[1] ZHU Jialei, PENNER J E, YU Fangqun, et al. Decrease in radiative forcing by organic aerosol nucleation, climate, and land use change [J]. Nature Communications, 2019, 10(1): 423.
[2] DAMANIK-AMBARITA M N, BOETS P, THI H, et al. Impact assessment of local land use on ecological water quality of the Guayas river basin (Ecuador) [J]. Ecological Informatics, 2018, 48: 226 − 237.
[3] 任荣秀, 杜章留, 孙义亨, 等. 华北低丘山地不同土地利用方式下土壤团聚体及其有机碳分布特征[J]. 生态学报, 2020, 40(19): 6991 − 6999.

REN Rongxiu, DU Zhangliu, SUN Yiheng, et al. Soil aggregate and its organic carbon distribution characteristics at different land use patterns in hilly areas of north China [J]. Acta Ecologica Sinica, 2020, 40(19): 6991 − 6999.
[4] DU Xuejun, HUANG Zhonghua. Ecological and environmental effects of land use change in rapid urbanization: the case of Hangzhou, China [J]. Ecological Indicators, 2017, 81: 243 − 251.
[5] 侯蕊, 李红波, 高艳丽. 基于景观格局的武汉市江夏区土地利用生态风险评价[J]. 水土保持研究, 2021, 28(1): 323 − 330.

HOU Rui, LI Hongbo, GAO Yanli. Ecological risk assessment of land use in Jiangxia district of Wuhan based on landscape pattern [J]. Research of Soil and Water Conservation, 2021, 28(1): 323 − 330.
[6] 元冰瑜, 高建华, 池源, 等. 1990—2020年江苏省海岸带景观生态状况指数跨尺度时空特征[J]. 应用生态学报, 2022, 33(2): 489 − 499.

YUAN Bingyu, GAO Jianhua, CHI Yuan, et al. Cross-scale spatiotemporal characteristics of landscape ecological conditions index in coastal zone of Jiangsu Province, China during 1990−2020 [J]. Chinese Journal of Applied Ecology, 2022, 33(2): 489 − 499.
[7] 苑韶峰, 唐奕钰, 申屠楚宁. 土地利用转型时空演变及其生态环境效应——基于长江经济带127个地级市的实证研究[J]. 经济地理, 2019, 39(9): 174 − 181.

YUAN Shaofeng, TANG Yiyu, SHENTU Chuning. Spatiotemporal change of land-use transformation and its eco-environmental response: a case of 127 counties in Yangtze River economic belt [J]. Economic Geography, 2019, 39(9): 174 − 181.
[8] 赵锐锋, 姜朋辉, 陈亚宁, 等. 塔里木河干流区土地利用/覆被变化及其生态环境效应[J]. 地理科学, 2012, 32(2): 244 − 250.

ZHAO Ruifeng, JIANG Penghui, CHEN Yaning, et al. Land use/cover change and its eco-environment effect in the main stream of Tarim River [J]. Scientia Geographica Sinica, 2012, 32(2): 244 − 250.
[9] 刘桂林, 张落成, 张倩. 长三角地区土地利用时空变化对生态系统服务价值的影响[J]. 生态学报, 2014, 34(12): 3311 − 3319.

LIU Guilin, ZHANG Luocheng, ZHANG Qian. Spatial and temporal dynamics of land use and its influence on ecosystem service value in Yangtze River Delta [J]. Acta Ecologica Sinica, 2014, 34(12): 3311 − 3319.
[10] 刘智方, 唐立娜, 邱全毅, 等. 基于土地利用变化的福建省生境质量时空变化研究[J]. 生态学报, 2017, 37(13): 4538 − 4548.

LIU Zhifang, TANG Li’na, QIU Quanyi, et al. Temporal and spatial changes in habitat quality based on land-use change in Fujian Province [J]. Acta Ecologica Sinica, 2017, 37(13): 4538 − 4548.
[11] 金声甜, 肖文海, 杨胜苏, 等. 长江经济带土地利用变化及其生态系统响应[J]. 经济地理, 2020, 40(7): 166 − 173.

