[1] |
孙儒泳, 李庆芬, 牛翠娟, 等. 基础生态学[M]. 北京: 高等教育出版社, 2002:1-4.
Google Scholar
|
[2] |
Sun R Y, Li Q F, Niu C J, et al. Basic ecology[M]. Beijing: Higher Education Press, 2002:1-4.
Google Scholar
|
[3] |
Trofimov V T. 生态地质学——地质科学的新分支[J]. 地学前缘, 2001,8(1):27-35.
Google Scholar
|
[4] |
Trofimov V T. Ecological geology:A novel branch of geological sciences[J]. Earth Science Frontiers, 2001,8(1):27-35.
Google Scholar
|
[5] |
Trofimov V T. 生态地质条件评估的方法、原理和标准[J]. 地学前缘, 2004,11(2):533-542.
Google Scholar
|
[6] |
Trofimov V T. Approaches,principles and criteria of evaluation of ecological geological conditions[J]. Earth Science Frontiers, 2004,11(2):533-542.
Google Scholar
|
[7] |
刘丙祥, 李玉成, 孙丙华, 等. “大地质”背景下高校地质学专业生态地质学课程教学探讨[J]. 生物学杂志, 2017,34(2):124-127.
Google Scholar
|
[8] |
Liu B X, Li Y C, Sun B H, et al. On teaching the course of ecological geology based on the background of the strategy of “the great geology”[J]. Journal of Biology, 2017,34(2):124-127.
Google Scholar
|
[9] |
聂洪峰, 肖春蕾, 郭兆成. 探寻生态系统运行与演化的秘密——生态地质调查思路及方法解读[J]. 国土资源科普与文化, 2019,6(4):4-13.
Google Scholar
|
[10] |
Nie H F, Xiao C L, Guo Z C. Exploring the secrets of ecosystem operation and evolution:Interpretation of ecological geological survey ideas and methods[J]. Scientific and Cultural Popularization of Land and Resources, 2019,6(4):4-13.
Google Scholar
|
[11] |
张景华, 欧阳渊, 刘洪, 等. 西昌市生态地质特征与脆弱性评价[M]. 武汉: 中国地质大学出版社, 2020:1-5.
Google Scholar
|
[12] |
Zhang J H, Ouyang Y, Liu H, et al. Eco-geological characteristics and vulnerability evaluation of Xichang City[M]. Wuhan: China University of Geosciences Press, 2020:1-5.
Google Scholar
|
[13] |
陈树旺, Antonina A Z, 邢德和, 等. 铁岭地区生态地质研究[M]. 北京: 地质出版社, 2011:1-2.
Google Scholar
|
[14] |
Chen S W, Antonina A Z, Xing D H, et al. Eco-geological study in Tieling area[M]. Beijing: Geological Publishing House, 2011:1-2.
Google Scholar
|
[15] |
陈树旺, 邢德和, 丁秋红, 等. 生态地质调查评价——以辽宁铁岭地区为例[J]. 地质与资源, 2012,21(6):540-545.
Google Scholar
|
[16] |
Chen S W, Xing D H, Ding Q H, et al. Eco-geological survey and evaluation:A case study of Tieling area,Liaoning Province[J]. Geology and Resources, 2012,21(6):540-545.
Google Scholar
|
[17] |
汪振立. “生态地质”课程教学初探[J]. 中国地质教育, 2012,(1):17-20.
Google Scholar
|
[18] |
Wang Z L. Preliminary study on teaching the course of ecological geology[J]. Chinese Geological Education, 2012,(1):17-20.
Google Scholar
|
[19] |
汪振立. 生态地质[M]. 北京: 地质出版社, 2013:1-5.
Google Scholar
|
[20] |
Wang Z L. Eco-geology[M]. Beijing: Geological Publishing House, 2013:1-5.
Google Scholar
|
[21] |
吴传璧, 刘燕平. 生态地质调查工作——俄罗斯的状况与启示[J]. 国土资源情报, 2003,(12):36-42.
Google Scholar
|
[22] |
Wu C B, Liu Y P. Eco-geological survey:Situation and enlightenment of Russia[J]. Land and Resources Information, 2003,(12):36-42.
Google Scholar
|
[23] |
王长生, 王大可. 试论1:5万生态地质调查[J]. 中国区域地质, 1997,16(1):56-59.
