RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN >> 2015, Vol. 24 >> Issue (07): 1110-1118.doi: 10.11870/cjlyzyyhj201507005

Previous Articles     Next Articles

ASSESSMENT OF ECOSYSTEM SERVICES BASED ON AQUATIC ECOREGION OF THE AREA SURROUNDING THE CHAOHU LAKE

ZHANG Zhi-ming, GAO Jun-feng, YAN Ren-hua   

  1. Nanjing Institute of Geography and Limnology, Chinese Academy of Sciences, Nanjing 210008, China
  • Received:2014-06-17 Revised:2014-07-31 Online:2015-07-20
  • Contact: 高俊峰,E-mail:gaojunf@niglas.ac.cn E-mail:gaojunf@niglas.ac.cn

Abstract: Aquatic ecoregion is considered a geographic unit for conservation, treatment and ecological restoration at basin scales. According to the method of material valuation and the geographic information system technique, assessment of ecosystem services based on aquatic ecoregion is important for optimization of land use, ecological environmental protection, treatment and restoration. The area surrounding the Chaohu Lake was selected as the study area in this paper. Twelve types of ecosystem services were quantified in this study, which are water regulation, water purification, soil protection, and habitat maintenance in terrestrial ecosystems and water supply, aquatic product production, water storage, water purification, climate regulation, carbon sequestration and oxygen release, waterlogging regulation, and biodiversity protection in water ecosystems, respectively. The results indicated that: (1) There were significant spatial differences of ecosystem services in the study area, which was higher in the south and northeast of study area, and lower in the northwest and southeast. Ecosystem services per unit area were higher in the west and lower in the east. (2) The areas where ecosystem service functions were high, may not be high in per unit area of them. Regulating services in per unit area in terrestrial ecosystems was higher in the southwest and northwest of study area, and lower in the northeast and southeast. Supporting services in per unit area in terrestrial ecosystems was higher in the south and north of study area, and lower in the east and west. Moreover, supporting services in per unit area in water ecosystems was higher in the west and southeast of the study area, and lower in the north. Regulating services in per unit area in water ecosystems was higher in the southwest and northwest of the study area, and lower in the south and north. (3) Management and restoration of ecosystem services should consider not only the total ecological service functions, but also the per unit area of them. According to the actual situation, the area where ecosystem service functions are higher, should actively pay equal attention to its ecosystem service function under the condition of the protection and management. On the other hand, its ecosystem service functions should be restored on the basis of the protection where ecosystem service functions are lower. The results have great significance to the development of regional industry and arrangement of land use among the agriculture, forestry, fishery and other industries. In order to coordinate and cooperate with each industry to form the development of the integrated system, it can be achieved the protection, optimization and rational utilization of natural resources and renewable natural resources.

Key words: ecosystem services, aquatic ecoregion, quantitative assessment, the area surrounding the Chaohu Lake

CLC Number: 

