Acta Prataculturae Sinica ›› 2021, Vol. 30 ›› Issue (2): 1-13.DOI: 10.11686/cyxb2020311
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Jia-meng DU1(), Gang BAO1,2,3(), Si-qin TONG1,2, Xiao-jun HUANG1,2, Wendurina1, Meili1, Yu-hai BAO1,2
Received:
2020-07-06
Revised:
2020-09-21
Online:
2021-02-20
Published:
2021-01-19
Contact:
Gang BAO
Jia-meng DU, Gang BAO, Si-qin TONG, Xiao-jun HUANG, Wendurina, Meili, Yu-hai BAO. Variations in vegetation cover and its relationship with climate change and human activities in Mongolia during the period 1982-2015[J]. Acta Prataculturae Sinica, 2021, 30(2): 1-13.
变化类型 Type of change | 年Year | |||
---|---|---|---|---|
1982-2015 | 1982-1994 | 1994-2007 | 2007-2015 | |
无显著增加 Insignificant increase | 33.8 | 65.3 | 17.9 | 51.4 |
显著增加 Significant increase | 32.8 | 22.8 | 1.7 | 26.8 |
显著减小 Significant decrease | 8.9 | 0.5 | 22.9 | 2.2 |
无显著减小 Insignificant decrease | 24.5 | 11.4 | 57.5 | 19.6 |
Table 1 Area percentage of NDVI change trend in Mongolia during different periods (%)
变化类型 Type of change | 年Year | |||
---|---|---|---|---|
1982-2015 | 1982-1994 | 1994-2007 | 2007-2015 | |
无显著增加 Insignificant increase | 33.8 | 65.3 | 17.9 | 51.4 |
显著增加 Significant increase | 32.8 | 22.8 | 1.7 | 26.8 |
显著减小 Significant decrease | 8.9 | 0.5 | 22.9 | 2.2 |
无显著减小 Insignificant decrease | 24.5 | 11.4 | 57.5 | 19.6 |
Fig.5 Spatial distribution of growing season NDVI change trend in Mongolia from 1982 to 2015 (a), 1982 to 1994 (b), 1994 to 2007 (c) and 2007 to 2015 (d)
Fig.6 Partial correlation between growing season NDVI and precipitation (a), temperature (b) and the difference between the squares of the two partial correlation coefficients (c) in Mongolia from 1982 to 2015
Fig.7 The interannual changes of NDVI, precipitation and temperature in spring (a), summer (b), autumn (c) and the partial correlation between NDVI and climate factors in different seasons (d) from 1982 to 2015 in Mongolia
1 | Walker B, Steffen W. IGBP science No.1: A synthesis of GCTE and related research. Stockholm: IGBP, 1997: 1-24. |
2 | Piao S L, Fang J Y. Seasonal changes in vegetation activity in response to climate changes in China between 1982 and 1999. Acta Geographica Sinica, 2003, 58(1): 119-125. |
朴世龙, 方精云. 1982-1999年我国陆地植被活动对气候变化响应的季节差异. 地理学报, 2003, 58(1): 119-125. | |
3 | Wang X H, Piao S L, Ciais P, et al. Spring temperature change and its implication in the change of vegetation growth in North America from 1982 to 2006. Proceedings of the National Academy of Sciences, 2011, 108(4): 1240-1245. |
4 | Zhou W, Gang C C, Li J L, et al. Spatial-temporal dynamics of grassland coverage and its response to climate change in China during 1982-2010. Acta Geographica Sinica, 2014, 69(1): 15-30. |
周伟, 刚成诚, 李建龙, 等. 1982-2010年中国草地覆盖度的时空动态及其对气候变化的响应. 地理学报, 2014 , 69(1): 15-30. | |
5 | Mu S J, Li J L, Chen Y Z, et al. Spatial differences of variations of vegetation coverage in Inner Mongolia during 2001-2010. Acta Geographica Sinica, 2012, 67(9): 1255-1268. |
穆少杰, 李建龙, 陈奕兆, 等. 2001-2010年内蒙古植被覆盖度时空变化特征. 地理学报, 2012, 67(9): 1255-1268. | |
6 | Sun Y L, Guo P, Yan X D, et al. Dynamics of vegetation cover and its relationship with climate change and human activities in Inner Mongolia. Journal of Natural Resources, 2010, 25(3): 407-414. |
