| [1] |
CHENG Z Y, ZHANG X F, 2020. Exploring the Habitat Restoration and Landscape Construction of the Wetland Lakeside Zone in the Lujiang Section on the Southern Bank of the Chaohu Lake[C]// IOP Conference Series: Earth and Environmental Science. Bristol: IOP Publishing:012037.
|
| [2] |
CUI L L, WEI Z H, ZHOU L Z, et al, 2024. Effects of constant high water levels in winter on waterbird diversity in Caizi Lakes: A functional perspective[J]. Global Ecology and Conservation, 52: e02934.
|
| [3] |
DING W Q, SHI G Z, ZHA H, et al., 2024. Ecological impacts and supply demand evolution of the Yangtze to Huaihe water transfer project in Anhui section[J]. Scientific Reports, 14(1): 20311.
DOI
PMID
|
| [4] |
GORELICK N, HANCHER M, DIXON M, et al., 2017. Google Earth Engine: Planetary-scale geospatial analysis for everyone[J]. Remote Sensing of Environment, 202: 18-27.
DOI
URL
|
| [5] |
GUO B B, LI W, KONG X M, et al., 2024. Evaluating the spatiotemporal land ecological changes in the Yangtze-to-Huaihe Water Diversion Project area[J]. Environmental Science and Pollution Research, 32(16): 10299-10313.
DOI
|
| [6] |
HTAY T, HTOO K K, RØSKAFT E, et al., 2024. Environmental factors affecting spatio-temporal distribution of crop-exploiting species: Implications for coexistence between agricultural production and avifauna conservation in wetlands[J]. Environmental Management, 74(4): 664-683.
DOI
PMID
|
| [7] |
HUANG J, GUANG P H, GAO J M, et al., 2024. Multiscale spatiotemporal characteristics and influencing factors of ecosystem service value of groundwater in China[J]. Journal of Environmental Management, 368: 122196.
DOI
URL
|
| [8] |
LI C L, LI H F, ZHANG Y, et al., 2019. Predicting hydrological impacts of the Yangtze-to-Huaihe Water diversion project on habitat availability for wintering waterbirds at Caizi Lake[J]. Journal of Environmental Management, 249: 109251.
DOI
URL
|
| [9] |
LIU Z Z, WANG H, LI N, et al., 2020. Spatial and temporal characteristics and driving forces of vegetation changes in the Huaihe River Basin from 2003 to 2018[J]. Sustainability, 12(6): 1-18.
DOI
URL
|
| [10] |
PETTORELLI N, VIK J O, MYSTERUD A, et al., 2005. Using the satellite-derived NDVI to assess ecological responses to environmental change[J]. Trends in Ecology & Evolution, 20(9): 503-510.
DOI
URL
|
| [11] |
ROY D P, WULDER M A, LOVELAND T R, et al., 2014. Landsat-8: Science and product vision for terrestrial global change research[J]. Remote Sensing of Environment, 145: 154-172.
DOI
URL
|
| [12] |
SUN H Q, ZHENG Z Y, CHEN S Q, et al., 2023. Source apportionment of heavy metals and their effects on the species diversity of plant communities in the Caizi Lake wetland, China[J]. Environmental Science and Pollution Research, 30(21): 60854-60867.
DOI
|
| [13] |
TUCKER C J, 1979. Red and photographic infrared linear combinations for monitoring vegetation[J]. Remote Sensing of Environment, 8(2): 127-150.
DOI
URL
|
| [14] |
XIA Z L, LI Y J, GUO S C, et al., 2024. Satellites reveal spatial heterogeneity in dryland photovoltaic plants’ effects on vegetation dynamics[J]. Earth’s Future, 12(6): e2024EF004427.
|
| [15] |
YAN D H, WANG H, LI H H, et al., 2012. Quantitative analysis on the environmental impact of large-scale water transfer project on water resource area in a changing environment[J]. Hydrology and Earth System Sciences, 16(8): 2685-2702.
DOI
URL
|
| [16] |
ZHAI T L, WANG J, FANG Y, et al., 2021. Identification and prediction of wetland ecological risk in key cities of the Yangtze River Economic Belt: from the perspective of land development[J]. Sustainability, 13(1): 411-428.
DOI
URL
|
| [17] |
ZHAO Q Y, PENG J, ZHU Z Q, et al., 2022. Evolution and driving forces analysis of wetland landscape pattern around Chaohu Lake from 1975 to 2020[J]. Journal of Changjiang River Scientific Research Institute, 39(5): 45-53.
|
| [18] |
顾康康, 刘飞, 汤晶晶, 等, 2022. 基于压力-状态-响应模型的引江济淮工程安徽段沿线区域生态安全评价[J]. 安徽建筑大学学报, 30(5): 1-9.
|
|
GU K K, LIU F, TANG J J, et al., 2022. Regional ecological security assessment of Anhui section of Yangtze River to Huaihe River diversion project based on the Pressure-State-Response Model[J]. Journal of Anhui Jianzhu University, 30(5): 1-9.
|
| [19] |
郭贝贝, 崔莹雪, 方叶林, 等, 2022. 引江济淮工程沿线生态环境质量时空分异研究——以庐江段为例[J]. 长江流域资源与环境, 31(9): 2000-2010.
|
|
GUO B B, CUI Y X, FANG Y L, et al., 2022. Spatio-temporal differentiation of ecological environment quality in the Yangtze-to-Huaihe River water diversion project area: A case study of the Lujiang Section[J]. Resources and Environment in the Yangtze Basin, 31(9): 2000-2010.
|
| [20] |
郭贝贝, 李卫, 孔雪敏, 等, 2024. 引江济淮工程沿线 (安徽段) 粮食生产时空变化特征[J]. 巢湖学院学报, 26(2): 51-59.
|
|
GUO B B, LI W, KONG X M, et al., 2024. Spatiotemporal changes of grain production along the anhui section of Yangtze-to-Huaihe water diversion project[J]. Journal of Chaohu University, 26(2): 51-59.
|
| [21] |
黄芸梦, 2016. 瓦埠湖生态环境现状评价及湿地生态系统构建研究[D]. 合肥: 合肥工业大学.
|
|
HUANG Y M, 2016. The ecological environment present situation assessment and wetland ecosystem constuction in Lake Wabu[D]. Hefei: Hefei University of Technology.
|
| [22] |
李涛, 曹卫东, 王雪妍, 2023. 长三角一体化下城市规模提升的水环境风险——以合肥市为例[J]. 自然资源学报, 38(5): 1366-1377.
