论文专著:
出版著作:
1. 《湿地经济评价》,编写第二部分,北京:中国林业出版社,1999年。
2. 《三江平原生态环境演化与可持续发展》,编写第十一章,北京:科学出版社,2002年。
3. 《中国可持续发展林业战略研究-战略卷》,编写第六篇部分章节,北京:中国林业出版社,2003年6月。
4. 《生态环境需水量理论、方法与实践》,杨志峰,崔保山,刘静玲,王西琴,刘昌明 著,科学出版社,2003年6月。
5. 《湿地学》,崔保山,杨志峰,北京:北京师范大学出版社,2006年12月。
6. 《流域生态需水规律》,杨志峰,刘静玲,孙涛,崔保山,科学出版社,2006年3月。
7.《湿地生态需水机理、模型和配置》,杨志峰,崔保山,孙涛,陈贺,杨薇,科学出版社,2012年1月 。
8.《纵向岭谷区重大工程建设与区域生态系统变化交互作用》,崔保山,杨志峰,董世魁,刘世梁,白军红等,科学出版社,2009年12月。
9.《白洋淀沼泽化驱动机制与调控模式》,崔保山、韩祯、李夏等著,北京:科学出版社,2017.11。
发表英文论文:
1. Ning, Z. H.; C.Chen; T. Xie; Z. C. Zhu; Q. Wang; B. S. Cui*; J. H. Bai; Can the nativefaunal communities be restored from removal of invasive plants in coastalecosystems? A global meta-analysis, Global Change Biology, 2021, 27:4644-4656.
2. Liu, Z. Z.;S. Fagherazzi; B. S. Cui*; Success of coastal wetlands restoration isdriven by sediment availability, Communications Earth & Environment,2021, 2:44.
3. Liu, Z. Z.; S.Fagherazzi; J. Li; B. S. Cui*; Mismatch between watershed effects and localefforts constrains the success of coastal salt marsh vegetationrestoration, Journal of Cleaner Production, 2021, 292:12.
4. Yu, B.W.; B. S. Cui*; Y. G. Zang; C. S. Wu; Z. H. Zhao; Y. X. Wang; Long-TermDynamics of Different Surface Water Body Types and Their Possible DrivingFactors in China, Remote Sensing, 2021, 13:22.
5. Ning, Z. H.; C.Chen; Z. C. Zhu; T. Xie; Q. Wang; B. S. Cui*; T. J. Bouma; Tidalchannel-mediated gradients facilitate Spartina alterniflora invasion in coastalecosystems: implications for invasive species management, Marine EcologyProgress Series, 2021, 659:59-73.
6. Qiu, D. D.; X. Ma;J. G. Yan; D. D. Shao; J. H. Bai,; B. S. Cui*; Biogeo-morphologicalprocesses and structures facilitate seedling establishment and distribution ofannual plants: Implications for coastal restoration, Science of the TotalEnvironment, 2021, 756:10.
7. Zou Y.X., YanJ.G., Hou S.W.,Yi Y.J., Cui B.S.* Intensive landuses modify assemblyprocess and potential metabolic function of edaphicbacterial communities in theYellow River Delta, China. Science of The Total Environment, 2020, 720:137713.
8. Xie C.J., CuiB.S.*, Xie T., Yu S.L., Liu Z.Z, Chen C., Ning Z.H., Wang Q., Zou Y.X., ShaoX.J. Hydrological connectivity dynamics of tidal flat systems impacted bysevere reclamation in the Yellow River Delta. Science of The Total Environment,2020, 739: 139860.
9. Ning Z.H,Chen C., Xie T.,Wang T., Ma X., Sui H.C., Cui B.S.*A novel herbivorouswood-borer insect outbreak triggers die-offs of a foundation plant species incoastal ecosystems. Ecosystem Health and Sustainability, 2020, 6(1): 1-6.
10.Liu Z.Z.,Fagherazzi S.,She X.J., Ma X., Xie C.J., Cui B.S.*Efficient tidal channelnetworks alleviate the drought-induced die-off of saltmarshes: Implications forcoastal restoration and management. Science of theTotal Environment, 2020, 749:141493.
11.Liu Z.Z.,Fagherazzi S.,Ma X., Xie C.J., Li J., Cui B.S.* Consumer control andabiotic stresses constrain coastal saltmarsh restoration. Journal ofEnvironmental Management, 2020, 274: 111110.
12.Shao X.J., Fang Y., Jawitz W.J., Yan J.G., Cui B.S.* River network connectivity and fish diversity. Science of the Total Environment, 2019, 689: 21-30.
13.Yan J.G.,Cui B.S.*,Huang H.H., O’Flynn S., Bai J.H., Ysebaert T. Functional consumers regulate the effect of availability of subsidy on trophic cascades in the Yellow River Delta, China. Marine Pollution Bulletin, 2019, 140: 157-164.
14.Qiu D.D., Yan J.G., Ma X., Luo M., Wang Q., Cui B.S.* Microtopographical modification by a herbivore facilitates the growth of a coastal saltmarsh plant. Marine Pollution Bulletin, 2019, 140: 431-442.
15.Wang F.F., Yan J.G., Ma X., Qiu D.D., Xie T., Cui B.S.* Tidal regime influences the spatial variation in trait-based responses of Suaeda salsa and edaphic conditions. Ecosphere, 2019, 10(3): e02642.
16.Ning Z.H., Xie T., Liu Z.Z., Bai J.H., Cui B.S.* Native herbivores enhance the resistance of an anthropogenically disturbed salt marsh to Spartina alterniflora invasion. Ecosphere, 2019, 10: e02565.
17.Xie T., Cui B.S.*, Li S.Z., Bai J.H. Topography regulates edaphic suitability for seedling establishment associated with tidal elevation in coastal salt marshes.Geoderma, 2019, 337: 1258-1266.
18.Xie T., Li S.Z., Cui B.S.*, Bai J.H., Wang Q., Shi W. Rainfall variation shifts habitat suitability for seedling establishment associated with tidal inundation in salt marshes. Ecological Indicators. 2019, 98: 694-703.
19.Xie T., Cui B.S.*, Li S.Z., Zhang S.Y. Management of soil thresholds for seedling emergence to re-establish plant species on bare flats in coastal salt marshes. Hydrobiologia, 2019, 827(1): 51-63.
20.Yu S.L.,Cui B.S.*, Xie C.J., Ma X., Man Y., Ning Z.H. Ecological Offsetting in China's Coastal Wetlands: Existing Challenges and Strategies for Future Improvement. Chinese Geographical Science, 2019, 29(2): 202-213.
21.Yu S., Cui B.S.*, Gibbons P. A method for identifying suitable biodiversity offset sites and its application to reclamation of coastal wetlands in China. Biological Conservation, 2018, 227: 284-291.
22.Wang Q., Cui B.S.*, Luo M. Effectiveness of microtopographic structure in species recovery in degraded salt marshes. Marine Pollution Bulletin, 2018, 133: 173-181.
23.Li S.Z.,Cui B.S.*, Xie T., Bai J.H., Wang Q., Shi W. What drives the distribution of crab burrows in different habitats of intertidal salt marshes, Yellow River Delta, China. Ecological Indicators, 2018, 92: 99-106.
24.Hua Y.Y., Cui B.S.*Environmental flows and its satisfaction degree forecasting in the Yellow River. Ecological Indicators, 2018, 92: 207-220.
25.Wang Q., Cui B.S.*, Luo M., Shi W. Designing microtopographic structures to facilitate seedling recruitment in degraded salt marshes. Ecological Engineering, 2018, 120: 266-273.
26.Xie T., Cui B.S.*, Bai J.H., Li S.Z., Zhang S.Y. Rethinking the role of edaphic condition in halophyte vegetation degradation on salt marshes due to coastal defense structure. Physics and Chemistry of the Earth, Parts A/B/C, 2018, 103: 81-90.
27.Li S.Z., Cui B.S.*, Bai J.H., Xie T., Yan J.Q., Wang Q., Zhang S.Y. Effects of soil abiotic factors on the plant morphology in an intertidal salt marsh, Yellow River Delta, China. Physics and Chemistry of the Earth, Parts A/B/C, 2018, 103: 75-80.
28.Zhang Y.,Cui B.S.*, Xie T., Wang Q., Yan J.G. Effect of coastal eutrophication on growth and physiology of Spartina alterniflora Loisel. Physics and Chemistry of the Earth, Parts A/B/C , 2018, 103: 62-67.
29.He Q., Silliman B.R., Liu Z.Z., Cui B.S.*. Natural enemiesgovern ecosystem resilience in the face of extreme droughts.Ecology Letters, 2017, 20: 194-201.
30.Xie T., Cui B.S.*, Li S.Z. Analysing how plants in coastal wetlands respond to varying tidal regimes throughout their life cycles. Marine Pollution Bulletin, 2017, 123(1-2): 113-121.
31.He Q., Silliman B. R., Cui B.S.*. Incorporating thresholds into understanding salinity tolerance: A study using salt‐tolerant plants in salt marshes. Ecology and Evolution, 2017, 7(16): 6326-6333.
32.HuaY.Y., CuiB.S*., He,W.J., CaiY.Z. Identifyingpotential restoration areas of freshwater wetlands in a river delta. Ecological Indicators, 2016, 71:438-448.
33.Liu Z.Z., Cui B.S.*, He Q. Shiftingparadigms in coastal restoration: Six decades' lessons from China. Science of TheTotal Environment, 2016, 566-567:205-214.
