评价[J]. 湿地科学与管理, 2020, 16(3): 25-29.
|
[34] |
XU H T, ZHOU L F, CHENG Q. Study on ecosystem health evaluation and risk assessment for Linghekou wetlands based on a PSR model[J]. Acta Ecologica Sinica, 2017, 37(24):8264-8274.
|
[35] |
袁毛宁, 刘焱序, 王曼, 等. 基于"活力—组织力—恢复力—贡献力”框架的广州市生态系统健康评估[J]. 生态学杂志, 2019, 38(4): 1249-1257.
|
[36] |
张渊. 基于VOR模型的滇池流域生态系统健康多尺度评价研究[D]. 昆明: 云南财经大学, 2020.
|
[37] |
WU C Y, CHEN W. Indicator system construction and health assessment of wetland ecosystem—Taking Hongze Lake Wetland, China as an example[J]. Ecological Indicators, 2020, 112: 106164.
|
[38] |
刘潇, 薛莹, 纪毓鹏, 等. 基于主成分分析法的黄河口及其邻近水域水质评价[J]. 中国环境科学, 2015, 35(10): 3187-3192.
|
[39] |
何海吉. 基于模糊层次分析法的水生态文明综合评价: 以四川省西充县为例[J]. 水利规划与设计, 2018(6): 4-6, 9.
|
[40] |
赵思琪, 代嫣然, 王飞华, 等. 湖泊生态系统健康综合评价研究进展[J]. 环境科学与技术, 2018, 41(12): 98-104.
|
[41] |
董哲仁, 张爱静, 张晶. 河流生态状况分级系统及其应用[J]. 水利学报, 2013, 44(10): 1233-1238, 1248.
|
[42] |
王冰. 流域生态系统健康评价研究[J]. 环境与发展, 2018, 30(12): 181-182.
|
[43] |
张雯, 黄民生, 张廷辉, 等. 太湖湖滨带生态系统健康评价及其修复模式探讨[J]. 水生态学杂志, 2020, 41(4): 48-54.
|
[44] |
孙徐阳, 李卫明, 粟一帆, 等. 香溪河流域水生态系统健康评价[J]. 环境科学研究, 2021, 34(3): 599-606.
|
[45] |
徐红玲, 潘继征, 徐力刚, 等. 太湖流域湖荡湿地生态系统健康评价[J]. 湖泊科学, 2019, 31(5): 1279-1288.
|
[46] |
MAIER H R, DANDY G C. Neural networks for the prediction and forecasting of water resources variables: a review of modelling issues and applications[J]. Environmental Modelling & Software, 2000, 15(1): 101-124.
|
[47] |
杨哲, 杨侃, 刘朗, 等. 组合赋权模糊熵-灰云聚类二维河流健康评价[J]. 华中科技大学学报(自然科学版), 2018, 46(5): 90-94.
|
[48] |
DENG X J, XU Y P, HAN L F, et al. Assessment of river health based on an improved entropy-based fuzzy matter-element model in the Taihu Plain, China[J]. Ecological Indicators, 2015, 57: 85-95.
|
[49] |
GROWNS I, ROURKE M, GILLIGAN D. Toward River health assessment using species distributional modeling[J]. Ecological Indicators, 2013, 29: 138-144.
|
[50] |
YANG T, ZHANG Q, WAN X H, et al. Comprehensive ecological risk assessment for semi-arid basin based on conceptual model of risk response and improved TOPSIS model-a case study of Wei River Basin, China[J]. Science of the Total Environment, 2020, 719: 137502.
|