Google Scholar
|
[24] |
Wang C S, Wang D K. On the 1:50 000 ecological geological investigation[J]. Regional Geology of China, 1997,16(1):56-59.
Google Scholar
|
[25] |
王长生, 王大可. 生态地质学的创立及其在大巴山区的初步应用[J]. 大自然探索, 1998,17(6):68-70.
Google Scholar
|
[26] |
Wang C S, Wang D K. Production of ecological geology and its applications in the Daba Mountain[J]. Exploration of Nature, 1998,17(66):68-70.
Google Scholar
|
[27] |
侯春堂, 李瑞敏, 冯翠娥, 等. 区域农业生态地质调查内容与方法——以河北平原为例[J]. 地质科技情报, 2002,21(1):66-70.
Google Scholar
|
[28] |
Hou C T, Li R M, Feng C E, et al. An approach to survey contents and methods of regional and agroecological geology:A case study in Hebei Plain[J]. Geological Science and Technology Information, 2002,21(1):66-70.
Google Scholar
|
[29] |
何政伟, 黄润秋, 孙传敏, 等. 浅议“生态地质学”[J]. 国土资源科技管理, 2003,3(20):69-72.
Google Scholar
|
[30] |
He Z W, Huang R Q, Sun C M, et al. A brief discussion on ‘eco-geology’[J]. Scientific and Technological Management of Land and Resources, 2003,3(20):69-72.
Google Scholar
|
[31] |
杨忠芳, 奚小环, 成杭新, 等. 区域生态地球化学评价核心与对策.第四纪研究[J], 2005,25(3):276-284.
Google Scholar
|
[32] |
Yang Z F, Xi X H, Cheng H X, et al. The core and countermeasures of regional ecological geochemical assessment[J]. Quaternary Sciences, 2005,25(3):276-284.
Google Scholar
|
[33] |
孙立广. 南极无冰区生态地质学及其形成与发展[J]. 自然杂志, 2006,28(3):150-154.
Google Scholar
|
[34] |
Sun L G. The formation and development of eco-geology in ice-free area,Antarctica[J]. Chinese Journal of Nature, 2006,28(3):150-154.
Google Scholar
|
[35] |
Trofimov V T, Andreeva T V. Ecological geological systems and their types,position in the ecosystems structure and tasks of the investigation[J]. Earth Science Frontiers, 2010,17(2):425-438.
Google Scholar
|
[36] |
赵平. 新时代生态地质勘查工作的基本内涵与架构[J]. 中国煤炭地质, 2018,30(10):1-5.
Google Scholar
|
[37] |
Zhao P. Fundamental connotation and framework of eco-geological exploration in new era[J]. Coal Geology of China, 2018,30(10):1-5.
Google Scholar
|
[38] |
李鹤, 张平宇, 程叶青. 脆弱性的概念及其评价方法[J]. 地理科学进展, 2008,27(2),18-24.
Google Scholar
|
[39] |
Li H, Zhang P Y, Cheng Y Q. Concepts and assessment methods of vulnerability[J]. Progress in Geography, 2008,27(2),18-24.
Google Scholar
|
[40] |
李莉, 王晓婷, 王辉. 脆弱性内涵、评价与研究趋势综述[J]. 中国渔业经济, 2010,28(3),161-169.
Google Scholar
|
[41] |
Li L, Wang X T, Wang H. Review of content,evaluation and research trends of vulnerability[J]. Chinese Fisheries Economics, 2010,28(3),161-169.
Google Scholar
|
[42] |
姚建, 丁晶, 艾南山. 岷江上游生态脆弱性评价[J]. 长江流域资源与环境, 2004,13(4):380-384.
Google Scholar
|
[43] |
Yao J, Ding J, Ai N S. Assessment of ecological vulnerability in upper reaches of Mingjiang River[J]. Resources and Environment in the Yangtze Basin, 2004,13(4):380-384.
Google Scholar
|
[44] |
沈珍瑶, 杨志峰, 曹瑜. 环境脆弱性研究述评[J]. 地质科技情报, 2003,22(3):91-94.
Google Scholar
|
[45] |
Shen Z Y, Yang Z F, Cao Y. Review on environment vulnerability research[J]. Geological Science and Technology Information, 2003,22(3):91-94.
Google Scholar
|
[46] |
徐庆勇, 黄玫, 刘洪升, 等. 基于RS和GIS的珠江三角洲生态环境脆弱性综合评价[J]. 应用生态学报, 2011,22(11):2987-2995.
