[1] Wuyi Jiang , Jiawei Xu , Yongli Cai ,* and Zhiyong Liu . Ecological Land Adaptive Planning in Macroscale, Mesoscale, and Microscale of Shanghai. Sustainability 2020, 12, 2142; doi:10.3390/su12052142
[2] Hongyu Du ,*, Fengqi Zhou, Chunlan Li, Wenbo Cai, Hong Jiang and Yongli Cai*. Analysis of the Impact of Land Use on Spatiotemporal Patterns of Surface Urban Heat Island in Rapid Urbanization, a Case Study of Shanghai, China. Sustainability 2020, 12, 1171; doi:10.3390/su12031171
[3] Wenbo Cai, Tong Wu, Wei Jiang, Wanting Peng and Yongli Cai.* Integrating Ecosystem Services Supply–Demand and Spatial Relationships for Intercity Cooperation: A Case Study of the Yangtze River Delta. Sustainability 2020, 12, 4131; doi:10.3390/su12104131
[4] Ye, Chao*; Ma, Xiangyi; Chen, Ruishan; Cai, Yongli. Marginalised countryside in a globalised city: production of rural space of Wujing Township in Shanghai, China. International Development Planning Review, 2019, 41(3): 311-328. SSCI.
[5] Du, Hongyu*; Cai, Yongli; Zhou, Fengqi; Jian, Hong; Jiang, Wuyi; Xu, Yanqing. Urban blue-green space planning based on thermal environment simulation: A case study of Shanghai, China. Ecological Indicators, 2019, 106: 0-UNSP 105501. SCIE, SSCI, EI.
[6] Ye Chao*; Liu Zhaojing; Cai Wenbo; Chen Ruishan; Liu Liangliang; Cai Yongli. Spatial Production and Governance of Urban Agglomeration in China 2000-2015: Yangtze River Delta as a Case. Sustainability, 2019, 11(5): 0-1343. SCIE.
[7] Hongyu Du, Jinquan Ai, Yongli Cai*, Hong Jiang and Pudong Liu. Combined Effects of the Surface Urban Heat Island with Landscape Composition and Configuration Based on Remote Sensing: A Case Study of Shanghai, China. Sustainability, 2019, 11, 2890 (SCI&SSCI) ,影响因子,2.592
[8] Jiang, Wuyi; Cai, Yongli*; Tian, Jingjing. The application of minimum cumulative resistance model in the evaluation of urban ecological land use efficiency. Arabian Journal of Geosciences, 2019, 12(23): 0-714. SCIE.
[9] Wang Z; Liu X; Zhang L; Jiang H; Du H; Yang D; Wu H; Liang J; Cai Y*. EFFECTS OF SHORT-TERM NITROGEN AND PHOSPHORUS ADDITION ON ROOT BIOMASS AND MORPHOLOGICAL CHARACTERISTICS OF LIGUSTRUM LUCIDUM AIT IN NEW RECLAMATION COASTAL FIELD. Applied Ecology and Environmental Research, 2019, 17(3): 5649-5662. SCIE.
[10] Ye, Chao*; Ma, Xiangyi; Chen, Ruishan; Cai, Yongli. The countryside under multiple high-tension lines: A perspective on the rural construction of Heping Village, Shanghai. Journal of Rural Studies, 2018, 62: 53-61
[11] Hongyu Du, Wenbo Cai, Yanqing Xu, Zhibao Wang, Yuanyuan Wang, Yongli Cai*. Quantifying the cool island effects of urban green spaces using remote sensing Data. Urban Forestry & Urban Greening, 2017, 27 : 24-31(SCI二区);影响因子3.043;他引30次
[12] Wenbo Cai, David Gibbs, Lang Zhang, Graham Ferrier, Yongli Cai*. Identifying hotspots and management of critical ecosystem services in rapidly urbanizing Yangtze River Delta Region, China. Journal of Environmental Management, 2017,191:258-267(SCI二区);影响因子4.865;他引25次
[13] Zhao X L, Wang Z B, Jiang H, Du H Y. Cai Y L*. Adaptability study on leaf development of greening tree species to coastal saline land. Journal of Environmental Protection and Ecology 2017, 18(4): 1461–1471.
[14] Zhao X L, Jiang H, Du H Y, He B, Cai YL*. Leaf phenology characteristics of greening tree species and implications for greening in coastal saline land. Pak. J. Bot., 2017, 49(5): 1735-1742.