34.Han Z., Cui B.S.*. Development of an integrated stressindex to determine multiple anthropogenic stresses on macrophyte biomass andrichness in ponds. Ecological Engineering,2016, 90:151-162.
35.Cui B.S.*, He Q., Gu B.H., Bai J.H., Liu X.H. China’sCoastal Wetlands: Understanding Environmental Changes and Human Impacts forManagement and Conservation. Wetlands,2016, 36(S1):1-9.
36.Li S.Z., Cui B.S.*,Xie T., Shao X.J., Zhang M.L. Consequences and implications ofanthropogenic desalination of salt marshes on macrobenthos. CLEAN–Soil Air Water, 2016, 44(1):8-15.
37.Li S.Z., Cui B.S.*,Xie T., Zhang K.J. Diversity Pattern of MacrobenthosAssociated with Different Stages of Wetland Restoration in the Yellow RiverDelta. Wetlands, 2016,36(S1):57-67.
38.Li X., Cui B.S.*,Yang Q.C., Lan Y. Impacts of water level fluctuations on detritusaccumulation in Lake Baiyangdian, China. Ecohydrology,2016, 9(1):52-67.
39.Cui B.S.*, Shao X.J.,Zhang Z.M. Assessment of flow paths and confluences for saltwater intrusion ina deltaic river network. HydrologicalProcesses, 2015;29(20):4549-4558.
40.He Q., Altieri A.H., Cui B.S.*. Herbivorydrives zonation of stress-tolerant marsh plants. Ecology, 2015, 96(5):1318-1328
41.He Q., Cui B.S.*. Multiple mechanisms sustain aplant-animal facilitation on a coastal ecotone. Scientific reports, 2015, 5, 10.1038/srep08612.
42.Yan J.G., Cui B.S.*, ZhengJ.J., Xie T., Wang Q., Li S.Z. Quantification of intensive hybrid coastalreclamation for revealing its impacts on macrozoobenthos. Environmental Research Letters, 2015, 10(1): 014004.
43.Zhang Y, Cui BS*,Zhang QJ, Liu XH. Polycyclic Aromatic Hydrocarbons in the food web of coastalwetlands: distribution, sources and potential Toxicity. CLEAN–Soil Air Water, 2015,43(6):881-891.
44.Dong W., Cui B.S.*,Liu Z.H., Zhang K.J. Relative effects of human activities and climate change onthe river runoff in an arid basin in northwest China. Hydrological Processes, 2014, 28: 4854-4864.
45.Dou P., Cui B.S.*.Dynamics and integrity of wetland network in estuary. Ecological Informatics, 2014, 24: 1-10.
46.He Q., Bertness M.D.,Bruno J.F., Li B., Chen G.Q., Coverdale T.C., Altieri A.H., Bai J.H., Sun T.,Pennings S.C., Liu J.G., Ehrlich P.R., Cui B.S.* Economic development andcoastal ecosystem change in China. ScientificReports, 4, 5995, 10.1038/srep05995.
47.Li X., Cui B.S.*, YangQ.C., Lan Y., Wang T.T., Han Z. Effects of plant species on macrophytedecomposition under three nutrient conditions in a eutrophic shallow lake,North China. Ecological Modelling,2013, 252: 121-128.
48.He Q., Cui B.S.*, AnY. Physical Stress, Not Biotic Interactions, Preclude an Invasive Grass fromEstablishing in Forb-Dominated Salt Marshes. PLoS ONE, 2012, 7(3): e33164. doi:10.1371/journal.pone.0033164.
49.Li X., Cui B.S.*,Yang Q.C., Tian H.Q., Lan Y., Wang T.T., Han Z. Detritus Quality ControlsMacrophyte Decomposition under DifferentNutrient Concentrations in a Eutrophic Shallow Lake, North China. PLoS ONE, 2012, 7(7): e42042.doi:10.1371/journal.pone.0042042.
50.Zhang H.G., CuiB.S.*, Ou B.B., Lei X.X. Application of a biotic index to assess natural andconstructed riparian wetlands in an estuary. Ecological Engineering, 2012, 44: 303-313.
51.Fan X.Y., Cui B.S.*,Zhang K.J., Zhang Z.M., Shao H.B. Water Quality Management Based on Division ofDry and Wet Seasons in Pearl River Delta, China. CLEAN–Soil, Air, Water, 2012, 40:381-393.
52.Fan X.Y., Cui B.S.*,Zhao H., Zhang Z.M. The Changes of wetland network pattern associated withwater quality in the Pearl River Delta, China. CLEAN–Soil Air Water, 2012,40(10):1064-1075.
53.He Q., Cui B.S.,Bertness M.D., An Y. Testing the importance of plant strategies on facilitationusing congeners in a coastal community.Ecology, 2012, 93: 2023-2029.
54.Yang R.R., Cui B.S.*. A wetland network design for waterallocation based on environmental flow requirements. CLEAN–Soil Air Water, 2012,40(10): 1047-1056.
55.Cui B.S*., Zhang Z.M., Lei X.X. Implementation ofDiversified Ecological Networks to Strengthen Wetland Conservation. CLEAN–Soil, Air, Water, 2012, 40: 1015–1026.
56.Fan X.Y., Cui B.S.*, Zhang K.J., Zhang Z.M., Zhao H.Construction of River Channel-wetland Networks for Controlling Water Pollutionin the Pearl River Delta, China. CLEAN–Soil, Air, Water, 2012, 40: 1027–1035.
57.Zhang Z.M., Cui B.S.*, Fan X.Y., Zhang K.J., Zhao H., ZhangH.G. Wetland Network Design for Mitigation of Saltwater Intrusion byReplenishing Freshwater in an Estuary. CLEAN–Soil, Air, Water, 2012, 40: 1036–1046.
58.Cui B.S.*, He Q., Zhang K.J., Chen X. Determinants ofannual–perennial plant zonation across a salt–fresh marsh interface: a multistage assessment, Oecologia, 2011, 166(4): 1067-1075.
59.Cui B.S.*, Hu B., Zhai H.J. Employing three ratio indicesfor ecological effect assessment of Manwan dam construction in the LancangRiver, China. River Research andApplication, 2011, 27(8): 1000-1022.
60.Cui B.S.*, He Q., An Y. Spartina alterniflora invasions andeffects on crab communities in a western Pacific estuary. Ecological Engineering, 2011, 37(11): 1920-1924.
61.Cui B.S.*, Zhang Q.J., Zhang K.J., Liu X.H., Zhang H.G.Analyzing trophic transfer of heavy metals for food webs in the newly-formedwetlands of the Yellow River Delta, China. EnvironmentalPollution, 2011, 159: 1297-1306.
62.Cui B.S.*, He Q., An Y. Community structure and abioticdeterminants of salt marsh plant zonation vary across topographic gradients. Estuaries and Coasts, 2011, 34: 459-469.
63.Zhang H.G., Cui B.S.*, Hong J.M., Zhang K.J. Synergism ofnatural and constructed wetlands in Beijing, China. Ecological Engineering, 2011, 37: 128-138.
64.Liu Q., Cui B.S.*. Impacts of climate change/variability onthe streamflow in the Yellow River Basin, China. Ecological Modelling, 2011, 222: 268-274.
65.Cui B.S.*, Li X., Zhang K.J. Classification of hydrologicalconditions to assess water allocation schemes for Lake Baiyangdian in NorthChina. Journal of Hydrology, 2010,385: 247-256.
66.Cui B.S.*, Yang Q.C.,Zhang K.J., Zhao X.S., You Z.Y. Responses of saltcedar (Tamarix chinensis) towater table depth and soil salinity in the Yellow River Delta, China. Plant Ecology, 2010, 209: 279-290.
67.Zhai H.J., Cui B.S.*,Hu B., Zhang K.J. Prediction of the river ecological integrity after thecascade hydropower dam construction on the mainstream of rivers in LongitudinalRange-Gorge Region (LRGR), China. EcologicalEngineering, 2010, 36: 361-372.
68.He Q., Cui B.S.*, CaiY.Z., Deng J.F., Sun T., Yang Z.F. What confines an annual plant to twoseparate zones along coastal topographic gradients? Hydrobiologia, 2009, 630: 327-340.(SCI)
69.Hu B., Cui B.S.*,DongS.K., Zhai H. J., Liu Z.Y. Ecological Water Requirement (EWR) Analysis of HighMountain and Steep Gorge (HMSG) River—Application to UpperLancang–Mekong River. Water Resources Management, 2009, 23:341-366.(SCI)
70.Cui B.S.*, Wang C.F.,Tao W.D., You Z.Y. River channel network design for drought and flood control:A case study of Xiaoqinghe River basin, Jinan City, China. Journal of Environmental Management, 2009, 90: 3675-3686.
71.Wei G.L., Yang Z.F., CuiB.S.*, Li B., Chen H., Bai J.H., Dong S.K. Impact of dam construction on waterquality and water self-purification capacity of the Lancang River, China. Water Resources Management, 2009,23:1763-1780.