Google Scholar
|
[47] |
Xu Q Y, Huang M, Liu H S, et al. Integrated assessment of eco-environmental vulnerability in Pearl River Delta based on RS and GIS[J]. Chinese Journal of Applied Ecology, 2011,22(11):2987-2995.
Google Scholar
|
[48] |
卢远, 苏文静, 华璀. 基于景观格局和生态敏感性的左江流域生态脆弱性分析[J]. 水土保持研究, 2011,18(3):78-87.
Google Scholar
|
[49] |
Lu Y, Su W J, Hua C. Analysis of ecological vulnerability in Zuojiang River Basin based on landscape pattern and ecosystem sensitivity[J]. Research of Soil and Water Conservation, 2011,18(3):78-87.
Google Scholar
|
[50] |
李念春, 袁辉. 黄河三角洲高效生态经济区生态环境脆弱性评价研究[J]. 山东国土资源, 2015,31(10):57-61.
Google Scholar
|
[51] |
Li N C, Yuan H. Evaluation and study on ecological vulnerability of efficient ecological economic zone in the Yellow River Delta area[J]. Shandong Land and Resources, 2015,31(10):57-61.
Google Scholar
|
[52] |
侯文娟, 高江波, 彭韬, 等. 结构-功能-生境框架下的西南喀斯特生态系统脆弱性研究进展[J]. 地理科学进展, 2016,35(3):320-330.
Google Scholar
|
[53] |
Hou W J, Gao J B, Peng T, et al. Review of ecosystem vulnerability studies in the karst region of Southwest China based on a structure-function-habitat framework[J]. Progress in Geography, 2016,35(3):320-330.
Google Scholar
|
[54] |
邵秋芳, 彭培好, 黄洁, 等. 长江上游安宁河流域生态环境脆弱性遥感监测[J]. 国土资源遥感, 2016,28(2):175-181.doi: 10.6046/gtzyyg.2016.02.27.
Google Scholar
|
[55] |
Shao Q F, Peng P H, Huang J, et al. Monitoring eco-environmental vulnerability in Anning River Basin in the upper reaches of the Yangtze River using remote sensing techniques[J]. Remote Sensing for Land and Resources, 2016,8(2):175-181.doi: 10.6046/gtzyyg.2016.02.27.
Google Scholar
|
[56] |
姚昆, 张存杰, 何磊, 等. 雅砻江中上游流域生态环境脆弱性动态评价及预测[J]. 国土资源遥感, 2020,32(4):199-208.doi: 10.6046/gtzyyg.2020.04.25.
Google Scholar
|
[57] |
Yao K, Zhang C J, He L, et al. Dynamic evaluation and prediction of ecological environment vulnerability in the middle-upper reaches of the Yalong River[J]. Remote Sensing for Land and Resources, 2020,32(4):199-208.doi: 10.6046/gtzyyg.2020.04.25.
Google Scholar
|
[58] |
陈开伟. 西昌市天然林资源保护工程建设成效评价[J]. 宁夏农林科技, 2012,53(10):85-86.
Google Scholar
|
[59] |
Chen K W. Effects evaluation on natural forest protection engineering construction of Xichang City[J]. Ningxia Journal of Agriculture and Forestry Science and Technology, 2012,53(10):85-86.
Google Scholar
|
[60] |
Hong W Y, Jiang R R, Yang C Y, et al. Establishing an ecological vulnerability assessment indicator system for spatial recognition and management of ecologically vulnerable areas in highly urbanized regions:A case study of Shenzhen,China[J]. Ecological Indicators, 2016(69):540-547.
Google Scholar
|
[61] |
Zhang F, Liu X P, Zhang J Q, et al. Ecological vulnerability assessment based on multi-sources data and SD model in Yinma River Basin,China[J]. Ecological Modelling, 2017(349):41-50.
Google Scholar
|
[62] |
Zhao J C, Jia G X, Tian Y, et al. Environmental vulnerability assessment for Mainland China based on entropy method[J]. Ecological Indicators, 2018(91):410-422.
Google Scholar
|
[63] |
Yang Z, Li W P, Li X Q, et al. Assessment of eco-geo-environment quality using multivariate data:A case study in a coal mining area of Western China[J]. Ecological Indicators, 2019(107):1-13.