  • X171.1
[1] COSTANZA R,ARGE R,RUDOLF DE G,et al.The value of the world's ecosystem services and natural capital[J].Nature,1997,387:253-260.
[2] DAILY G C.Nature's service:societal dependence on natural ecosystem[M].Washington D C:Island Press.1997.
[3] 虞依娜,彭少麟.生态系统服务价值评估的研究进展[J].生态环境学报,2010,19(9):2246-2252.
[4] 李双成,刘金龙,张才玉,等.生态系统服务研究动态及地理学研究范式[J].地理学报,2011,66(12):1618-1630.
[5] BROUWER F,TAGLIAFIERRO C,HUTCHINSON G.Ecosystem services and rural land management[J].Environmental Science & Policy,2013,32:1-4.
[6] 欧阳志云,王效科,苗 鸿,等.中国陆地生态系统服务功能及其生态经济价值的初步研究[J].生态学报,1999,19(5):607-613.
[7] 杨怀宇,王春晓,郭宗香,等.池塘养殖生态系统空气调节服务价值的实证研究[J].长江流域资源与环境,2009,18(5):432-438.
[8] 赵金龙,王泺鑫,韩海荣,等.森林生态系统服务功能价值评估研究进展与趋势[J].生态学杂志,2013,32(8):2229-2237.
[9] LOVELL S T,TAYLOR J R.Supplying urban ecosystem services through multifunctional green infrastructure in the United States[J].Landscape Ecology,2013,28:1447-1463.
[10] NELSON E J,KAREIVA P,RUCKELSHAUS M,et al.Climate change's impact on key ecosystem services and the human well-being they support in the US[J].Frontiers in Ecology and the Environment,2013,11:483-493.
[11] 叶延琼,章家恩,陈丽丽,等.广州市水生态系统服务价值[J].生态学杂志,2013,32(5):1303-1310.
[12] 陈国阶,何锦峰,涂建军.长江上游生态服务功能区域差异研究[J].山地学报,2005,23(4):406-412.
[13] 高俊峰,高永年.太湖流域水生态功能分区[M].北京:中国环境科学出版社,2012:109-124.
[14] 高永年,高俊峰,陈坰烽,等.太湖流域水生态功能三级分区[J].地理研究,2012,31(11):1941-1951.
[15] 董川永,高俊峰.太湖流域西部圩区陆地生态系统维持和调节功能量化评估[J].自然资源学报,2014,29(3):420-430.
[16] 董川永,高俊峰.太湖流域西部圩区水域生态服务功能量化评估[J].中国科学院大学学报,2014,31(5),610-616.
[17] GAO Y N,GAO J F,CHEN J F,et al.Regionalizing aquatic ecosystems based on the river subbasin taxonomy concept and spatial clustering techniques[J].International Journal of Environmental Research and Public Health,2011,8:4367-4385.
[18] 赵英时.遥感应用分析原理与方法[M].北京:科学出版社,2003:173-183.
[19] 刘纪远.中国资源环境遥感宏观调查与动态研究[M].北京:中国科学技术出版社,1996.
[20] 李文华.生态系统服务功能价值评估的理论、方法与应用[M].北京:中国人民大学出版社,2008:280-300.
[21] 王绍强,朱松丽,周成虎.中国土壤土层厚度的空间变异性特征[J].地理研究,2001,20(2):161-169.
[22] 白晓华.太湖山地强降雨事件中不同水体的氮磷负荷分析[J].环境科学导刊,2009,28(4):71-74.
[23] 高照良,田红卫,王 冬,等.水土保持工程措施生态服务功能的物质量化分析[J].生态经济,2012,11:149-153,170.
[24] 欧阳志云,赵同谦,赵景柱,等.海南岛生态系统生态调节功能及其生态经济价值研究[J].应用生态学报,2004,15(8):1395-1402.
[25] 杨海清,吕淑华,李秀艳,等.城市绿地对雨水径流污染物的削减作用[J].华东师范大学学报(自然科学版),2008,2:41-47.
[26] 杨丽韫,李文华,彭 奎,等.太湖流域城镇绿地系统水生态服务功能研究[J].资源科学,2011,33(2):217-222.
[27] 李 振,李 浩,曾宪曙,等.广东鹤山三种南亚热带人工林的生态系统服务价值动态[J].生态环境学报,2013,22(6):967-975.
[28] 王 斌,张 彪,王建锋,等.太湖流域水生态系统服务及其空间差异[J].水土保持通报,2011,31(2):215-221.
[29] 米文秀,谢 冰.城市绿地对雨水径流中污染物削减效果研究[J].上海化工,2007,32(10):2-4.
[30] 王小治,尹微琴,单玉华,等.太湖地区湿沉降中氮磷输入量——以常熟生态站为例[J].应用生态学报,2009,20(10):2487-2492.
[31] 邬建国.景观生态学——格局、过程、尺度与等级[M].北京:高等教育出版社,2007,106-124.
[32] 卜兆宏,唐万龙,杨林章,等.水土流失定量遥感方法新进展及其在太湖流域的应用[J].土壤学报,2003,40(1):1-9.
[33] 李菲菲.平原圩区水体生态服务功能定量分析方法研究[D].扬州:扬州大学硕士学位论文,2008,27-32.