72.Cui B.S.*, Yang Q.C.,Yang Z.F., Zhang K.J. Evaluating the ecological performance of wetlandrestoration in the Yellow River Delta, China. Ecological Engineering, 2009, 35: 1090-1103.(SCI)
73.Cui BS, Zhai HJ, Dong SK, Chen B, Liu SL. Multivariate analysis of the effects of edaphic and topographical factors on plant distribution in the Yilong Lake Basin of Yun-Gui Plateau, China. Canadian Journal of Plant Science, 2009, 89 (1): 209-219(SCI)
74.Cui BS, Tang N, Zhao XS, Bai JH. A management-oriented valuation method to determine ecological water requirement for wetlands in the Yellow River Delta of China. Journal for Nature Conservation 2009,17,129-141(SCI)
75.Bai JH, Cui BS *, Wang QG, Gao HF, Ding QY. Assessment of heavy metal contamination of roadside soils in Southwest China. 2009, Stochastic Environmental Research and Risk Assessment, 23:341–347(SCI)
76.Liu Q,Cui BS*, Yang ZF.Dynamics of the soil water and solute in the sodic saline soil in the Songnen plain, China. Environmental Earth Sciences, DOI : 10.1007/s12665-009-0079-4(SCI)
77.Bai JH, Cui BS *, XU XF,Ding QY, Gao HF.Heavy Metal Contamination in Riverine Soils Upstream and Downstream of a Hydroelectric Dam on the Lancang River, China. Environmental Engineering Science, 26(5):941-946(SCI)
78.Bai JH, Cui BS *, Yang ZF,Xu XF, Ding QY, Gao HF.Heavy metal contamination of cultivated wetland soil along plateau lake from southwest China. Environmental Earth Sciences, DOI : 10.1007/s12665-009-0160-z(SCI)
79.Wei GL, Yang ZF, Cui BS *, Li B, Chen H, Bai JH, Dong SK. Impact of dam construction on water quality and water self-purification capacity of the Lancang River, China. Water Resources Management, 2008, DOI: 10.1007/s11269-008-9351-8. (SCI)
80.Cui BS , Zhao XS, Yang ZF, Chen B, Tang N, Tan XJ. The response of reed community to the environment gradient of water depth in the Yellow River Delta. Frontiers of Biology in China, 2008, 3(2): 194-202
81.Cui BS , You ZY,Yao M.Vertical characterisctics of Hani terrace paddyfield ecosystem in Yunnan,China. Frontiers of Biology in China,2008,3(3):351-359
82.Sun T, Yang ZF, Cui BS . Critical environmental flows to support integrated ecological objectives for the Yellow River Estuary, China. Water resources management, 2008,22:973–989(SCI)
83.Dong SK, Cui BS , Yang ZF, Liu SL,Liu J,Ding ZK,Zhu JJ,Yao WK,Wei GL. The role of road disturbance in the dispersal and spread of Ageratina adenophora along the Dian–Myanmar International Road.Weed Research,2008, 48, 282–288(SCI)
84.Deng L, Jiang WG, Chen YH, Li J, Cui BS . Remote sensing image fusion method based on Contourlet-domain hidden Markov tree model. Journal of Infrared and Millimeter Waves, 2008, 27 (4): 285-289 (SCI)
85.Liu SL, Yang ZF, Cui BS . Spatial analysis and prediction of effects of road projects on ecosystems in LancangRiver valley, Proceedings of information technology and environmental system sciences, ITESS 2008, 2008, 4: 555-559
86.Liu Q, Yang ZF, Cui BS . Spatial and temporal variability of annual precipitation during 1961–2006 inYellow River Basin, China. Journal of Hydrology, 2008, 361, 330-338(SCI)
87.Liu SL, Cui BS , Dong SK, Yang ZF, Yang M, Holtb K. Evaluating the influence of road networks on landscape and regional ecological risk—A case study in Lancang River Valley of Southwest China. Ecological Engineering. 2008, 34(2):91-99(SCI)
88.Sun HL, Li SC, Xiong WL, Yang ZR, Cui BS , Tao-Yang. 2008. Influence of slope on root system anchorage of Pinus yunnanensis. Ecological Engineering. 2008, 32 (1): 60-67(SCI)
89.Cui BS , Zhao SQ, Zhang KJ, Li SC, DongSK, Bai JH. Impact of Dabao highway construction on plant species and soil nutrients in Longitudinal Range Gorge Region(LRGR) of Southwestern China. Environmental Monitoring and Assessment, 2008, DOI: 10.1007/s10661-008-0605-y(SCI)
90.Yang ZF,Sun T,Cui BS ,Chen B,Chen GQ.Environmental flow requirements for integrated water resources allocation in the Yellow River Basin,China.Communications in Nonlinear Science and Numerical Simulation, 2008,DOI:10.1016/j.cnsns.2007.12.015(SCI)
91.Liu X, Hou J, Wang L, Luo W, Cui B.beta-cyclodextrin-enhanced solubilization of phenylsulfonyl carboxylates in water. Bulletin of Environmental Contamination and Toxcology, 2007, 77 (1): 51-59(SCI)
92.Cui BS , Hu B, Zhai HJ, Wei GL, Wang J.Study on the interaction between engineering construction and ecosystem changes in the Longitudinal Range-Gorge Region, Chinese Science Bulletin, 2007,52(s):19-28. (SCI)
93.Zhao XS, Cui BS * Yang ZF, He Q. The Key Environmental Factors of Vegetation Degraded in the Yellow River Delta, Proceeding of the 3rd international Yellow River Forum on sustainable water resources management and delta ecosystem maintenance, 2007, Vol II: 121-130
94.Zhai HJ, Cui BS *,Hu B, Wei GL, Liu SL. Regional ecosystem changes under different cascade hydropower dam construction scenarios in LRGR. Chinese Science Bulletin, 2007, 52(s):93-100(SCI)
95.Liu XH, Hou J, Wang L, Luo WR, Cui BS . Influence of cyclodextrin complexation on the Vibrio fischeri toxicity of phenylsulfonyl carboxylates. Journal of Environmental Science and Health Part A-Toxic/Hazardous Substances and Environmental Engineering, 2007,42 (2): 149-153(SCI)
96.Bai JH, Deng W, Cui BS , Ouyang H. 2007. Water diffusion coefficients of horizontal soil columns from natural saline-alkaline wetlands in a semiarid area. Eurasian Soil Science, 40 (6): 660-664(SCI)
97.Chen SN, Liu XH, Hou J, Liu SH, Chi GY, Cui BS , Yang ZF. 2007. Study on the spectrum response of Brassica campestris L leaf to the zinc pollution. Spectroscope and Spectral Analysis, 27 (9): 1797-1801 (SCI)
98.Wei GL,Cui BS *,Yang ZF, Bai JH,Wang J, Hu B.Comparison of changes of typical river segment ecosystem service value in LRGR. Chinese Science Bulletin,2007,52(s):225-233(SCI)
99.Hu B,Cui BS *,Wei GL.Study on the spatio-temporal variability of eco-hydrological characteristics of the rivers in the Longitudinal Range-Gorge Region and their driving forces. Chinese Science Bulletin, 2007,52(s):107-116(SCI)
100.Zhao H,Cui BS *,Bai JH, Ren HL.Effects of the expressway on the soil-plant systems in the Longitudinal Range-Gorge Region, Chinese Science Bulletin,2007,52(s):176-184(SCI)
101.Bai JH, Cui BS *, Deng W, Yang ZF, Wang QG,Ding QY. Soil organic carbon contents of marsh soils from two natural saline-alkalined wetlands in Northeast China. Journal of Soil and Water Conservation. 2007, 62(6): 447-452(SCI)
102.Zhao SQ,Cui BS *,Gao LN, Liu J. Effects of highway construction on soil quality in Longitudinal Range Gorge Region in YunnanProvince. Chinese Science Bulletin, 2007, 52(s):166-175(SCI)
103.Bai JH, Deng W, Wang QG, Cui BS , Ding QY. Spatial distribution of inorganic nitrogen contents of marsh soils in a river floodplain with different flood frequencies from soil-defrozen period. Environmental Monitoring and Assessment, 2007,134?(1-3): 421-428.(SCI)
104.Wen MX, Liu SL, Cui BS . Research on spatiotemporal change of ecological capacity and driving forces in the LRGR. Chinese Science Bulletin, 2007,52(s): 74-81(SCI)
105.DongSK, Cui BS , Yang ZF, Liu SL, Liu J, Wang J, Ding ZK, Gao LN, Zhao SQ. Species composition, plant cover and diversity of recently reforested wild lands near Dabao Highway in Longitudinal Range-Gorge Region of Yunnan Province, China. African Journal of Biotechnology, 2007, 6(24): 2810-2820(SCI)
106.Liu SL, Cui BS , Wen MX, Wang J, Dong SK.Statistical regularity of road network features and ecosystem change in the Longitudinal Range-Gorge Region (LRGR) Chinese Science Bulletin, 2007,52(s):82-89(SCI)
107.Wang J,Cui BS *, Liu SL,Dong SK, Wei GL, Liu J. Effects of road networks on ecosystem service value in the Longitudinal Range-Gorge Region, Chinese Science Bulletin, 2007,52(s):180-191(SCI)
108.Bai JH, Cui BS , Deng W,?Wang QG, Ding QY. Plant Pb contents of four vertical zones from Changbai Mountain Nature Reserve, China. Pedosphere. 2007,17 (2): 229-234(SCI)
109.Liu J,Cui BS *, Dong SK,Wang J, Zhao SQ.The changes of community components and their horizontal patterns caused by highway construction in the Longitudinal Range-Gorge Region Chinese Science Bulletin,2007,52(s):213-224(SCI)
110.Li S C,Sun HL, Yang ZR, Xiong WL, Cui BS .Root anchorage of Vitex negundo L. on rocky slopes under different weathering degrees, Ecological Engineering, 2007,30 (1): 27-33(SCI)
111.Wang L, Liu XH, Hou J, Cui BS . Prediction of photolysis half-lives of PCDFs with the electrotopological state indices. Acta Chimica Sinica, 2007,65 (3): 184-190(SCI)
112.Yang ZF, Cui BS , Chen H. A holistic approach for evaluating environmental water allocation in Yellow River Basin, China. Frontiers of Environmental Science and Technology in China, 2007,1(1):99-106.