[15] Hongyu Du, Duoduo Wang,Yuanyuan Wang, Xiaolei Zhao, Fei Qin, Hong Jiang, Yongli Cai*. Influences of land cover types, meteorological conditions, anthropogenic heat and urban area on surface urban heat island in the Yangtze River Delta Urban Agglomeration. Science of The Total Environment, 2016, 571:461-470(SCI二区);影响因子5.589;他引73次
[16] Du Hongyu, Song Xuejun, Jiang Hong, Kan Zenghui, Wang Zhibaoa, Cai Yongli∗. Research on the cooling island effects of water body: A case studyof Shanghai, China. Ecological Indicator.2016,67: 31-38(SCI二区);影响因子4.490;他引32次
[17] Hong Jiang, Yingying Bai,Hongyu Du, Yue Hu, Yingfu Rao, Chong Chen, Yongli Cai*. The spatial and seasonal variation characteristics of fine roots indifferent plant configuration modes in new reclamation saline soil of humid climate in China. Ecological Engineering.2016, 86:231–238 (SCI三区);影响因子3.406;他引5次
[18] Hong Jiang, Yingying Bai, Hongyu Du, Yue Hu, Yingfu Rao, Chong Chen, Yongli Cai*. Effects of spatiotemporal variation of soil salinity of fine root distribution indifferent plant configuration modes in new reclamation coastal saline field. Environmental Science and Pollution Research International 2016, 23 (7): 6639-6650(SCI三区);影响因子2.914;他引2次
[19] Haishun Xu, Liang Chen, Bing Zhao, Qiuzhuo Zhang, Yongli Cai. Green storm-water infrastructure eco-planning and development on the regional scale: a case study of Lingang New City, Shanghai, East China. Front. Earth Sci. 2016, 10(2): 366–377(SCI四区);影响因子1.205;他引5次
[20] Bin He, Yongli Cai*, Wenrui Ran, Xiaolei Zhao, Hong Jiang. Spatiotemporal heterogeneity of soil salinity after the establishment of vegetation on a coastal saline field. Catena, 2015, 127: 129–134 (SCI二区);影响因子3.851;他引20次
[21] Bin He,Yongli Cai*,Wenrui Ran,Hong Jiang. Spatial and seasonal variation of soil salinity following vegetation restoration in coastal saline land in eastern China. Catena, 2014, 118: 147-153.(SCI二区). 影响因子3.851;他引41次
[22] Haishun Xu, Lin Lin,Qiuzhuo Zhang, Yongli Cai, Wei-Ning Xiang. Purification Effects and Mechanisms of Natural Ponds on Summer Rainfall Runoff Pollution. Fresenius Environmental Bulletin, 2014, 23(3): 678-685(SCI)
[23] Jingwei Zhao, Pingjia Luo, Ronghua Wang & Yongli Cai*: Correlations between aesthetic preferences of river and landscape characters, Journal of Environmental Engineering and Landscape Management, 2013, 21(2):123-132(SCI)
[24] Zhao Jingwei, Wang Ronghua, Cai Yongli, Luo Pingjia. Effects of Visual Indicators on Landscape Preferences Journal of Urban Planning and Development-Asce, 2013, 139(1): 70-78(SCI)
[25] Li Hua & Cai Yongli*. Regional Eco-security assessment based on the Perspective of Complex System Science: A case study of Chongming in China. Human and Ecological Risk Assessment, 2011, 17(6):121-128(SCI)
[26] Wang Liang, Cai Yongli, Chen Hongquan, Dag Daler, Zhao Jingmin, Yang Juan. Flood disaster in Taihu Basin, China: causal chain and policy option analyses. Environmental Earth Sciences, 2011, 63(5): 1119-1124(SCI)
[27] Liu ZG, Li K, Cai YL*, Fang Y. Correlations between leafing phenology and traits: woody species of evergreen broad-leaved forests in subtropical China. Polish Journal of Ecology 2011,59(3):463-473(SCI).
[28] Liu ZG, Cai YL*, Li K, Guo JG. The leaf size-twig size spectrum in evergreen broad-leaved forest of subtropical China. African Journal of Biotechnology, 2010. 9(23): 3382-3387 (SCI).
[29] Zhiguo Liu, Yongli Cai, Yan Fang, Jun Jing and Kai Li*. Induced response in Schima superba: Effects of early season herbivory on leaf traits and subsequent insect attack. African Journal of Biotechnology, 2010. 9(51): 8731-8738 (SCI).