[34] 高俊峰,毛 锐.太湖平原圩区分类及圩区洪涝分析——以湖西区为例[J].湖泊科学,1993,5(4):307-315.
[35] 王 欢,韩 霜,邓红兵,等.香溪河河流生态系统服务功能评价[J].生态学报,2006,26(9):2971-2978.
[36] 合肥市统计局,国家统计局合肥调查队.合肥统计年鉴[J].北京:中国统计出版社,2012.
[1] LUO Hai-ping, SONG Yan, PENG Jin-lin. EVALUATION ON ESV OF MAJOR GRAIN-PRODUCING AREAS IN CHINA: THE EMPERICAL RESEARCH BASED ON COSTANZA MODEL [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2017, 26(04): 585-590.
[2] ZHAO Xiao-qing, GU Ze-xian, Gao Xiang-yu. LAND USE AND LAND-COVER CHANGE AND IT'S IMPACT ON ECOSYSTEM SERVICES VALUES IN A REGION WITH LARGE-AREA ARTIFICIAL GARDENS [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2016, 25(01): 88-97.
[3] ZHAO Xiao-fan. COMPARISON ON EVALUATION RESULT AND INDEX SYSTEM OF ECOSYSTEM SERVICE VALUES BASED ON LAND USE [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2016, 25(01): 98-105.
[4] YAO Fei, CHEN Long-qian, ZHANG Yu, WU Pei-yao, ZHANG Hong-mei, WANG Bing-yi. Gradient analysis of the ecosystem service value in the chaohu lake-land ecotone [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2015, 24(09): 1568-1576.
[5] WU Song, AN Yu-lun, MA Liang-rui. Study on spatio-temporal variation in the value of ecosystem services for karst watershed under the background of urbanization [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2015, 24(09): 1591-1598.
[6] WANG Jun, DUN Yao-long. A REVIEW ON THE EFFECTS OF LAND USE CHANGE ON ECOSYSTEM SERVICES [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2015, 24(05): 798-808.
[7] WANG Hongmei, PENG Lin. INTEGRATED ANALYSIS OF HYDROELECTRIC DEVELOPMENT IN DIFFERENT BUILDING PERIODS IN UPPER MINJIANG RIVER [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2008, 17(3): 475-475.
[8] LIU Qing, HU Zhenpeng,. STUDY OF ECOSYSTEM SERVICES AND THEIR ECONOMIC VALUES ON THE RIVERHEAD AREA OF EAST RIVER [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2007, 16(4): 532-532.
[9] ZOU Jun,XIE Xiaoli. QUANTITATIVE ASSESSMENT OF VULNERABILITY AND MANAGEMENTOF SURFACE WATER RESOURCE IN SUBTROPICAL HILLY AREA —A CASE STUDY IN HENGYANG BASIN OF HUNAN PROVINCE [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2007, 16(3): 303-303.
[10] YAN Nai-ling,ZHAO Xiu-hua,YU Xiao-gan. ECOSYSTEM DELINEATION ON PRIORITY ECOSYSTEM SERVICES AND ECOSYSTEM MANAGEMENT IN THE UPPER YANGTZE RIVER [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2006, 15(5): 598-602.
[11] JIANG Tian-wen,FAN Zhi-hong. EVOLUTIONAL MECHANISM IN CHANGE OF RIVERS FROM COMMON RESOURCE TO TRAGEDY OF THE COMMONS [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2006, 15(3): 315-319.
[12] LIANG Shou-zhen,LI Ren-dong,ZHU Chao-hong. DIFFERENTIATION IN ECOSYSTEM SERVICES VALUE IN DIFFERENT AREA OF DONGTION LAKE AREA [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2006, 15(2): 196-200.