113.Cui BS , Zhai HJ. Characteristics of wetland functional degradation and its ecological water requirement for restoration in Yilong Lake of Yunnan Plateau.Chinese Science Bulletin,2006, 51(s):127-135(SCI)
114.Liu J, Cui BS *, DongSK, Zhu JJ, Yao WK. Quantificationally study oneffects ofhighway construction on photosynthetic rate of plant growing on roadsides in Longitudinal Range-Gorge Region. Chinese Science Bulletin,2006,51(s): 59-68(SCI)
115.Yao HR,Yang ZF,Cui BS *.Soil erosion risk along typical roads in Longitudinal Range-Gorge Region. Chinese Science Bulletin,2006,51(s):80-87(SCI)
116.Yao H R, Cui B S, Yang Z F.Land Use Change and Its Effect on Soil Erosion in the LancangRiver Watershed in YunnanProvince. (ISTP). Journal of Safety and Environment, 2006: 548-559.
117.Cui BS , Hu B. Calculation of Ecological Water Requirements for instream in the LanchangRiver. Journal of Safety and Environment, 2005,2(1):455-462
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发表中文期刊论文:
[1]智烈慧, 周方文, 李晓文, 马田田, 邵冬冬, 白军红, 崔保山, 郭卫华. 基于生态系统服务优化的滨海湿地一体化保护—修复格局构建[J]. 自然资源学报, 2023, 38 (12): 3150-3165.
[2]崔保山, 刘烨凌, 宁中华, 谢湉, 翟羽佳, 张辉, 陈聪, 王青, 陈国贵, 孙贺阳, 窦鹏. 城乡河湖水系连通工程的生态环境效应[J]. 环境工程, 2023, 41 (09): 36-45.
[3]刘烨凌, 赵世高, 董伟萍, 王青, 杨薇, 崔保山. 铜陵市河湖湿地浮游生物群落结构特征及影响因素[J]. 环境工程, 2023, 41 (01): 10-17+131.
[4]李晓文, 智烈慧, 马田田, 刘增力, 崔保山, 邵冬冬, 曹宇, 穆泳林. 构筑基于“三线整合”的中国滨海湿地生态安全格局[J]. 中国科学院院刊, 2023, 38 (01): 123-133.
[5]李思达, 王新艳, 张芳菲, 邵冬冬, 崔保山, 曹波, 张勇. 湿地水动力研究中无人机遥感技术的应用进展、机遇与挑战[J]. 环境工程, 2023, 41 (01): 93-104.
[6]崔保山, 宁中华. 面向需求立足前沿,推进学科交叉融合,助力湿地保护与修复——“湿地生态设计与修复”专刊[J]. 环境工程, 2023, 41 (01): 3-4.
[7]张晗旭, 李馨宇, 崔保山, 王青, 于海玲, 吴霞, 许佳美. 黄河三角洲湿地生态修复工程对底栖动物的影响效果研究[J]. 环境工程, 2023, 41 (01): 222-231.
[8]陈雪娟, 高放, 王青, 庞博, 谢毅梁, 崔保山, 岳修鹏, 宋建彬. 黄河三角洲湿地淡水恢复区重金属分布特征及潜在风险[J]. 环境工程, 2023, 41 (01): 232-239.
[9]曹波, 蔡春轶, 张勇, 崔保山. 汉石桥湿地自然保护区土地利用格局及其生态系统服务价值动态[J]. 湿地科学, 2022, 20 (06): 778-784.
[10]耿植, 杜际增, 刘泓汐, 曹波, 李馨宇, 张勇, 崔保山. 基于水动力过程的城市小微湿地生态补水量与补水路径评估:以北京汉石桥湿地为例[J]. 环境工程, 2023, 41 (01): 51-60.
[11]庞博, 杨文鑫, 崔保山, 张树岩, 谢湉, 宁中华, 高放, 张洪山. 黄河三角洲湿地生物多样性保护工程植被修复效果评估[J]. 环境工程, 2023, 41 (01): 213-221.
[12]李思达, 王新艳, 张芳菲, 邵冬冬, 崔保山, 曹波, 张勇. 湿地水动力研究中无人机遥感技术的进展、机遇与挑战[J]. 环境工程, 1-15.
[13]王新艳, 吕梦雪, 崔保山, 邵冬冬. 海草床种子扩散过程及种子库形成机制研究进展[J]. 生态学报, 2023, 43 (06): 2171-2179.
[14]王璇, 谢湉, 张勇, 窦鹏, 崔保山, 曹波, 李馨宇, 丁鑫宇, 杨志昊. 基于水动力过程的湿地生态补水优化机制:以北京汉石桥湿地为例[J]. 环境工程, 2023, 41 (01): 61-71.
[15]谢毅梁, 崔保山, 谢湉, 蔡燕子, 高放, 陈聪, 张立. 2021年冬季珠江三角洲河网浮游动植物的分布和咸潮入侵的影响[J]. 湿地科学, 2022, 20 (05): 666-680.
[16]于博威, 谢毅梁, 马曦瑶, 崔保山. 近40年粤港澳大湾区湿地景观及其受损程度时空变化[J]. 环境生态学, 2022, 4 (05): 59-68.
[17]齐于顺, 刘仁志, 张启月, 崔保山, 郭忠, 王飞, 方丽, 方陵. 长江干流铜陵段突发水污染情景模拟分析[J]. 环境工程技术学报, 2022, 12 (02): 607-614.
[18]刘烨凌, 郝斌, 王青, 杜际增, 崔保山, 杨薇. 铜陵市河湖水系功能连通性评估[J]. 环境科学学报, 2022, 42 (01): 168-178.
[19]崔保山, 刘康, 宋国香, 邵冬冬, 谢湉. 生态水利研究的理论基础与重点领域[J]. 环境科学学报, 2022, 42 (01): 10-18.
[20]智烈慧, 李心, 马田田, 谢旭, 李晓文, 吴继文, 白军红, 崔保山. 辽河三角洲土地利用变化轨迹、驱动过程及生态系统服务时空演变[J]. 环境科学学报, 2022, 42 (01): 141-150.
[21]李晓晓, 杨薇, 孙涛, 崔保山, 邵冬冬. 黄河口近海海草床浮游-底栖营养传递特征[J]. 生态学报, 2021, 41 (10): 3816-3825.
[22]穆泳林, 梁晨, 李晓文, 白军红, 崔保山, 智烈慧, 梁芳源, 李鹏, 程维金, 肖之炎. 基于系统保护规划的海河流域湿地保护优先格局与保护空缺识别[J]. 生态学报, 2021, 41 (10): 3836-3845.
[23]李晓晓, 杨薇, 孙涛, 崔保山, 邵冬冬. 水生生态系统食物网复杂性与多样性的关系[J]. 生态学报, 2021, 41 (10): 3856-3864.
[24]崔保山, 白军红. 序[J]. 北京师范大学学报(自然科学版), 2021, 57 (01): 1.
[25]刘烨凌, 郝斌, 王青, 杜际增, 崔保山, 杨薇. 1970-2015年黄河三角洲高效生态经济区河湖沼水系水文连通时空演变[J]. 北京师范大学学报(自然科学版), 2021, 57 (01): 2-11.
[26]刘丹, 王烜, 张云龙, 闫胜军, 杨薇, 崔保山. 基于InSAR的白洋淀湿地潜在水力阻碍物分布格局[J]. 水生态学杂志, 2020, 41 (05): 70-76.
[27]解成杰, 谢湉, 刘泽正, 于淑玲, 王青, 崔保山. 硬质海岸防护设施的生态效应与对策[J]. 农业资源与环境学报, 2020, 37 (04): 461-468.
[28]于淑玲, 崔保山, 白军红, 解成杰. 基于物质量的滨海湿地生态补偿理论研究及政策建议[J]. 农业资源与环境学报, 2020, 37 (04): 453-460.
[29]王新艳, 白军红, 闫家国, 邵冬冬, 许加美, 赵亚杰, 崔保山. 关于海草床食物网营养级相互作用研究的文献分析[J]. 环境生态学, 2020, 2 (06): 47-55.
[30]马旭, 王安东, 付守强, 岳修鹏, 邱冬冬, 孙丽敏, 汪方芳, 崔保山. 黄河口互花米草对日本鳗草Zostera japonica的入侵生态效应[J]. 环境生态学, 2020, 2 (04): 65-71.
[31]满颖, 王安东, 周方文, 崔保山. 围填海活动对黄河口滨海湿地纵向水文连通网络影响[J]. 环境生态学, 2020, 2 (04): 57-64.
[32]于博威, 刘高焕, 崔保山. 晋西黄土丘陵区人工刺槐林土壤干燥化效应[J]. 环境生态学, 2020, 2 (Z1): 51-58.
[33]刘泽正, 傅宇, 马旭, 解成杰, 邱冬冬, 隋皓辰, 崔保山. 促进作用理论在生态修复中的应用进展与发展趋势[J]. 环境生态学, 2020, 2 (Z1): 41-47.
