干旱区研究 ›› 2024, Vol. 41 ›› Issue (10): 1740-1752.doi: 10.13866/j.azr.2024.10.12 cstr: 32277.14.AZR.20241012
齐容镰1(), 李庆波1(), 任佳1, 邹苗1, 杨昊鹏1, 魏耀峰1, 唐琼2
收稿日期:
2024-03-22
修回日期:
2024-05-10
出版日期:
2024-10-15
发布日期:
2024-10-14
通讯作者:
李庆波. E-mail: 87270953@qq.com作者简介:
齐容镰(1996-),女,硕士,主要从事森林资源监测工作. E-mail: qrl199602@163.com
基金资助:
QI Ronglian1(), LI Qingbo1(), REN Jia1, ZOU Miao1, YANG Haopeng1, WEI Yaofeng1, TANG Qiong2
Received:
2024-03-22
Revised:
2024-05-10
Published:
2024-10-15
Online:
2024-10-14
摘要:
宁夏作为唯一被全境划入“三北”防护林工程的省份,其生态区位极为重要。本文基于宁夏2001—2020年长时间序列植被指数、气象等数据,通过趋势分析、残差分析以及Hurst指数等方法探究了宁夏NDVI时空变化特征及气候和人类活动对其变化的影响,并对宁夏NDVI未来变化趋势进行了预测。结果表明:(1) 2001—2020年宁夏NDVI呈波动上升的趋势,年均增长速率为7.6×10-3;空间分布上具有异质性,整体呈现“北部引黄灌区和南部山区高-中部干旱带低”的特征,并以低植被覆盖(0.2<NDVI≤0.4)为主,占52.33%;(2) 2001—2020年,宁夏全区94.94%的面积NDVI为增加趋势,植被恢复取得明显效果,结合Hurst指数,未来宁夏65.23%的区域植被可能存在退化的潜在风险;(3) 气候变化和人类活动对宁夏NDVI的影响均以正面为主,全区89.49%的区域是在气候变化和人类活动共同作用下引起的NDVI增长;各气候要素中,降水对NDVI变化起主要促进作用;(4) 气候变化和人类活动对全区NDVI的相对贡献率分别为43.79%和56.21%。综上所述,在今后的植被恢复及生态建设中,应积极发挥人类活动在植被覆盖增加中的主导作用,并加强对现有植被的监测和管护,避免其出现退化趋势。
齐容镰, 李庆波, 任佳, 邹苗, 杨昊鹏, 魏耀峰, 唐琼. “三北”工程地区植被覆盖变化特征及其驱动力分析——以宁夏为例[J]. 干旱区研究, 2024, 41(10): 1740-1752.
QI Ronglian, LI Qingbo, REN Jia, ZOU Miao, YANG Haopeng, WEI Yaofeng, TANG Qiong. Study on the characteristics of changes in vegetation cover and its driving forces in the Three-North Shelterbelt program regions: Taking Ningxia as example[J]. Arid Zone Research, 2024, 41(10): 1740-1752.
表2
宁夏未来植被变化趋势类型"
变化趋势 | Hurst指数 | 叠加变化类型 | 像元数/个 | 面积占比/% |
---|---|---|---|---|
>0 | 0.35≤H<0.50 | 弱反持续性&改善 | 28249 | 54.39 |
<0 | 0.35≤H<0.50 | 弱反持续性&退化 | 1205 | 2.32 |
>0 | 0.50≤H<0.65 | 弱持续性&改善 | 15653 | 30.14 |
<0 | 0.50≤H<0.65 | 弱持续性&退化 | 1048 | 2.02 |
>0 | 0.00≤H<0.35 | 强反持续性&改善 | 4355 | 8.38 |
<0 | 0.00≤H<0.35 | 强反持续性&退化 | 148 | 0.28 |
>0 | 0.65≤H<1.00 | 强持续性&改善 | 1056 | 2.03 |
<0 | 0.65≤H<1.00 | 强持续性&退化 | 227 | 0.44 |
[1] |
李茂华, 都金康, 李皖彤, 等. 1982—2015年全球植被变化及其与温度和降水的关系[J]. 地理科学, 2020, 40(5): 823-832.