[30] Liu ZG, Cai YL*, Li K. Effects of simulated herbivory on leaf quality and subsequent insect attack during leaf expansion in Schima superba(Theaceae)in subtropical China. PHYTON- international journal of experimental botany, 2010, 79(SCI)
[31] Liang WANG, Yongli CAI*, Liyan FANG. Pollution in Taihu Lake, China: causal chain and policy options analyses. Front. Earth Sci. China. 2009,3(4): 437–444.(SCI)
[32] Juan YANG, Yongli CAI*, Weining XIANG, Jingyin ZHAO. Study on the procedure and approach for ecological risk regionalization New Zealand Journal of Agricultural Research. 2007, 50: 943–950. (SCI)
[33] J Yang, YL.Cai*, SC Sun and L Wang. Eco-physiological modelling of leaf photosynthesis and adaptation analysis of Chinese ivy (Hedera nepalensis var. sinensis) in an evergreen broad-leaved forest in eastern China. Photosynthetica. 2006.,44(4): 579-585.(SCI)
[34] Chen Z., Wang Z., Schneiderman J., Cai Y., Holocene climate fluctuations on millennium scale in the Yangtze delta of eastern China: implications and response. The Holocene, 2005.15: 917-926.(SCI)
[35] Qu, J., Xu, Z., Long, Q., Wang, L., Shen, X., Zhang, J. and Y. Cai. 2005. Global International Waters Assessment East China Sea, GIWA Regional assessment 36.Published by University of Kalmar on behalf of United Nations Environment Programme. ISSN1651-940X.
[36] Sun S., Y. Cai and X. Tian. Salt marsh vegetation change after a short-term tidal restriction in the Changjiang Estuary. Wetlands, 2003. 23 (2):257-266(SCI)
[37] Sun S., Y. Cai and S. An. Differences in morphology and biomass allocation of Scirpus mariqueter between creekside and inland communities in the Changjiang Estuary, China.Wetlands, 2002. 22 (4):786-793(SCI)
[38] Sun S., Y. Cai & H. Liu. Biomass allocation of Scirpus mariqueter along an elevational gradient in salt marsh of the Yangtze River estuary. ACTA BOTANICASINICA, 2001. 43(2):178-185(SCI)
[39] Sun S. , X. Gao & Y. Cai. Variation in sexual and asexual reproductions of Scirpus mariqueter along an elevational gradient. Ecological Research, 2001.16:263-274(SCI)
[40] Chen Z, Song BP, Wang ZH, Cai YL. Late Quaternary evolution of the sub-aqueous Yangtze Delta, China: sedimentation, stratigraphy, palynology, and deformation. Mar Geol; 2000, 162:423–441(SCI)
[41] Zhang TS K Li LQ Chen K Yang Q Wang & YL. Cai. Studies on the seeds predation of Castanopsis fargesii. Symposium of the 19thInternational Congress of Zoology.2004. 161-162.
[42] Yang K K Li Q Wang LQ Chen & YL Cai. Effects of habitat fragmentation on pollinating insects in Evergreen Broad-leaved Forest. Symposium of the 19thInternational Congress of Zoology. 2004.494-495.
[43] 周梦云; 蔡永立*; 张瑞峰; 刘健; 宋雪珺. 宁夏贺兰山国家级自然保护区建立前后区域生态脆弱性时空格局变化研究. 生态科学, 2019, 38(05): 78-85.
[44] 蒋五一; 田晶晶; 蔡永立*. 城市大河滩地景观生态设计方法探讨—以安徽怀远淮河湿地公园为例. 园林, 2018, (12): 64-68.
[45] 宋雪珺, 王多多, 覃飞, 蔡永立*. 长三角城市群2010 年生态足迹与生态承载力分析. 生态科学, 2018, 37(2):162-172
[46] 魏霖霖 蔡永立. 多目标多主体视角下的上海郊野公园规划建设思考.上海城市规划,2018(3):33-39
[47] 王多多,贾文晓,王志保,张瑞峰,陈美田,蔡永立*.基于Landsat 影像的崇明岛东滩土壤盐分遥感反演技术.中国农业科技导报,2018,20( 3) : 55-63
[48] 张瑞峰,王多多,周梦,蔡永立*.基于InVEST 模型的崇明岛野生蜜蜂传粉服务功能分析.安徽农业大学学报, 2018, 45(1): 37-44
[49] 胡玥 蔡永立*.城市公园社会服务空间公平性的定量分析-以上海市中心城区为例.华东师范大学学报(自然科学版).2017(1):91-112
[50] 蒋五一 田晶晶 蔡永立.生态红线概念解析及上海生态红线划定方法探讨. 城市建筑,2017(4):68-73
[51] 江洪, 白莹莹, 饶应福, 陈冲, 蔡永立*. 新围垦盐土地三种人工林群落细根生物量及其影响因素分析.植物学报, 2016, 51 (3): 343–352
[52] 王雪,宋雪珺,胡玥,张瑞峰,蔡永立*.上海市“三地”建设评价指标体系与评价方法构建及应用. 生态学杂志2016,35( 8) : 2260-2270
[53] 白莹莹,江洪,饶应福,蔡永立. 临港新城河岸人工植被缓冲带对氮、磷的去除效果. 中南林业科技大学学报,2016, 36(5):108-113
[54] 田晶晶, 蔡永立, 赵小雷,谢长坤. 沿海岛屿与内陆6种绿化树种物候差异性研究—以上海崇明岛和闵行为例. 上海交通大学学报. 2015, 33(3): 71-79
[55] 蔡文博, 蔡永立*. .基于GIS方法的泸沽湖流域水土流失敏感性评价. 水土保持研究.2014, 21(3):79-84.