[34]邱冬冬, 闫家国, 张树岩, 左佃龙, 刘泽正, 汪方芳, 王青, 崔保山. 滨海湿地退化区鸟类刨坑觅食行为促进植被的恢复[J]. 自然资源学报, 2020, 35 (02): 449-459.
[35]汪方芳, 闫家国, 马旭, 邱冬冬, 崔保山. 黄河口盐沼湿地盐地碱蓬和互花米草凋落物的分解特征[J]. 自然资源学报, 2020, 35 (02): 480-492.
[36]李冬雪, 李雨芩, 张珂豪, 马旭, 张树岩, 刘伟华, 车纯广, 崔保山. 黄河口典型潮沟土壤碳氮分布特征规律[J]. 自然资源学报, 2020, 35 (02): 460-471.
[37]邱冬冬, 张树岩, 马旭, 闫家国, 刘泽正, 隋皓辰, 左佃龙, 车纯广, 毕正刚, 崔保山. 滨海盐沼盐地碱蓬根部凹坑微地形结构的形成机理研究[J]. 环境生态学, 2020, 2 (01): 17-25.
[38]李冬雪, 谢湉, 马旭, 崔保山, 吴霞, 车纯广, 张希涛. 1985—2015年刁口河黄河故道区域河流水文连通时空演变规律[J]. 环境生态学, 2020, 2 (01): 10-16.
[39]解成杰, 谢湉, 刘泽正, 宁中华, 于淑玲, 王青, 于海玲, 崔保山. 水文连通对湿地生物的影响[J]. 环境生态学, 2020, 2 (01): 26-34.
[40]庞博, 崔保山, 蔡燕子, 谢湉, 王青, 宁中华. 我国滨海湿地生态修复参照区选取方法研究[J]. 环境生态学, 2020, 2 (01): 1-9+25.
[41]王青, 骆梦, 邱冬冬, 谢湉, 施伟, 崔保山. 滨海盐沼水文特征对盐地碱蓬定植过程的影响[J]. 自然资源学报, 2019, 34 (12): 2569-2579.
[42]王新艳, 闫家国, 白军红, 崔保山. 黄河口滨海湿地水文连通对大型底栖动物生物连通的影响[J]. 自然资源学报, 2019, 34 (12): 2544-2553.
[43]隋皓辰, 马旭, 闫家国, 张树岩, 盖凌云, 刘泽正, 邱冬冬, 崔保山. 滨海湿地盐沼植被修复中的种子产品制作过程及其有效性[J]. 自然资源学报, 2019, 34 (12): 2601-2614.
[44]杜际增, 崔保山, 隋皓辰. 气候变化背景下青藏高原核心区植被变化的时空特征[J]. 环境生态学, 2019, 1 (08): 10-20.
[45]隋皓辰, 闫家国, 崔保山, 周英锋. 互花米草与海草床的共生效应对盐沼湿地底栖动物群落的影响[J]. 环境生态学, 2019, 1 (08): 21-27.
[46]严登华, 窦鹏, 崔保山, 谢湉, 王浩. 内河生态航道建设理论框架及关键问题[J]. 北京师范大学学报(自然科学版), 2018, 54 (06): 755-763.
[47]谢湉, 张树岩, 李姗泽, 王青, 蔡燕子, 施伟, 崔保山. 滨海盐沼植物种子扩散过程对潮流阻断的响应机制[J]. 北京师范大学学报(自然科学版), 2018, 54 (01): 1-8.
[48]宁中华, 谢湉, 刘泽正, 马旭, 邱冬冬, 崔保山. 入侵物种对滨海湿地生态系统的生物地貌影响综述[J]. 北京师范大学学报(自然科学版), 2018, 54 (01): 73-80.
[49]张宇, 崔保山, 左剑恶, 蔡燕子, 谢湉, 邢燕红. 互花米草根际细菌相对丰度及其与环境因子的关系[J]. 北京师范大学学报(自然科学版), 2018, 54 (01): 81-89.
[50]周薇薇, 邵冬冬, 孙涛, 崔保山. 植物长期暴露于浅水波环境的模拟装置研制与试验[J]. 北京师范大学学报(自然科学版), 2018, 54 (01): 113-117.
[51]解成杰, 刘泽正, 谢湉, 蔡燕子, 李晋, 崔保山. 辽河口盐沼湿地拦门沙植物群落演替特征及其驱动力分析[J]. 北京师范大学学报(自然科学版), 2018, 54 (01): 137-143.
[52]邱冬冬, 路峰, 闫家国, 骆梦, 宁中华, 蔡燕子, 崔保山. 滨海湿地生态系统工程师对潮间带土壤环境的影响机制[J]. 北京师范大学学报(自然科学版), 2018, 54 (01): 9-16.
[53]骆梦, 王青, 邱冬冬, 施伟, 宁中华, 蔡燕子, 宋振峰, 崔保山. 黄河三角洲典型潮沟系统水文连通特征及其生态效应[J]. 北京师范大学学报(自然科学版), 2018, 54 (01): 17-24.
[54]蔡燕子, 谢湉, 于淑玲, 王青, 闫秋如, 邵晓静, 张希涛, 崔保山. 黄河三角洲农田土壤-作物系统重金属污染风险评估[J]. 北京师范大学学报(自然科学版), 2018, 54 (01): 48-55.
[55]刘泽正, 汪方芳, 解成杰, 宁中华, 李晋, 秦会发, 白军红, 崔保山. 辽河口盐沼湿地表层沉积物重金属污染评价[J]. 北京师范大学学报(自然科学版), 2018, 54 (01): 144-149.
[56]崔保山, 谢湉, 王青, 李姗泽, 闫家国, 于淑玲, 刘康, 郑京晶, 刘泽正. 大规模围填海对滨海湿地的影响与对策[J]. 中国科学院院刊, 2017, 32 (04): 418-425.
[57]崔保山, 蔡燕子, 谢湉, 宁中华, 华妍妍. 湿地水文连通的生态效应研究进展及发展趋势[J]. 北京师范大学学报(自然科学版), 2016, 52 (06): 738-746.
[58]宋国香, 郑京晶, 刘康, 于淑玲, 崔保山. 基于文献计量学的水体修复技术研究趋势及热点分析[J]. 湿地科学, 2016, 14 (02): 185-193.
[59]刘康, 闫家国, 邹雨璇, 宋国香, 郑京晶, 崔保山. 黄河三角洲盐地碱蓬盐沼的时空分布动态[J]. 湿地科学, 2015, 13 (06): 696-701.
[60]邹雨璇, 程静, 刘康, 郑京晶, 闫家国, 于淑玲, 邵晓静, 崔保山. 黄河故道盐沼土壤碳、氮含量和氨氧化微生物分布特征[J]. 湿地科学, 2015, 13 (06): 752-758.
[61]李姗泽, 崔保山, 谢湉, 张树岩, 刘伟华, 付守强. 黄河三角洲沼泽中大型底栖动物的分布特征[J]. 湿地科学, 2015, 13 (06): 759-764.
[62]马田田, 梁晨, 李晓文, 谢湉, 崔保山. 围填海活动对中国滨海湿地影响的定量评估[J]. 湿地科学, 2015, 13 (06): 653-659.
[63]梁晨, 李晓文, 崔保山, 马田田. 中国滨海湿地优先保护格局构建[J]. 湿地科学, 2015, 13 (06): 660-666.
[64]周方文, 马田田, 李晓文, 崔保山. 黄河三角洲滨海湿地生态系统服务模拟及评估[J]. 湿地科学, 2015, 13 (06): 667-674.
[65]于淑玲, 崔保山, 闫家国, 宋国香, 邹雨璇, 邵晓静, 付婧. 围填海区受损滨海湿地生态补偿机制与模式[J]. 湿地科学, 2015, 13 (06): 675-681.
[66]胡波, 郑艳霞, 翟红娟, 崔保山. 生态需求流量与河道内生态需水量计算研究——以澜沧江、红河为例[J]. 长江科学院院报, 2015, 32 (03): 99-106.
[67]牟晓杰, 刘兴土, 阎百兴, 崔保山. 中国滨海湿地分类系统[J]. 湿地科学, 2015, 13 (01): 19-26.
[68]董雯, 崔保山, 海米提·依米提, 麦麦提吐尔逊·艾则孜, 达伟. 基于不同盐度目标的博斯腾湖需水量研究[J]. 干旱区地理, 2014, 37 (05): 901-907.
[69]蓝艳, 崔保山, 张永涛, 李峰居, 张宇, 蔺文亭. 白洋淀台田沟渠水生植物蔓延分布特征[J]. 湿地科学, 2013, 11 (03): 372-377.
[70]韩祯, 崔保山, 蓝艳, 张永涛, 李夏, 张宇. 白洋淀不同淀区底泥中水生植物残体垂直分布特征及其来源[J]. 湿地科学, 2013, 11 (03): 378-382.
[71]蓝艳, 崔保山, 韩祯, 李夏, 王婷婷, 刘咏妍. 白洋淀台田沟渠水生植物营养盐特征及其影响因子分析[J]. 湿地科学, 2013, 11 (02): 276-281.
[72]王婷婷, 崔保山, 刘佩佩, 蓝艳, 韩祯, 张永涛. 白洋淀漂浮植物对挺水植物和沉水植物分布的影响[J]. 湿地科学, 2013, 11 (02): 266-270.
[73]张永涛, 崔保山, 蓝艳, 韩祯, 王婷婷, 张宇. 白洋淀不同年龄芦苇根状茎中氮和磷含量[J]. 湿地科学, 2013, 11 (02): 286-291.