doi: 10.13249/j.cnki.sgs.2020.05.017 |
[Li Maohua, Du Jinkang, Li Wantong, et al. Global vegetation change and its relationship with precipitation and temperature based on GLASS-LAI in 1982-2015[J]. Scientia Geographica Sinica, 2020, 40(5): 823-832.]
doi: 10.13249/j.cnki.sgs.2020.05.017 |
|
[2] | Li D, Pan M, Cong Z, et al. Vegetation control on water and energy balance within the Budyko framework[J]. Water Resources Research, 2013, 49(2): 969-976. |
[3] |
李鑫磊, 李瑞平, 王秀青, 等. 基于地理探测器的河套灌区林草植被覆盖度时空变化与驱动力分析[J]. 干旱区研究, 2023, 40(4): 623-635.
doi: 10.13866/j.azr.2023.04.11 |
[Li Xinlei, Li Ruiping, Wang Xiuqing, et al. Spatiotemporal change and analysis of factors driving forest-grass vegetation coverage in Hetao Irrigation District based on geographical detector[J]. Arid Zone Research, 2023, 40(4): 623-635.]
doi: 10.13866/j.azr.2023.04.11 |
|
[4] | 崔林丽, 史军, 杨引明, 等. 中国东部植被NDVI对气温和降水的旬响应特征[J]. 地理学报, 2009, 64(7): 850-860. |
[Cui Linli, Shi Jun, Yang Yinming, et al. Ten-day response of vegetation NDVI to the variations of temperature and precipitation in Eastern China[J]. Acta Geographica Sinica, 2009, 64(7): 850-860.]
doi: 10.11821/xb200907009 |
|
[5] | Carlson T N, Ripley D A. On the relation between NDVI, fractional vegetation cover, and leaf area index[J]. Remote Sensing of Environment, 1997, 62(3): 241-252. |
[6] | He L, Guo J, Yang W, et al. Multifaceted responses of vegetation to average and extreme climate change over global drylands[J]. Science of the Total Environment, 2023, 858: 159942. |
[7] |
金凯, 王飞, 韩剑桥, 等. 1982—2015年中国气候变化和人类活动对植被NDVI变化的影响[J]. 地理学报, 2020, 75(5): 961-974.
doi: 10.11821/dlxb202005006 |
[Jin Kai, Wang Fei, Han Jianqiao, et al. Contribution of climatic change and human activities tovegetation NDVI change over China during 1982-2015[J]. Acta Geographica Sinica, 2020, 75(5): 961-974.] | |
[8] | He L, Guo J, Jiang Q, et al. How did the Chinese Loess Plateau turn green from 2001 to 2020? An explanation using satellite data[J]. Catena, 2022, 214: 106246. |
[9] |
田海静, 黄文广, 王林, 等. 宁夏20年禁牧封育政策对草原植被恢复贡献评估[J]. 草地学报, 2024, 32(1): 37-45.
doi: 10.11733/j.issn.1007-0435.2024.01.004 |
[Tian Haijing, Huang Wenguang, Wang Lin, et al. Evaluation on the contribution of the policy of grazing constraintand grassland conservation for 20 years to grassland vegetation restoration in Ningxia[J]. Acta Agrestia Sinica, 2024, 32(1): 37-45.]
doi: 10.11733/j.issn.1007-0435.2024.01.004 |
|
[10] |
李梦华, 韩颖娟, 赵慧, 等. 基于地理探测器的宁夏植被覆盖度时空变化特征及其驱动因子分析[J]. 生态环境学报, 2022, 31(7): 1317-1325.
doi: 10.16258/j.cnki.1674-5906.2022.07.004 |
[Li Menghua, Han Yingjuan, Zhao Hui, et al. Analysis on spatial-temporal variation characteristics and driving factors of fractional vegetation cover in Ningxia based on geographical detector[J]. Ecology and Environmental Sciences, 2022, 31(7): 1317-1325.] | |
[11] |
林妍敏, 李文慧, 南雄雄, 等. 基于地理探测器的宁夏贺兰山植被覆盖度时空分异及驱动因子[J]. 应用生态学报, 2022, 33(12): 3321-3327.