[56] 杨娟, 蔡永立. 基于CLUE-S模型的崇明县土地利用变化时空动态模拟研究.中国农学通报, 2014, 30(11): 258-264
[57] 赵小雷, 蔡永立, 施朝阳, 田晶晶. 滨海盐碱地绿化植被评价指标体系构建及应用. 广东农业科学. 2014, 23: 145-149
[58] 何斌, 蔡永立*, 冉雯瑞, 赵小雷. 人工植被对崇明东滩滨海盐土水盐空间异质性的影响. 应用生态学报, 2013,24( 8) : 2151-2158
[59] 冉雯瑞,蔡永立*,何斌,谢长坤,赵小雷. 浙江温岭海涂围垦区土壤盐分空间异质性分析. 土壤通报,2013, 44(4): 839-842
[60] 赵小雷, 施朝阳, 何斌, 冉雯瑞, 蔡永立. 上海崇明岛园林绿化树种的春季物候特征与物候相分类. 生态学杂志,2013, 32( 9) : 2275-2280
[61] 马凤, 蔡永立*. 上海临港新城开发对土地利用和生态系统服务功能价值的影响.复旦学报(自然科学版),2013,52(1):69-77
[62] 刘志国,景军,李恺,蔡永立. 亚热带阔叶林植物叶片虫食特征研究. 生态环境学报 2013, 22(1): 78-84
[63] 徐海顺, 蔡永立, 张秋卓. 自然坑塘对夏季降雨径流污染的截流净化效果. 环境科学与技术. 2013, 36(3):105-111
[64] 杨娟,蔡永立,龚云丽,袁涛. 区域生态风险评价指标体系及实证应用研究. 上海农业学报, 2013,29(1):71-75
[65] 施朝阳,蔡永立,赵小雷.崇明东滩湿地公园园林植物群落结构研究.中国农学通报. 2013, 29(13):214-220
[66] 刘静怡,蔡永立*,於家,王云. 基于CLUE S 和灰色线性规划的嘉兴北部土地利用优化配置研究.生态与农村环境学报 2013, 29 (4): 529-536
[67] 徐海顺,张秋卓,蔡永立. 基于雨洪综合管理的上海临港新城降雨径流水文模拟. 地理与地理信息科学,2013, 29(3): 114-118
[68] 张汶伊, 杨娟, 蔡永立*. 在生态环境保护视角下的风景区道路选线研究. 以安徽省舒城县周瑜城风景区为例. 四川师范大学学报( 自然科学版). 2013, 36(4):635-639
[69] ]谢长坤,蔡永立*左俊杰.基于SCS法模拟的上海郊区农田地表产流特征及原因. 长江流域资源与环境. 2012, 21(1): 44-51
[70] 廖彬彬, 蔡永立*, 谢长坤、郝惠玲南海永兴岛珊瑚岛礁生境动态格局动态研究. 海洋环境科学. 2013, 32(5):746-751
[71] 左俊杰, 蔡永立.《上海市河道绿化建设导则》编制.现代城市研究,2012, (11):90-95
[72] 王斌, 陈凌, 张天澍, 蔡永立,李恺. 思茅新木蛾幼虫取食行为的研究.应用昆虫学报, 2012,49(3):742-746
[73] 左俊杰, 蔡永立*. 平原河网地区汇水区的划分方法—以上海市为例. 水科学进展. 2011, 22(3): 337-343(EI)
[74] 赵警卫, 蔡永立*, 罗萍嘉. 徐州地区河岸带绿化结构及植物多样性分析. 水土保持学报. 2011, 31(6):207-212
[75] 郑文发, 蔡永立*, 周昭英. 城镇居住区土地生态适宜性评价与优化对策-以奉贤为例.华东师范大学学报(自然科学版)2011,(2)108-118
[76] 金世胜,蔡永立*, 刘静怡. 基于“三生”和谐发展人居环境建设探研——以青海省贵德县为例. 青海社会科学.2011:57-60
[77] 练雄,蔡永立*, 李武陵. 基于面源污染的土地利用与覆被分类系统的构建及其应用. 安徽农业科学,2011,39( 17) : 10655-10659
[78] 吴晶晶, 蔡永立* . 快速城市化地区土地利用变化及其对水质的影响——以上海市奉贤区为例.安徽农业科学, 2011,39(26):16208 - 16211.