DOI
|
|
LI T, CAO W D, WANG X Y, 2023. Study on water environment risk of city size increase under the integration of Yangtze River Delta: A case study of Hefei city[J]. Journal of Natural Resources, 38(5): 1366-1377.
DOI
|
| [23] |
刘芷兰, 李红清, 石义军, 等, 2022. 枯水期水位变化下菜子湖湿地生态修复[J]. 人民长江, 53(12): 63-68.
|
|
LIU Z L, LI H Q, SHI Y J, et al., 2022. Ecological restoration of Caizi Lake wetland under water level change in dry period[J]. Yangtze River, 53(12): 63-68.
|
| [24] |
陆雨婷, 姚梦园, 朱娴飞, 等, 2018. 合肥市建设扩张与生态格局时空演变特征分析[J]. 安徽农业大学学报, 45(3): 492-500.
|
|
LU Y T, YAO M Y, ZHU X F, et al., 2018. The spatial-temporal evolution of the construction land expansion and ecological pattern in Hefei city[J]. Journal of Anhui Agricultural University, 45(3): 492-500.
|
| [25] |
祁国华, 2021. 基于多源遥感数据的巢湖水华长时序时空变化分析与预警研究[D]. 合肥: 安徽大学.
|
|
QI G H, 2021. Long-Term spatiotemporal variation analysis and early warning research of algal blooms in Chaohu Lake based on multi-source remote sensing data[D]. Hefei: Anhui University.
|
| [26] |
宋有权, 杨燕华, 程奎, 等, 2023. 引江济淮工程安徽段生态岸坡防护结构形式综述[J]. 水运工程 (8): 70-76.
|
|
SONG Y Q, YANG Y H, CHENG K, et al., 2023. Summary of ecological bank protection structure in Anhui section of Yangtze-to-Huaihe water diversion project[J]. Port & Waterway Engineering (8): 70-76.
|
| [27] |
孙康茜, 刘花台, 曹文志, 等, 2019. 引江济淮工程对派河水环境的影响[J]. 环境工程, 37(12): 49-54.
|
|
SUN K Q, LIU H T, CHAO W Z, et al., 2019. Effects of the Yangtze-to-Huaihe Water Diversion Project on the Pai River’s aquatic environment[J]. Environmental Engineering, 37(12): 49-54.
|
| [28] |
王亚琼, 高曼莉, 罗劲松, 等, 2024. 2001-2021年巢湖流域植被覆盖时空变化及驱动分析[J]. 长江科学院院报, 41(6): 58-68.
DOI
|
|
WANG Y Q, GAO M L, LUO J S, et al., 2024. Spatio-temporal variations of vegetation coverage and driving forces in Chaohu Lake Basin from 2001 to 2021[J]. Journal of Changjiang River Scientific Research Institute, 41(6): 58-68.
|
| [29] |
王哲, 田胜尼, 张永梅, 等, 2022. 巢湖派河口滩涂植物群落特征研究[J]. 生态环境学报, 31(9): 1823-1831.
DOI
|
|
WANG Z, TIAN S N, ZHANG Y M, et al., 2022. Study on the plant community characteristics of the estuary of Pai River in Chaohu Lake[J]. Ecology and Environment, 31(9): 1823-1831.
|
| [30] |
吴运力, 张钰, 田佳榕, 2023. 气候变化和人类活动对内蒙古高原不同植被类型NDVI的影响[J]. 中国农业气象, 44(12): 1155-1168.
|
|
WU Y L, ZHANG Y, TIAN J R, 2023. Impacts by climate change and human activities on NDVI in different vegetation types across the Inner Mongolia Plateau[J]. Chinese Journal of Agrometeorology, 44(12): 1155-1168.
DOI
|
| [31] |
姚简, 周立志, 魏振华, 等, 2022. 菜子湖冬季水鸟空间分布与环境因子的关系研究[J]. 生态科学, 41(1): 1-10.
|
|
YAO J, ZHOU L Z, WEI Z H, et al., 2022. Relationship between environmental factors and spatial distribution of wintering waterbirds at Caizi Lake, China[J]. Ecological Science, 41(1): 1-10.
|
| [32] |
张成驰, 姚慧芳, 马秀枝, 2025. 新疆天山地区净生态系统生产力时空动态及归因分析[J]. 生态环境学报, 34(11): 1690-1704.
DOI
|
|
ZHANG C C, YAO H F, MA X Z, 2025. Spatiotemporal dynamics and attribution analysis of net ecosystem productivity in the Tianshan Region[J]. Ecology and Environmental Sciences, 34(11): 1690-1704.
|
| [33] |
朱君瑶, 2023. 2000-2020年饶河流域NDVI时空变化及驱动因素分析[D]. 南昌: 江西农业大学.
|
|
ZHU J Y, 2023. NDVI spatio-temporal changes and Its driving factors in Rao River Basin from 2000 to 2020[D]. Nanchang: Jiangxi Agricultural University.
|