孙艳玲, 郭鹏, 延晓冬, 等. 内蒙古植被覆盖变化及其与气候、人类活动的关系. 自然资源学报, 2010, 25(3): 407-414. | |
7 | Chen F, Liu H J, Liu S J, et al. MODIS-based desertification dynamic monitoring in Mongolia from 2003 to 2017. Journal of Northwest Forestry University, 2019, 34(5): 167-171. |
陈芳, 刘虎俊, 刘淑娟, 等. 基于MODIS的蒙古国2003-2017年荒漠化动态监测. 西北林学院学报, 2019, 34(5): 167-171. | |
8 | Wang J L, Cheng K, Zhu J X, et al. Development and pattern analysis of Mongolian land cover data products with 30 meters resolution. Journal of Geo-information Science, 2018, 20(9): 1263-1273. |
王卷乐, 程凯, 祝俊祥, 等. 蒙古国30米分辨率土地覆盖产品研制与空间分局分析. 地球信息科学学报, 2018, 20(9): 1263-1273. | |
9 | Hilker T, Natsagdorj E, Waring R H, et al. Satellite observed widespread decline in Mongolian grasslands largely due to overgrazing. Global Change Biology, 2013, 20(2): 418-428. |
10 | Bao G, Tuya A, Bayarsaikhan S, et al. Variations and climate constraints of terrestrial net primary productivity over Mongolia. Quaternary International, 2020, 537: 112-125. |
11 | Tao S, Fang J, Zhao X, et al. Rapid loss of lakes on the Mongolian Plateau. Proceedings of the National Academy of Sciences of the United States of America, 2015, 112(7): 2281-2286. |
12 | Tong S, Lai Q, Zhang J, et al. Spatiotemporal drought variability on the Mongolian Plateau from 1980-2014 based on the SPE I-PM, intensity analysis and Hurst exponent. Science of the Total Environment, 2018, 615: 1557-1565. |
13 | Li N, Bao Y L, Yin S, et al. Spatiotemporal characteristics of grassland fire in China-Mongolia border regions. Journal of Catastrophology, 2016, 31(3): 207-210. |
丽娜, 包玉龙, 银山, 等. 中蒙边境地区草原火时空分布特征分析. 灾害学, 2016, 31(3): 207-210. | |
14 | Huang X J, Xie Y W, Bao Y H, et al. Suitable distribution areas of Jas’s larch inchworm in Mongolia Plateau. Journal of Northwest A & F University (Natural Science Edition), 2018, 46(4): 98-106. |
黄晓君, 颉耀文, 包玉海, 等. 雅氏落叶松尺蠖在蒙古高原适生区的分布.西北农林科技大学学报(自然科学版), 2018, 46(4): 98-106. | |
15 | Bao G, Bao Y, Sanjjava, et al. NDVI-indicated long-term vegetation dynamics in Mongolia and their response to climate change at biome scale. International Journal of Climatology, 2015, 35: 4293-4306. |
16 | Bao G, Bao Y H, Qin Z H, et al. Vegetation cover changes in Mongolian Plateau and its response to seasonal climate changes in recent 10 years. Scientia Geographica Sinica, 2013, 33(5): 613-621. |
包刚, 包玉海, 覃志豪, 等. 近10年蒙古高原植被覆盖变化及其对气候的季节响应. 地理科学, 2013, 33(5): 613-621. | |
17 | Wei Y J, Zhen L, Batkhishig O, et al. Empirical study on consumption of ecosystem services and its spatial differences over the Mongolian Plateau. Resources Science, 2009, 31(10): 1677-1684. |
魏云洁, 甄霖, Batkhishig O, 等. 蒙古高原生态服务消费空间差异的实证研究.资源科学, 2009, 31(10): 1677-1684. | |
18 | Zhou X, Yamaguchi Y, Arjasakusuma S. Distinguishing the vegetation dynamics induced by anthropogenic factors using vegetation optical depth and AVHRR NDVI: A cross-border study on the Mongolian Plateau. Science of the Total Environment, 2018, 616/617: 730-743. |
19 | Brent N, Holben. Characteristics of maximum-value composite images from temporal AVHRR data. International Journal of Remote Sensing, 1986, 7(11): 1417-1434. |