[74]董雯, 崔保山. 西北地区某干旱河流设计情景下的年径流量预测分析[J]. 冰川冻土, 2012, 34 (05): 1236-1240.
[75]赵欣胜, 崔保山, 孙涛, 吕卷章, 路峰. 不同生境条件下中国柽柳空间分布点格局分析[J]. 生态科学, 2011, 30 (02): 142-149.
[76]刘静玲, 任玉华, 杨志峰, 崔保山. 流域生态需水学科维度方法研究与展望[J]. 农业环境科学学报, 2010, 29 (10): 1845-1856.
[77]赵欣胜, 崔保山, 孙涛, 贺强. 黄河三角洲潮沟湿地植被空间分布对土壤环境的响应[J]. 生态环境学报, 2010, 19 (08): 1855-1861.
[78]肖蓉, 白军红, 高海峰, 邓伟, 崔保山. 封闭性和开放性沼泽湿地土壤全磷的季节变化特征[J]. 草业学报, 2010, 19 (03): 88-93.
[79]贺强, 安渊, 崔保山. 滨海盐沼及其植物群落的分布与多样性[J]. 生态环境学报, 2010, 19 (03): 657-664.
[80]贺强, 崔保山, 吕卷章, 蔡燕子, 邓佳凤. 植物残体干扰对黄河河口高潮滩盐沼芦苇生长的促进作用[J]. 湿地科学, 2009, 7 (04): 335-341.
[81]富伟, 刘世梁, 崔保山, 张兆苓. 景观生态学中生态连接度研究进展[J]. 生态学报, 2009, 29 (11): 6174-6182.
[82]郑钰, 李晓文, 崔保山. 云南纵向岭谷区道路网络对生态系统影响的阈值分析[J]. 生态学报, 2009, 29 (11): 5823-5831.
[83]丁秋祎, 白军红, 高海峰, 肖蓉, 崔保山. 黄河三角洲湿地不同植被群落下土壤养分含量特征[J]. 农业环境科学学报, 2009, 28 (10): 2092-2097.
[84]富伟, 刘世梁, 崔保山, 张兆苓. 基于景观格局与过程的云南省典型地区道路网络生态效应[J]. 应用生态学报, 2009, 20 (08): 1925-1931.
[85]郑钰, 李晓文, 崔保山, 黎聪, 宋晓龙, 张黎娜. 云南纵向岭谷区道路网络对生态系统影响的尺度效应[J]. 生态学报, 2009, 29 (08): 4267-4277.
[86]刘世梁, 富伟, 崔保山, 杨敏. 基于RV指数的道路网络干扰效应空间分异研究——以云南省纵向岭谷区为例[J]. 地理与地理信息科学, 2009, 25 (02): 50-54.
[87]衷平, 杨志峰, 崔保山, 王云. 公路对湿地的生态效应及其反馈的研究进展[J]. 湿地科学, 2009, 7 (01): 89-98.
[88]胡乔木, 杨舒茜, 李韦, 崔保山. 土壤养分梯度下黄河三角洲湿地植物的生态位[J]. 北京师范大学学报(自然科学版), 2009, 45 (01): 75-79.
[89]贺强, 崔保山, 赵欣胜, 付华龄, 廖晓琳. 黄河河口盐沼植被分布、多样性与土壤化学因子的相关关系[J]. 生态学报, 2009, 29 (02): 676-687.
[90]衷平, 杨志峰, 崔保山, 刘世梁. 公路网对湿地生态功能的累积效应研究——以云南纵向岭谷区为例[J]. 环境科学学报, 2009, 29 (02): 397-405.
[91]许明珠, 刘新会, 王亮, 武丹, 孙涛, 杨志峰, 崔保山. 利用理论化学描述符预测多氯联苯的贝类净化[J]. 中国科学(B辑:化学), 2009, (01): 87-92.
[92]贺强, 崔保山, 胡乔木, 杨舒茜, 赵欣胜. 水深环境梯度下柽柳种群分布格局的分形分析[J]. 水土保持通报, 2008, (05): 70-73.
[93]熊雄, 贺强, 崔保山. 黄河三角洲湿地草本植被的双变量主坐标排序[J]. 生态学杂志, 2008, (09): 1631-1638.
[94]邓磊, 蒋卫国, 陈云浩, 李京, 崔保山. 一种基于Contourlet域隐马尔可夫树模型的遥感影像融合方法[J]. 红外与毫米波学报, 2008, (04): 285-289.
[95]杨敏, 刘世梁, 孙涛, 崔保山, 赵欣胜. 基于边界特征的黄河三角洲景观变化及空间异质性[J]. 生态学杂志, 2008, (07): 1149-1155.
[96]刘世梁, 温敏霞, 崔保山, 富伟, 杨敏. 道路影响域的界定及其空间分异规律——以纵向岭谷区为例[J]. 地理科学进展, 2008, (04): 122-128.
[97]刘世梁, 温敏霞, 崔保山, 富伟, 杨敏. 基于空间分析方法和GIS的区域道路网络特征分析[J]. 山地学报, 2008, (04): 459-466.
[98]温敏霞, 刘世梁, 崔保山, 富伟, 杨敏. 澜沧江流域云南段道路网络对生态承载力的影响研究[J]. 环境科学学报, 2008, (06): 1241-1248.
[99]贺强, 崔保山, 赵欣胜, 付华龄. 水、盐梯度下黄河三角洲湿地植物种的生态位[J]. 应用生态学报, 2008, (05): 969-975.
[100]白军红, 欧阳华, 崔保山, 王庆改, 陈辉. 近40年来若尔盖高原高寒湿地景观格局变化[J]. 生态学报, 2008, (05): 2245-2252.
[101]崔保山, 贺强, 赵欣胜. 水盐环境梯度下翅碱蓬(Suaeda salsa)的生态阈值[J]. 生态学报, 2008, (04): 1408-1418.
[102]董世魁, 崔保山, 丁宗凯, 王娟, 高丽娜, 赵淑清. 大保高速公路老营段路域植被生态恢复[J]. 生态学报, 2008, (04): 1483-1490.
[103]任华丽, 崔保山, 白军红, 董世魁, 胡波, 赵慧. 哈尼梯田湿地核心区水稻土重金属分布与潜在的生态风险[J]. 生态学报, 2008, (04): 1625-1634.
[104]刘世梁, 温敏霞, 崔保山, 杨敏. 基于网络特征的道路生态干扰——以澜沧江流域为例[J]. 生态学报, 2008, (04): 1672-1680.
[105]王娟, 崔保山, 姚华荣, 刘世梁. 纵向岭谷区澜沧江流域景观生态安全时空分异特征[J]. 生态学报, 2008, (04): 1681-1690.
[106]温敏霞, 刘世梁, 崔保山, 杨敏. 水利工程建设对自然保护区生态系统的影响[J]. 生态学报, 2008, (04): 1663-1671.
[107]崔保山, 翟红娟. 水电大坝扰动与栖息地质量变化——以漫湾电站为例[J]. 环境科学学报, 2008, (02): 227-234.
[108]魏国良, 崔保山, 董世魁, 杨志峰. 水电开发对河流生态系统服务功能的影响——以澜沧江漫湾水电工程为例[J]. 环境科学学报, 2008, (02): 235-242.
[109]王娟, 崔保山, 刘杰, 姚华荣, 翟红娟. 云南澜沧江流域土地利用及其变化对景观生态风险的影响[J]. 环境科学学报, 2008, (02): 269-277.
[110]董世魁, 崔保山, 刘世梁, 刘杰, 朱建军, 姚维科, 丁宗凯. 滇缅国际通道沿线紫茎泽兰(Eupatorium adenophorum)的分布规律及其与环境因子的关系[J]. 环境科学学报, 2008, (02): 278-288.
[111]刘世梁, 崔保山, 温敏霞, 董世魁. 路域土壤重金属含量空间变异的影响因子[J]. 环境科学学报, 2008, (02): 253-260.
[112]翟红娟, 崔保山, 王英, 王娟, 赵欣胜, 胡波. 异龙湖湿地功能可持续性评价及PSR模型时滞性研究[J]. 环境科学学报, 2008, (02): 243-252.
[113]王娟, 崔保山, 刘世梁, 刘杰, 翟红娟. 各等级道路网对纵向岭谷区景观结构健康的影响[J]. 环境科学学报, 2008, (02): 261-268.
[114]刘杰, 崔保山, 董世魁, 王娟, 赵淑青. 纵向岭谷区高速公路干扰下群落组分及其水平分布格局变化研究[J]. 科学通报, 2007, (S2): 185-194.
[115]温敏霞, 刘世梁, 崔保山. 纵向岭谷区生态承载力的时空动态及驱动因子研究[J]. 科学通报, 2007, (S2): 64-70.
[116]胡波, 崔保山, 魏国良, 翟红娟, 任华丽. 纵向岭谷区河流生态水文时空分异及驱动力分析[J]. 科学通报, 2007, (S2): 107-116.
[117]王娟, 崔保山, 刘世梁, 董世魁, 魏国良, 刘杰. 公路网对纵向岭谷区生态系统服务价值的影响[J]. 科学通报, 2007, (S2): 155-165.
[118]魏国良, 崔保山, 杨志峰, 王娟, 胡波. 纵向岭谷区典型河段生态系统服务价值变化比较[J]. 科学通报, 2007, (S2): 225-233.