JIN Shengtian, XIAO Wenhai, YANG Shengsu, et al. Land use change and its ecosystem response in the Yangtze River Economic belt [J]. Economic Geography, 2020, 40(7): 166 − 173.
[12] 刘吉凯, 钟仕全, 梁文海. 基于多时相Landsat 8 OLI影像的作物种植结构提取[J]. 遥感技术与应用, 2015, 30(4): 775 − 783.

LIU Jikai, ZHONG Shiquan, LIANG Wenhai. Extraction on crops planting structure based on multi-temporal Landsat 8 OLI images [J]. Remote Sensing Technology and Application, 2015, 30(4): 775 − 783.
[13] 郭力娜, 李帅, 牛振国, 等. 基于物候差和多时相影像的耕地种植结构遥感调查——以唐山玉田为例[J]. 测绘科学, 2019, 44(10): 50 − 58.

GUO Li’na, LI Shuai, NIU Zhenguo, et al. Remote sensing investigation of farmland planting structure based on phenological difference and multi-temporal images-taking Yutian in Tangshan as an example [J]. Science of Surveying and Mapping, 2019, 44(10): 50 − 58.
[14] 张志杰, 张浩, 常玉光, 等. Landsat系列卫星光学遥感器辐射定标方法综述[J]. 遥感学报, 2015, 19(5): 719 − 732.

ZHANG Zhijie, ZHANG Hao, CHANG Yuguang, et al. Review of radiometric calibration methods of Landsat series optical remote sensors [J]. Journal of Remote Sensing, 2015, 19(5): 719 − 732.
[15] 陈趁新, 胡昌苗, 霍连志, 等. Landsat TM数据不同辐射校正方法对土地覆盖遥感分类的影响[J]. 遥感学报, 2014, 18(2): 320 − 334.

CHEN Chenxin, HU Changmiao, HUO Lianzhi, et al. Effect of different radiation correction methods of Landsat TM data on land-cover remote sensing classification [J]. Journal of Remote Sensing, 2014, 18(2): 320 − 334.
[16] 刘礼群, 江坤, 胡智, 等. 雄安新区国土空间开发的生态系统服务价值响应特征[J]. 生态学报, 2022, 42(6): 1 − 14.

LIU Liqun, JIANG Kun, HU Zhi, et al. Response characteristics of ecosystem services values in territorial space development of Xiong’an New Area [J]. Acta Geographica Sinica, 2022, 42(6): 1 − 14.
[17] YU Tan, XU Shuwen, ZHOU Xinyu, et al. Semi-automatic extraction of the threshold segmentation of coastline based on coastline type [J]. IOP Conference Series:Earth and Environmental Science, 2021, 690(1): 12012 − 12019.
[18] 岳辉, 刘英. 基于Landsat 8 TIRS的地表温度反演算法对比分析[J]. 科学技术与工程, 2018, 18(20): 200 − 205.

YUE Hui, LIU Ying. Comparison and analysis of land surface temperature retrieval algorithms based on landsat 8 TIRS [J]. Science Technology and Engineering, 2018, 18(20): 200 − 205.
[19] 丁凤, 徐涵秋. TM热波段图像的地表温度反演算法与实验分析[J]. 地球信息科学, 2006, 8(3): 125 − 130.

DING Feng, XU Hanqiu. Comparison of two new algorithms for retrieving land Surface temperature from landsat TM thermal band [J]. Geo-Information Science, 2006, 8(3): 125 − 130.
[20] 徐涵秋. 区域生态环境变化的遥感评价指数[J]. 中国环境科学, 2013, 33(5): 889 − 897.