doi: 10.13287/j.1001-9332.202212.025 |
[Lin Yanmin, Li Wenhui, Nan Xiongxiong, et al. Spatial-temporal differentiation and driving factors of vegetation coverage in Ningxia Helan Mountain based on geodetector[J]. Chinese Journal of Applied Ecology, 2022, 33(12): 3321-3327.]
doi: 10.13287/j.1001-9332.202212.025 |
|
[12] | 白思雨, 张佳瑜. 宁夏南部山区植被覆盖度变化及其地形因子相关性分析[J]. 测绘与空间地理信息, 2024, 47(1): 46-49. |
[Bai Siyu, Zhang Jiayu. Correlantion analysis between change of vegetation coverage and topographic factors in mountain land of southern Ningxia[J]. Geomatics & Spatial Information Technology, 2024, 47(1): 46-49.] | |
[13] | 付镇, 张志敏, 张变第, 等. 宁夏农牧交错区植被覆盖时空变化及成因分析[J]. 西北林学院学报, 2023, 38(2): 209-216. |
[Fu Zhen, Zhang Zhimin, Zhang Biandi, et al. Spatio-temporal variation and driving force driving force analysis if fractional vegetation coverage in agro-pastoral ecotone of Ningxia[J]. Journal of Northwest Forestry University, 2023, 38(2): 209-216.] | |
[14] | 潘金金, 任宗萍, 胥世斌, 等. 宁夏不同植被类型NDVI变化特征及其对气候的响应[J]. 地球科学与环境学报, 2023, 45(4): 819-832. |
[Pan Jinjin, Ren Zongping, Xu Shibin, et al. Variation characteristics of NDVI of different vegetation types in Ningxia, China and their responses to climate[J]. Journal of Earth Sciences and Environment, 2023, 45(4): 819-832.] | |
[15] |
文妙霞, 何学高, 刘欢, 等. 基于地理探测器的宁夏草地植被覆被时空分异及驱动因子[J]. 干旱区研究, 2023, 40(8): 1322-1332.
doi: 10.13866/j.azr.2023.08.13 |
[Wen Miaoxia, He Xuegao, Liu Huan, et al. Analysis of the spatiotemporal variation characteristics and driving factors of grassland vegetation cover in Ningxia based on geographical detectors[J]. Arid Zone Research, 2023, 40(8): 1322-1332.]
doi: 10.13866/j.azr.2023.08.13 |
|
[16] | Angstrom A. Solar and terrestrial radiation. Report to the international commission for solar research on actinometric investigations of solar and atmospheric radiation[J]. Quartarly Journal of the Royal Meteorolgical Society, 1924, 50(210): 121-156. |
[17] |
赵雨琪, 魏天兴. 1990—2020年黄土高原典型县域植被覆盖变化及影响因素[J]. 干旱区研究, 2024, 41(1): 147-156.
doi: 10.13866/j.azr.2024.01.14 |
[Zhao Yuqi, Wei Tianxing. Changes in vegetation cover and influencing factors in typical counties of theLoess Plateau from 1990 to 2020[J]. Arid Zone Research, 2024, 41(1): 147-156.]
doi: 10.13866/j.azr.2024.01.14 |
|
[18] | Evans J, Geerken R. Discrimination between climate and human-induced dryland degradation[J]. Journal of Arid Environments, 2004, 57(4): 535-554. |
[19] | Sun W, Song X, Mu X, et al. Spatiotemporal vegetation cover variations associated with climate change and ecological restoration in the Loess Plateau[J]. Agricultural and Forest Meteorology, 2015, 209-210(1): 87-99. |
[20] | Hurst H E. The problem of long-term storage in reservoirs[J]. International Association of Scientific Hydrology Bulletin, 1956, 1(3): 13-27. |
[21] | 何亮, 梁海荣, 李钢铁, 等. 近20年杭锦旗植被覆盖变化特征及驱动力分析[J]. 生态与农村环境学报, 2021, 37(5): 587-596. |
[He Liang, Liang Hairong, Li Gangtie, et al. Analysis on the characteristics of changes and driving forces of vegetation cover in Hangjin County in recent 20 years[J]. Journal of Ecology and Rural Environment, 2021, 37(5): 587-596.] | |
[22] | 马楠, 白涛, 蔡朝朝. 2000—2021年新疆植被覆盖度变化及驱动力[J]. 水土保持研究, 2024, 31(1): 385-394. |
[Ma Nan, Bai Tao, Cai Zhaozhao. Vegetation cover change and its response to climate and surface factors in Xinjiang based on different vegetation types[J]. Research of Soiland Water Conservation, 2024, 31(1): 385-394.] | |
[23] | Zhang Y, Ye A. Spatial and temporal variations in vegetation coverage observed using AVHRR GIMMS and Terra MODIS data in the mainland of China[J]. International Journal of Remote Sensing, 2020, 41(11): 4238-4268. |
[24] |
曹永香, 毛东雷, 薛杰, 等. 绿洲-沙漠过渡带植被覆盖动态变化及其驱动因素——以新疆策勒为例[J]. 干旱区研究, 2022, 39(2): 510-521.