[119]翟红娟, 崔保山, 胡波, 魏国良, 刘世梁. 纵向岭谷区不同水电梯级开发情景胁迫下的区域生态系统变化[J]. 科学通报, 2007, (S2): 93-100.
[120]崔保山, 胡波, 翟红娟, 魏国良, 王娟. 重大工程建设与生态系统变化交互作用[J]. 科学通报, 2007, (S2): 19-28.
[121]崔保山, 胡波, 翟红娟, 魏国良, 王娟. 重大工程建设与生态系统变化交互作用[J]. 科学通报, 2007, (S2): 19-28.
[122]赵慧, 崔保山, 白军红, 任华丽. 纵向岭谷区高速公路对沿线土壤-植物系统的影响[J]. 科学通报, 2007, (S2): 176-184.
[123]刘世梁, 崔保山, 温敏霞, 王娟, 董世魁. 纵向岭谷区道路网络特征和生态系统变异统计规律[J]. 科学通报, 2007, (S2): 71-77.
[124]赵淑青, 崔保山, 高丽娜, 刘杰. 纵向岭谷区公路建设对沿线地区土壤质量的影响[J]. 科学通报, 2007, (S2): 166-175.
[125]刘强, 杨志峰, 崔保山. 盐渍土区生态水文过程及其盐渍化效应[J]. 科技导报, 2007, (20): 64-70.
[126]陈思宁, 刘新会, 侯娟, 刘素红, 迟光宇, 崔保山, 杨志峰. 重金属锌胁迫的白菜叶片光谱响应研究[J]. 光谱学与光谱分析, 2007, (09): 1797-1801.
[127]贺强, 崔保山, 赵欣胜, 付华龄, 熊雄, 冯光海. 水盐梯度下黄河三角洲湿地植被空间分异规律的定量分析[J]. 湿地科学, 2007, (03): 208-214.
[128]鲍达明, 胡波, 赵欣胜, 崔保山. 湿地生态用水标准确定及配置——以白洋淀湿地为例[J]. 资源科学, 2007, (05): 110-120.
[129]王娟, 崔保山, 姚华荣. 云南澜沧江流域景观格局时空动态研究[J]. 水土保持学报, 2007, (04): 85-89+97.
[130]王娟, 崔保山, 卢远. 基于生态系统服务价值核算的土地利用规划战略环境评价[J]. 地理科学, 2007, (04): 549-554.
[131]刘强, 何岩, 崔保山. 洮儿河流域土地利用变化对地表蒸散量的影响[J]. 资源科学, 2007, (04): 121-126.
[132]刘世梁, 崔保山, 温敏霞. 道路建设的生态效应及对区域生态安全的影响[J]. 地域研究与开发, 2007, (03): 108-111+116.
[133]刘世梁, 温敏霞, 崔保山. 不同道路类型对澜沧江流域景观的生态影响[J]. 地理研究, 2007, (03): 485-490.
[134]刘素红, 刘新会, 侯娟, 迟光宇, 崔保山. 植物光谱应用于白菜铜胁迫响应研究[J]. 中国科学(E辑:技术科学), 2007, (05): 693-699.
[135]刘强, 何岩, 崔保山. 土壤渗透参数空间变异性及其影响因子研究[J]. 水土保持通报, 2007, (02): 24-28+60.
[136]贺涛, 杨志峰, 崔保山. 河道内生态环境补水量分析及整合计算研究[J]. 水土保持研究, 2007, (01): 148-150.
[137]王蕾, 刘新会, 侯娟, 崔保山. 电性拓扑态指数预测PCDFs光解半衰期[J]. 化学学报, 2007, (03): 184-190.
[138]何大明, 吴绍洪, 欧晓昆, 彭华, 崔保山. 纵向岭谷区生态系统变化及西南跨境生态安全研究进展——2006年973计划项目学术研讨会纪要[J]. 地理学报, 2007, (01): 93-99.
[139]刘杰, 崔保山, 董世魁, 朱建军, 姚维科. 纵向岭谷区高速公路干扰强度对沿线植物主要生理生态特征的影响[J]. 环境科学学报, 2007, (01): 157-165.
[140]刘世梁, 崔保山, 温敏霞, 董世魁. 重大工程对区域生态安全的驱动效应及指标体系构建[J]. 生态环境, 2007, (01): 234-238.
[141]刘杰, 崔保山, 董世魁, 朱建军, 姚维科. 纵向岭谷区高速公路建设对沿线植物光合速率影响的定量研究[J]. 科学通报, 2006, (S2): 48-55.
[142]姚华荣, 杨志峰, 崔保山. 纵向岭谷区典型公路沿线的土壤侵蚀风险[J]. 科学通报, 2006, (S2): 66-72.
[143]崔保山, 翟红娟. 高原湿地功能退化的表征及其恢复中的生态需水量[J]. 科学通报, 2006, (S2): 106-113.
[144]孙海龙, 李绍才, 杨志荣, 何磊, 崔保山. 岩石边坡基质-植被-大气系统的水分循环[J]. 水科学进展, 2006, (06): 818-823.
[145]杨志峰, 崔保山, 黄国和, 白军红, 孙涛, 李晓文, 刘新会. 黄淮海地区湿地水生态过程、水环境效应及生态安全调控[J]. 地球科学进展, 2006, (11): 1119-1126.
[146]李绍才, 孙海龙, 杨志荣, 何磊, 崔保山. 护坡植物根系与岩体相互作用的力学特性[J]. 岩石力学与工程学报, 2006, (10): 2051-2057.
[147]刘世梁, 温敏霞, 崔保山, 董世魁. 道路网络扩展对区域生态系统的影响——以景洪市纵向岭谷区为例[J]. 生态学报, 2006, (09): 3018-3024.
[148]姚华荣, 崔保山. 澜沧江流域云南段土地利用及其变化对土壤侵蚀的影响[J]. 环境科学学报, 2006, (08): 1362-1371.
[149]唐娜, 崔保山, 赵欣胜. 黄河三角洲芦苇湿地的恢复[J]. 生态学报, 2006, (08): 2616-2624.
[150]贺涛, 马巍, 崔保山. 生态缺水条件下流域生态经济系统安全性分析[J]. 安全与环境学报, 2006, (04): 65-69.
[151]姚敏, 崔保山. 哈尼梯田湿地生态系统的垂直特征[J]. 生态学报, 2006, (07): 2115-2124.
[152]朱建军, 崔保山, 姚华荣, 董世魁. 纵向岭谷区公路沿线土地利用变化与扩展效应[J]. 自然资源学报, 2006, (04): 507-515.
[153]姚维科, 崔保山, 董世魁, 刘杰. 水电工程干扰下澜沧江典型段的水温时空特征[J]. 环境科学学报, 2006, (06): 1031-1037.
[154]董世魁, 崔保山, 刘世梁, 刘杰, 朱建军, 姚维科. 云南省公路路域绿化护坡植物的生态区划与选择[J]. 环境科学学报, 2006, (06): 1038-1046.
[155]姚华荣, 杨志峰, 崔保山. GIS支持下的澜沧江流域云南段土壤侵蚀空间分析[J]. 地理研究, 2006, (03): 421-429.
[156]朱建军, 杨志峰, 崔保山, 姚维科. 基于生态功能空间差异性的生态调控研究[J]. 资源科学, 2006, (03): 80-86.
[157]崔保山, 赵欣胜, 杨志峰, 唐娜, 谭学界. 黄河三角洲芦苇种群特征对水深环境梯度的响应[J]. 生态学报, 2006, (05): 1533-1541.
[158]姚维科, 崔保山, 刘杰, 董世魁. 大坝的生态效应:概念、研究热点及展望[J]. 生态学杂志, 2006, (04): 428-434.
[159]刘杰, 崔保山, 董世魁, 朱建军. 公路建设干扰下的生态系统变化及其机理[J]. 水土保持通报, 2006, (02): 31-36.
[160]白军红, 李晓文, 崔保山, 王庆改. 湿地土壤氮素研究概述[J]. 土壤, 2006, (02): 143-147.
[161]李绍才, 孙海龙, 杨志荣, 何磊, 崔保山. 岩石边坡基质-植被系统的养分循环[J]. 北京林业大学学报, 2006, (02): 85-90.
[162]王娟, 崔保山, 卢远, 孙秋芝. 生态系统服务价值在土地利用规划中的应用[J]. 水土保持学报, 2006, (01): 160-163+180.
[163]白军红, 崔保山, 李晓文, 周兰芹. 向海芦苇沼泽湿地土壤铵态氮含量的季节动态变化[J]. 草业学报, 2006, (01): 117-119.
[164]李绍才, 孙海龙, 杨志荣, 何磊, 崔保山. 秸秆纤维、聚丙烯酰胺及高吸水树脂在岩石边坡植被护坡中的效应[J]. 岩石力学与工程学报, 2006, (02): 257-267.
[165]李绍才, 孙海龙, 杨志荣, 何磊, 崔保山. 岩石边坡喷播植草护坡工程的抗侵蚀效应[J]. 北京林业大学学报, 2006, (01): 43-47.
[166]刘世梁, 崔保山, 杨志峰, 董世魁. 道路网络对澜沧江流域典型区土地利用变化的驱动分析[J]. 环境科学学报, 2006, (01): 162-167.
[167]贺涛, 杨志峰, 崔保山. 流域生态配水研究进展[J]. 资源科学, 2006, (01): 128-135.