[79] 胡添虹, 蔡永立, 李武陵.崇明生态岛建设生态类指标体系筛选研究.安徽农业科学2011, 39( 2 ): 885- 888
[80] 李武陵, 蔡永立*.塔里木河河岸林胡杨的生态保护及可持续利用—以新疆沙雅县为例. 安徽农业科学, 2011,39( 3) : 1488 - 1491
[81] 陈伟良, 蔡永立. 上海世博园区种植及生态防控技术应用研究. 中国园林,2011:5-8
[82] 张兴钰, 蔡永立*. 不同处理对旱柳扦插繁殖的影响. 安徽农业科学,2011,39( 22) : 13492- 13494
[83] 李华, 蔡永立*. 基于SD的生态安全指标阈值的确定与应用---以上海市崇明岛为例. 生态学报, 2010,30(13): 1654-3664.
[84] 孙灿,蔡永立*,刘志国和杨乐.江天童亚热带常绿阔叶林栲树叶片发育动态. 生态与农村环境学报 2010,26 (3): 215-219
[85] 孙灿;蔡永立*; 刘志国;杨乐.浙江天童常绿阔叶林栲树爆芽物候格局研究武汉植物学研究. 2010. 28 (2): 179 -185.
[86] 周昭英,蔡永立*,郑文发. 城乡交错带城市森林的景观格局研究——以上海市奉贤区为例.安徽农业科学. 2010, 38 (18) : 9857 - 9860, 9890
[87] 罗坤,蔡永立*, 郭纪光, 左俊杰. 崇明岛绿色河流廊道景观格局. 长江流域资源与环境. 2009, 18(10): 908-913.
[88] 郭纪光, 蔡永立*, 罗坤, 左俊杰, 刘志国, 倪静雪. 基于物种保护的生态廊道构建-以崇明岛为例: 生态学杂志, 2009, 28 (8): 1668- 1672.
[89] 季夏微,蔡永立*,左俊杰, 罗坤. 山东九龙山废弃采石矿生态和景观评价与修复方案.华东师范大学学报(自然科学版). 2009, (6): 79-88..
[90] 李华, 蔡永立*. 基于ANP-PRS-SENCE框架的崇明生态安全评价. 地理与地理信息科学 2009, 25(3): 90-94.
[91] 左俊杰,蔡永立*,罗坤,郭纪光和季夏微. 上海地区河岸带结构:类型、分布及改进水资源保护. 2009, 25(6): 24-28..
[92] 李华, 蔡永立*. 基于AVC的湿地公园旅游规划比较. 上海海洋大学学报. 2009, 29(1): 58-62.
[93] 刘志国,蔡永立*,李恺,杨乐和孙灿常绿阔叶林中栲树展叶期叶片的虫食格局. 植物生态学报. 2009, 33 (5) 919~925.
[94] 刘志国,蔡永立*, 李恺和孙灿.鹿角杜鹃展叶期叶片发育与虫食动态. 生态环境学报. 2009, 18(4): 1443-1448.
[95] 杨乐,蔡永立*, 刘志国和孙灿. 浙江天童常绿阔叶林主要木本植物爆芽研究. 中南林业科技大学学报. 2009, 29(3): 38-44.
[96] 王宏伟, 蔡永立*. 昆虫取食常绿阔叶林木荷叶片的空间变化. 上海应用技术学院学报. 2009, 9(2):110-115.
[97] 蔡永立, 罗坤. 河岸植被缓冲带可变宽度的定量模拟—以崇明岛为例. 第十三届世界湖泊大会论文集.中国农业大学出版社. 2009,43-51
[98] 李华, 蔡永立*.生态旅游:和谐动因、价值及发展取向. 理论探索. 2008. (1):99-102.
[99] 李华, 蔡永立*.湿地公园规划的生态服务功能影响预评价. 国土与自然资源研究. 2008. (2):56-58.
[100] 李华,左俊杰, 蔡永立*. 基于EI理念的湿地公园规划探讨——以淮河三汊河湿地公园为例. 上海交通大学学报(农业科学版).2008. 26(2): 172-176.