20 | Jin K, Wang F, Han J Q, et al. Contribution of climatic change and human activities to vegetation NDVI change over China during 1982-2015. Acta Geographica Sinica, 2020, 75(5): 961-974. |
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. 地理学报, 2020, 75(5): 961-974. | |
21 | Piao S, Mohammat A, Fang J, et al. NDVI-based increase in growth of temperate grasslands and its responses to climate changes in China. Global Environmental Change, 2006, 16(4): 340-348. |
22 | Piao S, Fang J, Zhou L, et al. Interannual variations of monthly and seasonal normalized difference vegetation index (NDVI) in China from 1982 to 1999. Journal of Geophysical Research, 2003, 108(D14): 4401. |
23 | Liu P, Hao L, Pan C, et al. Combined effects of climate and land management on watershed vegetation dynamics in an arid environment. Science of the Total Environment, 2017, 589: 73-88. |
24 | Bao G, Qin Z, Bao Y, et al. NDVI-based long-term vegetation dynamics and its response to climatic change in the Mongolian Plateau. Remote Sensing, 2014, 6: 8337-8358. |
25 | Bao G, Qin Z H, Bao Y H, et al. Spatial-temporal changes of vegetation cover in Mongolian Plateau during 1982-2006. Journal of Desert Research, 2013, 33(3): 918-927. |
包刚, 覃志豪, 包玉海, 等. 1982-2006年蒙古高原植被覆盖时空变化分析. 中国沙漠, 2013, 33(3): 918-927. | |
26 | Myneni R B, Keeling C D, Tucker C J, et al. Increased plant growth in the northern high latitudes from 1981 to 1991. Nature, 1997, 386(6626): 698-702. |
27 | Mao D, Wang Z, Luo L, et al. Integrating AVHRR and MODIS data to monitor NDVI changes and their relationships with climatic parameters in Northeast China. International Journal of Applied Earth Observation and Geoinformation, 2012, 18: 528-536. |
28 | Cleverly J, Eamus D, Coupe N R, et al. Soil moisture controls on phenology and productivity in a semi-arid critical zone. Science of the Total Environment, 2016, 568: 1227-1237. |
29 | Zhou L M, Tucker C J, Kaufmann R K, et al. Variations in northern vegetation activity inferred from satellite data of vegetation index during 1981 to 1999. Journal of Geophysical Research, 2001, 106(17): 20069-20083. |
30 | Bao G, Chen J, Chopping M, et al. Dynamics of net primary productivity on the Mongolian Plateau: Joint regulations of phenology and drought. International Journal of Applied Earth Observation and Geoinformation, 2019, 81: 85-97. |
31 | Menzel A, Sparks T H, Estrella N, et al. European phenological response to climate change matches the warming pattern. Global Change Biology, 2006, 12(10): 1969-1976. |
32 | Richardson A D, Keenan T F, Migliavacca M, et al. Climate change, phenology, and phenological control of vegetation feedbacks to the climate system. Agricultural and Forest Meteorology, 2013, 169: 156-173. |
33 | Angert A, Biraud S, Bonfils C, et al. Drier summers cancel out the CO2 uptake enhancement induced by warmer springs. Proceedings of the National Academy of Sciences of the United States of America, 2005, 102(31): 10823-10827. |
34 | Richardson A D, Black T A, Ciais P, et al. Influence of spring and autumn phenological transitions on forest ecosystem productivity. Philosophical Transactions of the Royal Society of London B: Biological Sciences, 2010, 365(1555): 3227-3246. |