[168]白军红, 崔保山, 杨志峰, 刘杰, 王庆改. 向海沼泽湿地土壤碱解氮含量的季节变化特征研究[J]. 中国生态农业学报, 2006, (01): 115-117.
[169]刘世梁, 崔保山, 杨志峰, 甘淑, 董世魁. 高速公路建设对山地景观格局的影响——以云南省澜沧江流域为例[J]. 山地学报, 2006, (01): 54-59.
[170]翟红娟, 崔保山, 赵欣胜, 刘世梁, 胡波, 姚敏. 异龙湖湖滨带不同环境梯度下土壤养分空间变异性[J]. 生态学报, 2006, (01): 61-69.
[171]刘杰, 崔保山, 杨志峰, 董世魁, 姚维科. 纵向岭谷区高速公路建设对沿线植物生物量的影响[J]. 生态学报, 2006, (01): 83-90.
[172]朱建军, 崔保山, 杨志峰, 董世魁, 姚华荣. 纵向岭谷区公路沿线土壤表层重金属空间分异特征[J]. 生态学报, 2006, (01): 146-153.
[173]胡波, 崔保山, 杨志峰, 王娟, 翟红娟, 姚敏. 澜沧江(云南段)河道生态需水量计算[J]. 生态学报, 2006, (01): 163-173.
[174]崔保山, 胡波, 杨志峰. 西南纵向岭谷区河道生态需水计算方法[J]. 生态学报, 2006, (01): 174-185.
[175]贺涛, 杨志峰, 崔保山, 赵翔. 流域生态用水分配的协调性评价研究[J]. 中国人口·资源与环境, 2006, (01): 132-136.
[176]李绍才, 孙海龙, 杨志荣, 何磊, 崔保山. 喷射工艺及土壤质地对岩石边坡植被护坡效应的影响[J]. 岩石力学与工程学报, 2005, (S2): 5374-5381.
[177]姚维科,杨志峰,刘卓,崔保山,董世魁,刘杰. 澜沧江中段水质时空特征分析[J]. 水土保持学报, 2005, (06): 150-154.
[178]刘杰,杨志峰,崔保山,董世魁,姚维科. 人为干扰下的生态负效应研究综述[J]. 生态学杂志, 2005, (11): 67-72.
[179]刘世梁,杨志峰,崔保山,甘淑. 道路对景观的影响及其生态风险评价——以澜沧江流域为例[J]. 生态学杂志, 2005, (08): 897-901.
[180]姚华荣,杨志峰,崔保山. 云南省澜沧江流域的土壤侵蚀及其环境背景[J]. 水土保持通报, 2005, (04): 5-10+14-112.
[181]衷平,杨志峰,崔保山,刘静玲. 白洋淀湿地生态环境需水量研究[J]. 环境科学学报, 2005, (08): 1119-1126.
[182]赵欣胜,崔保山,杨志峰. 红树林湿地生态效益能值分析——以南沙地区十九涌红树林湿地为案例[J]. 生态学杂志, 2005, (07): 841-844.
[183]白军红,欧阳华,杨志锋,崔保山,崔丽娟,王庆改. 湿地景观格局变化研究进展[J]. 地理科学进展, 2005, (04): 36-45.
[184]崔保山,赵翔,杨志峰. 基于生态水文学原理的湖泊最小生态需水量计算[J]. 生态学报, 2005, (07): 1788-1795.
[185]李绍才,孙海龙,杨志荣,何磊,崔保山. 坡面岩体–基质–根系互作的力学特性[J]. 岩石力学与工程学报, 2005, (12): 2074-2081.
[186]赵欣胜,崔保山,杨志峰. 黄河流域典型湿地生态环境需水量研究[J]. 环境科学学报, 2005, (05): 567-572.
[187]赵翔,崔保山,杨志峰. 白洋淀最低生态水位研究[J]. 生态学报, 2005, (05): 1033-1040.
[188]尹民,杨志峰,崔保山. 中国河流生态水文分区初探[J]. 环境科学学报, 2005, (04): 423-428.
[189]何大明,吴绍洪,彭华,杨志峰,欧晓昆,崔保山. 纵向岭谷区生态系统变化及西南跨境生态安全研究[J]. 地球科学进展, 2005, (03): 338-344.
[190]杨志峰,尹民,崔保山. 城市生态环境需水量研究——理论与方法[J]. 生态学报, 2005, (03): 389-396.
[191]尹民,崔保山,杨志峰. 黄河流域城市生态环境需水量案例研究[J]. 生态学报, 2005, (03): 397-403.
[192]崔保山,李英华,杨志峰. 基于管理目标的黄河三角洲湿地生态需水量[J]. 生态学报, 2005, (03): 606-614.
[193]杨志峰,崔保山,刘静玲. 生态环境需水量评估方法与例证[J]. 中国科学(D辑:地球科学), 2004, (11): 1072-1082.
[194]杨志峰,赵彦伟,崔保山,胡廷兰. 面向生态城市的水资源供需平衡分析[J]. 中国环境科学, 2004, (05): 125-129.
[195]李英华,杨志峰,崔保山. 广州南沙地区湿地生态特征现状分析[J]. 北京师范大学学报(自然科学版), 2004, (04): 534-539.
[196]崔保山,杨志峰,李英华,张可刚,赵欣胜. 城市拓展中湿地的综合保护与发展[J]. 自然资源学报, 2004, (04): 462-471.
[197]李英华,崔保山,杨志峰. 白洋淀水文特征变化对湿地生态环境的影响[J]. 自然资源学报, 2004, (01): 62-68.
[198]郭乔羽,李春晖,崔保山,杨志峰. 拉西瓦水电工程对区域生态影响分析[J]. 自然资源学报, 2003, (01): 50-57.
[199]崔保山,杨志峰. 湿地生态系统健康的时空尺度特征[J]. 应用生态学报, 2003, (01): 121-125.
[200]田英,杨志峰,刘静玲,崔保山. 城市生态环境需水量研究[J]. 环境科学学报, 2003, (01): 100-106.
[201]崔保山,杨志峰. 湿地生态环境需水量等级划分与实例分析[J]. 资源科学, 2003, (01): 21-28.
[202]杨志峰,沈珍瑶,夏星辉,曾维华,崔保山,郝芳华. 水资源可再生性基本理论及其在黄河流域的应用[J]. 中国基础科学, 2002, (05): 6-9.
[203]崔保山,杨志峰. 湿地生态系统健康评价指标体系 Ⅱ.方法与案例[J]. 生态学报, 2002, (08): 1231-1239.
[204]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, (07): 1005-1011.
[205]崔保山,杨志峰. 湿地生态环境需水量研究[J]. 环境科学学报, 2002, (02): 219-224.
[206]何池全,崔保山,赵志春. 吉林省典型湿地生态评价[J]. 应用生态学报, 2001, (05): 754-756.
[207]崔保山,刘兴土. 黄河三角洲湿地生态特征变化及可持续性管理对策[J]. 地理科学, 2001, (03): 250-256.
[208]崔保山,杨志峰. 湿地生态系统模型研究进展[J]. 地球科学进展, 2001, (03): 352-358.
[209]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, (03): 31-36.
[210]崔保山,杨志峰. 吉林省典型湿地资源效益评价研究[J]. 资源科学, 2001, (03): 55-61.
[211]崔保山,刘兴土. 三江平原挠力河流域湿地生态特征变化研究[J]. 自然资源学报, 2001, (02): 107-114.
[212]崔保山,刘兴土. 湿地生态系统设计的一些基本问题探讨[J]. 应用生态学报, 2001, (01): 145-150.
[213]白军红,余国营,叶宝莹,崔保山. 黄河三角洲湿地资源及可持续利用对策[J]. 水土保持通报, 2000, (06): 6-9.
[214]孟宪民,马学慧,崔保山. 泥炭资源农业利用现状与前景[J]. 农业现代化研究, 2000, (03): 187-191.
[215]崔保山,刘兴土. 三江平原湿地生态特征变化及其可持续性管理对策[J]. 地域研究与开发, 1999, (03): 45-48.
[216]崔保山,刘兴土. 湿地恢复研究综述[J]. 地球科学进展, 1999, (04): 45-51.
[217]崔保山. 湿地生态系统生态特征变化及其可持续性问题[J]. 生态学杂志, 1999, (02): 44-50.
[218]孟宪民,崔保山,邓伟,吕宪国. 松嫩流域特大洪灾的醒示:湿地功能的再认识[J]. 自然资源学报, 1999, (01): 15-22.
[219]崔保山,马学慧,张明祥. REGULARITY AND ESTIMATION OF METHANE EMISSION FROM MARSHLAND IN THE SANJIANG PLAIN[J]. Chinese Geographical Science, 1998, (01): 75-85.
[220]崔保山. 三江平原沼泽地CH_4排放规律及估算[J]. 地理科学, 1997, (01): 94-96.
会议论文:
[1]施伟; Anton Purnama; 邵冬冬; 崔保山. 潮流振荡影响下的河口悬沙输运机制解析研究[C]. 中国力学学会环境力学专业委员会、江苏省力学学会.2016年全国环境力学学术研讨会摘要集.中国力学学会环境力学专业委员会、江苏省力学学会:中国力学学会,2016:106.
[2]崔保山;胡波. 澜沧江河道生态需水量评估方法[C]. 中国水利学会、新疆水利厅、新疆水利学会.人水和谐及新疆水资源可持续利用——中国科协2005学术年会论文集.中国水利学会、新疆水利厅、新疆水利学会:中国水利学会,2005:122-128.