[13] XIE Chun-hua, WANG Ke-lin, CHEN Hong-song,ZHANG Ming-yang. EFFECTS OF LAND USE CHANGE ON THE ECOSYSTEM SERVICES VALUE IN THE DONGTING LAKE AREA [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2006, 15(2): 191-195.
[14] WU Hou-jian, WANG Xue-lei, NING Long-mei,LU Yun-feng. EFFECTS OF LAND USE CHANGE ON ECOSYSTEM SERVICES VALUE——A CASE STUDY IN WUHAN CITY [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2006, 15(2): 185-190.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
[1] LI Chong-ming, HUANG Zhen-li. STUDY ON THE POLLUTANT LOADS INTO THREE GORGES RESERVOIR (Ⅱ)——POLLUTANT LOAD PREDICTIONS AFTER IMPOUNDMENT[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2006, 15(1): 97 -106 .
[2] LI Jia, LI Siyue, TAN Xiang, ZHANG Quanfa. WATER QUALITY APPRAISAL ALONG THE WATER CONVEYANCE SYSTEM OF THE MIDDLE ROUTE OF THE SOUTH TO NORTH WATER TRANSFER PROJECT, CHINA[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2008, 17(5): 693 .
[3] ZOU Limin, WANG Chao, FENG Shilong. POTENTIAL BIOLOGICAL TOXICITY ASSESSMENT ON HEAVY METAL POLLUTION IN SURFACE SEDIMENTS OF XUANWU LAK[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2008, 17(2): 280 .
[4] ZHANG Qiang. CHANGING CHARACTERISTICS OF SEDIMENT YIELD AND DISCHARGE DURING PAST 40 YEARS IN CATCHMENT OF THE YANGTZE RIVER[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2008, 17(2): 257 .
[5] YUAN Xuyin. CHARACTERISTICS OF MAJOR AND TRACE ELEMENTS IN CONTAMINATED RIVERS AND THEIR SIGNIFICANCE[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2008, 17(2): 270 .
[6] ZHANG Qi-cheng,YAO Yi-feng,JIANG Cheng-yu. FUNCTION EVOLVEMENT AND MODERN LANDSCAPE PLANNING OF NANJING URBAN WATERFRONT[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2004, 13(1): 30 -34 .
[7] HU Hong-xing, KANG Hong-li, GONG Guo-hong, ZHU Mi-hui5,ZHENG Wen-qin5,WU Fa-qing, HE Ding-fu, LI Zhen-wen, GENG Dong5. BIODIVERSITY OF WINTER WATERBIRDS IN HUBEI,CHINA[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2005, 14(4): 422 -428 .
[8] CHEN Shuang,WANG Jin,. LEVEL OF URBANIZATION AND ASSESSMENT OF IMPACTS OF IMMIGRATORY POPULATION IN THE TAIHU WATERSHED[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2004, 13(6): 524 -529 .
[9] ZHANG Wenguang, HU Yuanman,LIU Miao, YANG Zhaoping, CHANG Yu,LI Xiuzhen,YANG Meng, WEN Qingcun,. ESTIMATION OF THE GAINS AND LOSSES OF ECOSYSTEM SERVICE VALUES BASED ON LAND USE/COVERAGE CHANGE —A CASE OF UPPER REACHES OF MINJIANG RIVER[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2007, 16(6): 821 .
[10] WU Zhi-kun, ZHANG Chang-qin, HUANG Yuan, ZHANG Jing-li, SUN Bao-ling,. ANALYSIS ON THE FORMATION OF PLANT SPECIES DIVERSITY IN THE YULONG MOUNTAINS,UPPER REACHES OF YANGTZE RIVER[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2006, 15(1): 48 -53 .