35 | Mu S J, Li J L,Yang H F, et al. Spatio-temporal variation analysis of grassland net primary productivity and its relationship with climate over the past 10 years in Inner Mongolia. Acta Prataculturae Sinica, 2013, 22(3): 6-15. |
36 | John R, Chen J, Kim Y, et al. Differentiating anthropogenic modification and precipitation-driven change on vegetation productivity on the Mongolian Plateau. Landscape Ecology, 2016, 31(3): 547-566. |
37 | Fernandez G M, Allen D B. Vegetation change along gradients from water sources in three grazed Mongolian ecosystems. Plant Ecology, 2001, 157(1): 101-118. |
38 | Wang L, Zhen L, Liu X L, et al. Comparative studies on climate changes and influencing factors in central Mongolian Plateau Region. Geographical Research, 2008, 27(1): 171-180. |
王菱, 甄霖, 刘雪林, 等. 蒙古高原中部气候变化及影响因素比较研究. 地理研究, 2008, 27(1): 171-180. | |
39 | Peng S, Chen A, Xu L, et al. Recent change of vegetation growth trend in China. Environmental Research Letters, 2011, 6(4): 044027. |
40 | Piao S, Wang X, Ciais P, et al. Changes in satellite-derived vegetation growth trend in temperate and boreal Eurasia from 1982 to 2006. Global Change Biology, 2011, 17(10): 3228-3239. |
41 | Zhang X Z. Main models of variations of autumn vegetation greenness in the mid-latitude of north hemisphere in 1982-2011. Scientia Geographica Sinica, 2014, 34(10): 1226-1232. |
张学珍. 1982-2011年北半球中纬度秋季植被绿度变化的主要模态. 地理科学, 2014, 34(10): 1226-1232. | |
42 | Tucker C J, Slayback D A, Pinzon J E, et al. Higher northern latitude normalized difference vegetation index and growing season trends from 1982 to 1999. International Journal of Biometeorology, 2001, 45(4): 184-190. |
43 | Tucker C J, Dregne H E, Newcomb W W. Expansion and contraction of the sahara desert from 1980 to 1990. Science, 1991, 253(5017): 299-300. |
44 | Chen Y Z, Li J L, Sun Z G, et al. Spatio-temporal dynamics of grassland net primary productivity and its response to climate change in the Temperate Eurasian Steppe 1982-2008.Acta Prataculturae Sinica, 2017, 26(1): 1-12. |
陈奕兆, 李建龙, 孙政国, 等. 欧亚大陆草原带1982-2008年间净初级生产力时空动态及其对气候变化响应研究.草业学报, 2017, 26(1): 1-12. | |
45 | Mu S J, Li J L, Yang H F, et al. Spatio-temporal variation analysis of grassland net primary productivity and its relationship with climate over the past 10 years in Inner Mongolia. Acta Prataculturae Sinica, 2013, 22(3): 6-15. |
穆少杰, 李建龙, 杨红飞, 等. 内蒙古草地生态系统近10年NPP时空变化及其与气候的关系. 草业学报, 2013, 22(3): 6-15. | |
46 | Buermann W, Bikash P R, Jung M, et al. Earlier springs decrease peak summer productivity in North American boreal forests. Environmental Research Letters, 2013, 8(2): 24027. |
47 | Olji, Bolor, Gerelchoktu, et al. Present situation and protection in Daurian steppe ecological area. Journal of Minzu University of China (Natural Sciences Edition), 2013, 22(1): 24-26. |
乌力吉, 宝乐日, 格日乐朝克图, 等. 蒙古达乌尔草原生态区的现状与保护. 中央民族大学学报(自然科学版), 2013, 22(1): 24-26. | |
48 | Hong Y Y. Analysis of spatial-temporal changes of vegetation NDVI in border areas of China-Mongolia. Hohhot: Inner Mongolia Normal University, 2016. |
洪园园. 中蒙边境地区植被NDVI时空变化分析. 呼和浩特: 内蒙古师范大学, 2016. | |
49 | Pederson N, Leland C, Nachin B, et al. Three centuries of shifting hydroclimatic regimes across the Mongolian breadbasket. Agricultural and Forest Meteorology, 2013, 178/179: 10-20. |
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