doi: 10.13866/j.azr.2022.02.19 |
[Cao Yongxiang, Mao Donglei, Xue Jie, et al. Dynamic changes and driving factors of vegetation cover in the oasis-desert ecotone: A case study of Cele, Xinjiang[J]. Arid Zone Research, 2022, 39(2): 510-521.]
doi: 10.13866/j.azr.2022.02.19 |
|
[25] | 杜灵通, 宋乃平, 王磊, 等. 近30 a气候变暖对宁夏植被的影响[J]. 自然资源学报, 2015, 30(12): 2095-2106. |
[Du Lingtong, Song Naiping, Wang Lei, et al. Impact of global warming on vegetation activity in Ningxia Province from 1982 to 2013[J]. Journal of Natural Resources, 2015, 30(12): 2095-2106.]
doi: 10.11849/zrzyxb.2015.12.011 |
|
[26] | Piao S, Yin G, Tan J, et al. Detection and attribution of vegetation greening trend in China over the last 30 years[J]. Global Change Biology, 2015, 21(4): 1601-1609. |
[27] | 韩磊, 曹鑫鑫, 朱会利, 等. 基于特征分区的陕北黄土高原植被覆盖变化及其驱动因素[J]. 生态学报, 2023, 43(20): 8564-8577. |
[Han Lei, Cao Xinxin, Zhu Huili, et al. Change of vegetation coverage and driving factor in the North Shaanxi Loess Plateau based on characteristic zoning[J]. Acta Ecologica Sinica, 2023, 43(20): 8564-8577.] | |
[28] |
Jiao K, Gao J, Wu S. Climatic determinants impacting the distribution of greenness in China: Regional differentiation and spatial variability[J]. International Journal of Biometeorology, 2019, 63: 523-533.
doi: 10.1007/s00484-019-01683-4 pmid: 30729305 |
[29] |
吴万民, 刘涛, 陈鑫. 西北干旱半干旱区NDVI季节性变化及其影响因素[J]. 干旱区研究, 2023, 40(12): 1969-1981.
doi: 10.13866/j.azr.2023.12.10 |
[Wu Wanmin, Liu Tao, Chen Xin. Seasonal changes of NDVI in the arid and semi-arid regions of Northwest Chinaand its influencing factors[J]. Arid Zone Research, 2023, 40(12): 1969-1981.]
doi: 10.13866/j.azr.2023.12.10 |
|
[30] | EL-hamid H T, Wei C Y, Hafiz M A, et al. Effects of land use/land cover and climatic change on the ecosystem of North Ningxia, China[J]. Arabian Journal of Geosciences, 2020, 13: 1099. |
[31] | 王治啸, 许扬, 陶克图, 等. 筑梦“绿色长城”——宁夏三北防护林体系建设工程40年[J]. 宁夏画报(时政版), 2018(4): 12-23. |
[Wang Zhixiao, Xu Yang, Tao Ketu, et al. Building a dream of “Green Great Wall”-40 years of construction of the Three-North Shelterbelts in Ningxia[J]. Ningxia Pictorial (Politics Edition), 2018(4): 12-23.] | |
[32] | Zhao A, Zhang A, Liu X, et al. Spatiotemporal changes of normalized difference vegetation index (NDVI) and response to climate extremes and ecological restoration in the Loess Plateau, China[J]. Theoretical and Applied Climatology, 2018, 132: 555-567. |
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