RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN >> 2015, Vol. 24 >> Issue (09): 1568-1576.doi: 10.11870/cjlyzyyhj201509018

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Gradient analysis of the ecosystem service value in the chaohu lake-land ecotone

YAO Fei1, CHEN Long-qian1, ZHANG Yu1, WU Pei-yao1, ZHANG Hong-mei2, WANG Bing-yi1,2   

  1. 1. School of Environment Science and Spatial Informatics, CUMT, Xuzhou 221116, China;
    2. Anhui Provincial Institute of Land Surveying and Planning, Hefei 230601, China
  • Received:2014-12-08 Revised:2015-03-05 Online:2015-09-20
  • Contact: 陈龙乾,E-mail:chenlq@cumt.edu.cn E-mail:chenlq@cumt.edu.cn

Abstract: Lake-land ecotone is a main type of ecological ecotone, which has an important role in reducing water on soil erosion degree, water conservation and water quality improvement and providing habitats for different creatures. In the Lake-land ecotone, human activities have a significant effect. Unreasonable way of production and living and land use, will destroy the ecosystem stability of the Lake-land ecotone, to make the ecological environment of itself and the affected area become fragile. Regarding the chaohu Lake-land ecotone as the research object, with the aid of remote sensing technology, we extracted land use data of the four periods in the study area. Based on the results of ecosystem service value research of Constanza, Xie gaodi and other scholars, we measured the value of ecosystem services in the study area, and used GIS spatial analysis and improved moving window method to study the ecological service value gradient change. Six windows were divided from the study area base on the land use data extract from remote sensing images in 1995, 2000, 2007 and 2013, which were 0-500 m, 500-1 000 m, 1 000-1 500 m, 1 500-2 000 m, 2 000-2 500 m and 2 500-3 000 m. We analyzed the gradient change of ecosystem service value among the different windows based on an improved moving window method. Results showed: (1) Cultivated land, forested land and water area make significant contribution to the ecosystem services value of the Chaohu lake-land ecotone. The contribution rate of various land use type had a consistent changing trend in different periods, and always had 1 or 2 land use types contributing significantly in every sub buffers. (2) The ecological service value of each window maintained a steady state from 1995 to 2013 except that suffer zone 1 to suffer zone 2 had a large change. (3) From 1995 to 2103, ecological service value of the buffer of suffer zone 1 was always highest one and the outermost sub buffer of suffer zone 6 had been at the medium level, the middle two at low levels, and suffer zone 5 & 6 from low level to mid-range excessive steadily. (4)A significant correlation between the contribution of forest land and waters ecological service value and the far of Chaohu water-land boundary, show that forest land and waters have obvious impact on the ecological service value in the study area.

Key words: land-lake ecotone, land use, ecosystem services value, gradient analysis, GIS&RS, Chaohu lake

CLC Number: 

  • F301.2
[1] LOWRANCE R,ALTIER L S,WILLIAMS R G,et al.The riparian ecosystem management model simulator for ecological processes in riparian zones[C].Las Vegas,NV: First Federal Interagency Hydrological Modeling Conference,1998: 19-23.
[2] 岳 隽,王仰麟.国内外河岸带研究的进展与展望[J].地理科学进展,2005,24(5):33-40.
[3] 邓红兵,王青春,王庆礼,等.河岸植被缓冲带与河岸带管理[J].应用生态学报,2001,12(6):951-954.
[4] MAEKAWA,M-A,NAKAGOSHI N,et al.Riparian landscape changes over a period of 46 years,on the Azusa River in Central Japan[J].Landscape and Urban Planning,1997,37(1/2): 37-43.
[5] ZAIMES G N,SCHULTZ R C.Riparian land-use impacts on bank erosion and deposition of an incised stream in north-central Iowa,USA[J].Catena,2015,125: 61-73.
[6] CLERICI N,PARACCHINI M L,MAES J.Land-cover change dynamics and insights into ecosystem services in European stream riparian zones[J].Ecohydrology & Hydrobiology,2014,14(2): 107-120.
[7] FERNÁNDEZ D,BARQUÍN J,ÁLVAREZ-CABRIA M,et al.Land-use coverage as an indicator of riparian quality[J].Ecological Indicators,2014,41: 165-174.
[8] SONG K S,WANG Z M,LI L,et al.Wetlands shrinkage,fragmentation and their links to agriculture in the Muleng-Xingkai Plain,China[J].Journal of Environmental Management,2012,111: 120-132.
[9] 杨久春,张树文,张宇博.嫩江河岸带景观格局变化对水体恢复的影响[J].水土保持通报,2011,31(3):239-244.
[10] 仇恒佳,卞新民,朱利群.太湖水陆生态交错带景观空间格局研究——以苏州市吴中区为例[J].南京农业大学学报,2005,28(4):21-25.
[11] 张丽娜,张树清,刘春悦,等.4个时期三江平原别拉洪河河岸带土地利用分析[J].湿地科学,2014,12(2):268-272.
[12] 赵 霏,郭逍宇,赵文吉,等.城市河岸带土地利用和景观格局变化的生态环境效应研究——以北京市典型再生水补水河流河岸带为例[J].湿地科学,2013,11(1):100-107.
[13] 韩凌云.苏州市水岸带景观格局演变研究[D].南京:南京林业大学,2012.
[14] 瞿晓怡.苏州市水岸带景观格局的动态分析(1995-2010)[D].南京:南京林业大学,2012.
[15] 孔维静,王一涵,潘雪莲,等.辽宁太子河上游沿岸景观格局的幅度效应[J].山地学报,2013,31(3):287-293.
[16] 谢高地,鲁春霞,冷允法,等.青藏高原生态资产的价值评估[J].自然资源学报,2003,18(2):189-196.
[17] 赵景柱,徐亚骏,肖 寒,等.基于可持续发展综合国力的生态系统服务评价研究——13个国家生态系统服务价值的测算[J].系统工程理论与实践,2003,1(1):121-127.
[18] 郝慧梅,任志远.基于生态服务价值的土地利用/覆盖变化生态效应测评[J].资源科学,2007,29(6):90-97.
[19] 曾 杰,李江风,姚小薇.武汉城市圈生态系统服务价值时空变化特征[J].应用生态学报,2014,25(3):883-891.
[20] COSTANZA R,D'ARGE R,DE GROOT R,et al.The value of the world's ecosystem services and natural capital[J].Nature,1997,387(6630): 253-260.
[21] 杨乐虹.南四湖湿地土地利用变化及其生态效应研究[D].徐州:中国矿业大学,2014.
[22] WHITTAKER R H.Communities and Ecosystems[M].2nd ed.Mae Millan,NY,1975.
[23] MCDONNELL M J,PICKETT S T A.Ecosystem structure and function along urban-rural gradients: An unexploited opportunity for ecology[J].Ecology,1990,71(4): 1231-1237.
[24] 张琳琳,孔繁花,尹海伟,等.基于景观空间指标与移动窗口的济南城市空间格局变化[J].生态学杂志,2010,29(8):1591-1598.
[25] Kröger R.Landscape hydrogeomorphic conditions determine structure and species composition of an ephemeral floodplain wetland[J].Acta Ecologica Sinica,2010,30(5): 280-287.
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