Google Scholar
|
[64] |
Wei W, Shi S N, Zhang X Y, et al. Regional-scale assessment of environmental vulnerability in an arid inland basin[J]. Ecological Indicators, 2020(109):1-19.
Google Scholar
|
[65] |
刘洪, 黄瀚霄, 欧阳渊, 等. 基于地质建造的土壤地质调查及应用前景分析——以大凉山区西昌市为例[J]. 沉积与特提斯地质, 2020,40(1):91-105.
Google Scholar
|
[66] |
Liu H, Huang H X, Ouyang Y, et al. Soil's geologic investigation in Daliangshan,Xichang,Sichuan[J]. Sedimentary Geology and Tethyan Geology, 2020,40(1):91-105.
Google Scholar
|
[67] |
张景华, 高慧, 欧阳渊, 等. 贵州省黔西县土壤侵蚀敏感性评价[J]. 中国水土保持科学, 2018,16(2):88-94.
Google Scholar
|
[68] |
Zhang J H, Gao H, Ouyang Y, et al. Sensitivity evaluation of soil erosion in Qianxi County of Guizhou Province[J]. Science of Soil and Water Conservation, 2018,16(2):88-94.
Google Scholar
|
[69] |
王克晓, 陈刚, 陈伟涛, 等. 生态地质环境评价方法研究[J]. 测绘科学, 2015,40(7):78-82.
Google Scholar
|
[70] |
Wang K X, Chen G, Chen W T, et al. Comprehensive assessment of eco-geologyical environment[J]. Science of Surveying and Mapping, 2015,40(7):78-82.
Google Scholar
|
[71] |
王尧, 张茂省, 杨建锋. 中国地质环境脆弱性评价[J]. 西北地质, 2019,52(2):199-206.
Google Scholar
|
[72] |
Wang Y, Zhang M S, Yang J F. Evaluation research on the fragility of geological environment in China[J]. Northwestern Geology, 2019,52(2):199-206.
Google Scholar
|
[73] |
Satiprasad S, Anirban D, Amlanjyoti K. Environmental vulnerability assessment using grey analytic hierarchy process based model[J]. Environmental Impact Assessment Review, 2016(56):145-154.
Google Scholar
|
[74] |
张茂省, 王尧, 薛强. 资源环境承载力评价理论方法与实践[J]. 西北地质, 2019,52(2):1-11.
Google Scholar
|
[75] |
Zhang M S, Wang Y, Xue Q. Evaluation resource environment carrying capacity:Theoretical method and practice[J]. Northwestern Geology, 2019,52(2):1-11.
Google Scholar
|
[76] |
张晓东, 刘湘南, 赵志鹏, 等基于层次分析法的盐池县地质灾害危险性评价[J]. 国土资源遥感, 2019,31(3):183-192.doi: 10.6046/gtzyyg.2019.03.23.
Google Scholar
|
[77] |
Zhang X D, Liu X N, Zhao Z P, et al. Geological disaster hazard assessment in Yanchi County based on AHP[J]. Remote Sensing for Land and Resources, 2019,31(3):183-192.doi: 10.6046/gtzyyg.2019.03.23.
Google Scholar
|
[78] |
郑续, 苗俊霞, 王东, 等. 黄河中上游地质灾害高发县国土空间适宜性评价及功能分区——以陕西省延川县为例[J]. 西北地质, 2020,53(2):289-297.
Google Scholar
|
[79] |
Zheng X, Wang J X, Wang D, et al. Suitability evaluation and functional division of land space development in the high-incidence area of geological hazards in the Yellow River:A case study of Yanchuan County,Shangxi Province[J]. Northwestern Geology, 2020,53(2):289-297.
Google Scholar
|
[80] |
赵玉灵. 基于层次分析法的矿山环境评价方法研究——以海南岛为例[J]. 国土资源遥感, 2020,32(1):148-153.doi: 10.6046/gtzyyg.2020.01.20.
Google Scholar
|
[81] |
Zhao Y L. Study and application of analytic hierarchy process of mine geological environment:A case study in Hainan Island[J]. Remote Sensing for Land and Resources, 2020,32(1):148-153.doi: 10.6046/gtzyyg.2020.01.20.
Google Scholar
|
[82] |
徐建华. 计量地理学[M].2版. 北京: 高等教育出版社, 2014:234-239.
Google Scholar
|
[83] |
Xu J H. Quantitative geography[M].2nd ed. Beijing: Higher Education Press, 2014:234-239. |