XU Hanqiu. A remote sensing index for assessment of regional ecological changes [J]. China Environmental Science, 2013, 33(5): 889 − 897.
[21] 徐涵秋, 施婷婷, 王美雅, 等. 雄安新区地表覆盖变化及其新区规划的生态响应预测[J]. 生态学报, 2017, 37(19): 6289 − 6301.

XU Hanqiu, SHI Tingting, WANG Meiya, et al. Land cover changes in the Xiong’an New Area and a prediction of ecological response to forthcoming regional planning [J]. Acta Ecologica Sinica, 2017, 37(19): 6289 − 6301.
[22] 王志杰, 代磊. 黔中喀斯特山地城市土地利用/覆被变化及其生态效应评价——以贵阳市花溪区为例[J]. 生态学报, 2021, 41(9): 3429 − 3440.

WANG Zhijie, DAI Lei. Assessment of land use/cover changes and its ecological effect in karst mountainous cities in central Guizhou Province: taking Huaxi District of Guiyang City as a case [J]. Acta Ecologica Sinica, 2021, 41(9): 3429 − 3440.
[23] 王凯霖, 李海涛, 吴爱民, 等. 人工补水条件下白洋淀湿地演变研究[J]. 地球学报, 2018, 39(5): 549 − 558.

WANG Kailin, LI Haitao, WU Aimin, et al. An analysis of the evolution of Baiyangdian wetlands in Hebei Province with artificial recharge [J]. Acta Geoscientica Sinica, 2018, 39(5): 549 − 558.
[24] 马远. 雄安新区城市森林建设的经验和启示[J]. 林业与生态, 2019(6): 23 − 25.

MA Yuan. Experience and inspiration of urban forest construction in Xiong’an New Area [J]. Forestry and Ecology, 2019(6): 23 − 25.
[25] 杨江燕, 吴田, 潘肖燕, 等. 基于遥感生态指数的雄安新区生态质量评估[J]. 应用生态学报, 2019, 30(1): 277 − 284.

YANG Jiangyan, WU Tian, PAN Xiaoyan, et al. Ecological quality assessment of Xiong’an New Area based on remote sensing ecological index [J]. Chinese Journal of Applied Ecology, 2019, 30(1): 277 − 284.
[26] 高星, 刘泽伟, 李晨曦, 等. 基于“三生空间”的雄安新区土地利用功能转型与生态环境效应研究[J]. 生态学报, 2020, 40(20): 7113 − 7122.

GAO Xing, LIU Zewei, LI Chenxi, et al. Land use function transformation in the Xiong’an New Area based on ecological-production-living spaces and associated eco-environment effects [J]. Acta Ecologica Sinica, 2020, 40(20): 7113 − 7122.
[27] 关瑜, 陈影, 潘肖燕, 等. 基于土地利用转型的生态服务交叉敏感性分析——以雄安新区为例[J]. 生态经济, 2021, 37(3): 153 − 160.

GUAN Yu, CHEN Ying, PAN Xiaoyan, et al. Cross-sensitivity analysis of ecological services based on land use transition: a case study of Xiong’an New Area [J]. Ecological Economy, 2021, 37(3): 153 − 160.
[28] 施婷婷, 徐涵秋, 孙凤琴, 等. 建设项目引发的区域生态变化的遥感评估——以敖江流域为例[J]. 生态学报, 2019, 39(18): 6826 − 6839.

SHI Tingting, XU Hanqiu, SUN Fengqin, et al. Remote-sensing-based assessment of regional ecological changes triggered by a construction project: a case study of Aojiang River Watershed [J]. Acta Ecologica Sinica, 2019, 39(18): 6826 − 6839.
[29] 金佳莉, 王成, 贾宝全. 北京平原造林后景观格局与热场环境的耦合分析[J]. 应用生态学报, 2018, 29(11): 3723 − 3734.

JIN Jiali, WANG Cheng, JIA Baoquan. Coupling analysis of landscape pattern and thermal fields after the afforestation in Beijing plain area [J]. Chinese Journal of Applied Ecology, 2018, 29(11): 3723 − 3734.