Forest and Grassland Resources Research >
Dynamic Change of Vegetation Coverage and its Driving Forces in Different Landforms on Yushenfu Mining Area from 1990 to 2019
Received date: 2021-08-23
Revised date: 2021-09-29
Online published: 2021-11-29
Vegetation coverage is an important indicator reflecting the dynamic changes of the ecological environment in the mining area.In order to explore the temporal and spatial evolution of vegetation coverage of loess hilly area and windy sand land in Yushenfu mining area,the temporal dynamic and spatial distribution,change trend and driving forces of of vegetation coverage were studied based on Landsat data in different landform types on Yushenfu mining area from 1990 to 2019,using pixel dichotomy model,partial correlation analysis and residual analysis.The results showed that:1)In the term of temporal distribution,the average vegetation coverage increased from 33 % to 45 % in the Yushenfu mining area from 1990 to 2019,the vegetation improvement area was three times of the degraded area,and the increasing rate of vegetation coverage improved since 2005,but the vegetation coverage showed a downward trend in the loess hilly area from 1990 to 1995 and in the windy sand land from 2000 to 2005;2)In the term of spatial distribution,the mainly vegetation coverage levels in the loess hilly area and windy sand land were 30%~60 % and 15%~45 % respectively,and the average growth rate of vegetation coverage in the loess hilly area was about 2 times of that in windy sand land from 1990 to 2019;3)From 1990 to 2019,the relative contribution rates of climate change and human activities to the changing of vegetation coverage were 45.48% and 54.52%,respectively,and the main driving forces that caused changes of vegetation coverage in loess hilly areas and windy sand land in 1990—2000 and 2000—2019 were human factors and climatic factors,respectively.
Huadong DU , Benyan NING , Mengtong BAI , Penghui FAN . Dynamic Change of Vegetation Coverage and its Driving Forces in Different Landforms on Yushenfu Mining Area from 1990 to 2019[J]. Forest and Grassland Resources Research, 2021 , 0(5) : 121 -130 . DOI: 10.13466/j.cnki.lyzygl.2021.05.016
| [1] | Nie Tong, Dong Guotao, Jiang Xiaohui, et al. Spatio-Temporal Changes and Driving Forces of Vegetation Coverage on the Loess Plateau of Northern Shaanxi[J]. Remote Sensing, 2021, 13(4):613. |
| [2] | 袁涛, 倪璇, 周伟. 煤炭开发区植被扰动时空效应及影响范围界定:以宁东矿区为例[J]. 地学前缘, 2021, 28(4):110-117. |
| [3] | 王双明, 侯恩科, 谢晓深, 等. 中深部煤层开采对地表生态环境的影响及修复提升途径研究[J]. 煤炭科学技术, 2021, 49(1):19-31. |
| [4] | Guo Donggan, Bai Zhongke, Shang-Guang Tieliang, et al. Impacts of coal mining on the above-ground vegetation and soil quality:A case study of Qinxin coal mine in Shanxi province,China[J]. John Wiley & Sons,Ltd, 2011, 39(3):219-225. |
| [5] | 王金华, 康红普, 刘见中, 等. 我国绿色煤炭资源开发布局战略研究[J]. 中国矿业大学学报, 2018, 47(1):15-20. |
| [6] | 徐占军, 侯湖平, 张绍良, 等. 采矿活动和气候变化对煤矿区生态环境损失的影响[J]. 农业工程学报, 2012, 28(5):232-240. |
| [7] | Lu Qing, Zhao Dongsheng, Wu Shaohong, et al. Using the NDVI to analyze trends and stability of grassland vegetation cover in Inner Mongolia[J]. Springer Vienna, 2019, 135(3):1629-1640. |
| [8] | Xiu Lina, Yao Xiaojun, Cheng Mengdie, et al. Effect of ecological construction engineering on vegetation restoration:A case study of the loess plateau[J]. Remote Sensing, 2021, 13(8):1407. |
| [9] | 李培先, 郑江华, 刘萍. 2000—2014年乌鲁木齐市植被覆盖度时空变化分析[J]. 林业资源管理, 2016(4):88-95. |
| [10] | 侯恩科, 车晓阳, 冯洁, 等. 榆神府矿区含水层富水特征及保水采煤途径[J]. 煤炭学报, 2019, 44(3):813-820. |
| [11] | 梅安新, 彭望王录, 秦其明, 等. 遥感导论[M]. 北京: 高等教育出版社, 2001. |
| [12] | 伍超群, 张绪冰, 王耀, 等. 基于Landsat影像的木里煤田矿区植被覆盖提取及时空变化分析[J]. 测绘与空间地理信息, 2020(2):67-62. |
| [13] | Gutman G, Ignatov A. The derivation of the green vegetation fraction from NOAA/AVHRR data for use in numerical weather prediction models[J]. International Journal of Remote Sensing, 1998, 19(8):1533-1543. |
| [14] | 王瑾, 闫庆武, 谭学玲, 等. 内蒙古地区植被覆盖动态及驱动因素分析[J]. 林业资源管理, 2019(4):159-167. |
| [15] | Liu Xiangfeng, Zhang Jinshui, Zhu Xiufang, et al. Spatiot-emporal changes in vegetation coverage and its driving factors in the Three-River Headwaters Region during 2000—2011[J]. Acta Geographica Sinica, 2014, 24(2):288-302. |
| [16] | Evanns J, Geerken R. Discrimination between climate and human-induced dryland degradation[J]. Journal of Arid Environments, 2004, 57(4):535-554. |
| [17] | 刘海, 黄跃飞, 郑粮. 气候与人类活动对丹江口水源区植被覆盖变化的影响[J]. 农业工程学报, 2020, 36(6):97-105. |
| [18] | Xin Zhongbao, Xu Jiongxin, Zheng Wei. Spatiotemporal variations of vegetation cover on the Chinese Loess Plateau (1981—2006):Impacts of climate changes and human activities[J]. Science in China Series D:Earth Sciences, 2008, 51(1):67-78. |
| [19] | Sun Wenyi, Song Xiaoyan, Mu Xingming, et al. Spatiotemporal vegetation cover variations associated with climate change and ecological restoration in the Loess Plateau[J]. Agricultural and Forest Meteorology, 2015, 209(1):87-99. |
| [20] | Lv Yihe, Fu Bojie, Feng Xiaoming, et al. A policy-driven large scale logical restoration:quantifying ecosystem services changes in the Loess Plateau of China[J]. Plos One, 2012, 7(2):e31782. |
| [21] | 杜华栋, 曹祎晨, 聂文杰, 等. 黄土沟壑区采煤塌陷地人工与自然植被恢复下土壤性质演变特征[J]. 煤炭学报, 2021, 46(5):1641-1649. |
| [22] | 范立民, 张晓团, 向茂西, 等. 浅埋煤层高强度开采区地裂缝发育特征——以陕西榆神府矿区为例[J]. 煤炭学报, 2015, 40(6):1442-1447. |
| [23] | 李庆旭, 张彪, 王爽, 等. 京津风沙源区2000—2015年植被覆盖状况的区域差异研究[J]. 地学前缘, 2018, 25(5):298-304. |
| [24] | Zhang Kaiyuan, Tan Linshan, Sun Yanwei, et al. Impacts of climate change and anthropogenic activities on vegetation change:Evidence from typical areas in China[J]. Ecological Indicators, 2021, 126(2):107648. |
| [25] | 杨玉婷, 石玉林, 李战刚, 等. 陕北“三北”防护林下草本群落特征及其与林分结构和土壤养分的关系[J]. 生态学报, 2020,(18):6542-6551. |
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