期刊论文详细信息
Ecological Processes
Application of pressure–state–response approach for developing criteria and indicators of ecological health assessment of wetlands: a multi-temporal study in Ichhamati floodplains, India
Research
Debajit Datta1  Jibananda Gayen2 
[1] Department of Geography, Jadavpur University, 700032, Kolkata, India;Department of Geography, Jadavpur University, 700032, Kolkata, India;Department of Geography, Sree Chaitanya College, 743268, Habra, India;
关键词: Entropy weighting method;    Environmental indicator;    Floodplain wetland;    TOPSIS;    Wetland influence zone;    Wetland ecological health;   
DOI  :  10.1186/s13717-023-00447-8
 received in 2023-03-14, accepted in 2023-07-12,  发布年份 2023
来源: Springer
PDF
【 摘 要 】

BackgroundTropical floodplain wetlands are among the most disturbed and intensively harvested ecosystems. Their sustainable management is often hindered due to the lack of comprehensive, coherent, and standardized assessment frameworks of wetland ecological health (WEH). In this study, a set of appropriate criteria and indicators (C&I) of WEH assessment was developed and tested on seven wetlands of River Ichhamati, eastern India.MethodsBased on the pressure–state–response (PSR) approach, evaluation indicators representing ecological, socio-economic, and institutional sustainability issues of floodplain wetland systems were either selected or formulated through literature survey and stakeholder consensus. Weights of indicators were assigned by the entropy weighting method and then used in the Technique for Order of Preference by Similarity to Ideal Solution model to determine the Euclidean distances of each wetland from the positive ideal solution and negative ideal solution. Subsequently, a comprehensive wetland ecological health index (CWEHI) was constructed from these distances to portray the condition of any PSR system component in a wetland under a fivefold classification scheme, namely ‘excellent health’ (CWEHI ≥ 0.81), ‘good health’ (0.61–0.80), ‘moderate health’ (0.41–0.60), ‘weak health’ (0.21–0.40), and ‘morbid’ (≤ 0.20).ResultsThe developed C&I set contains 8 criteria and 38 indicators under pressure component, 7 criteria and 49 indicators under state component, as well as 4 criteria and 18 indicators under response component. When applied in 2016 and 2022, it was found that the Panchita and Aromdanga wetlands were continuously in weak and morbid health status, while the Madhabpur wetland always showed an excellent or good status for all components. Health of other wetlands oscillated between moderate and morbid health across assessment years and system components.ConclusionsThe developed C&I set was found to be a flexible, holistic, and refined framework that could be applied elsewhere in similar assessments with minor indicator-level adjustments. The present assessment inferred that agriculture-dominated wetlands were more affected by amplified environmental pressure than fishing-dominated wetlands. Absence of persistent water flow from main river channel, wide-spread jute-retting, agriculture-induced eutrophication, proliferation of aquatic weeds were identified as the major causes of rapid ecological deterioration.

【 授权许可】

CC BY   
© The Author(s) 2023

【 预 览 】
附件列表
Files Size Format View
RO202309158428434ZK.pdf 2525KB PDF download
40798_2023_599_Article_IEq15.gif 1KB Image download
13690_2023_1151_Article_IEq15.gif 1KB Image download
MediaObjects/12944_2023_1886_MOESM1_ESM.txt 1KB Other download
Fig. 2 46KB Image download
Fig. 6 1086KB Image download
MediaObjects/12974_2023_2870_MOESM1_ESM.png 707KB Other download
Fig. 3 35KB Image download
Fig. 5 840KB Image download
13570_2023_282_Article_IEq1.gif 1KB Image download
13570_2023_282_Article_IEq3.gif 1KB Image download
13570_2023_282_Article_IEq4.gif 1KB Image download
13570_2023_282_Article_IEq5.gif 1KB Image download
13570_2023_282_Article_IEq6.gif 1KB Image download
13570_2023_282_Article_IEq7.gif 1KB Image download
13570_2023_282_Article_IEq9.gif 1KB Image download
13570_2023_282_Article_IEq11.gif 1KB Image download
13570_2023_282_Article_IEq12.gif 1KB Image download
13570_2023_282_Article_IEq13.gif 1KB Image download
Fig. 1 526KB Image download
MediaObjects/12888_2023_5017_MOESM1_ESM.pdf 18KB PDF download
13570_2023_282_Article_IEq15.gif 1KB Image download
13570_2023_282_Article_IEq16.gif 1KB Image download
13570_2023_282_Article_IEq17.gif 1KB Image download
13570_2023_282_Article_IEq18.gif 1KB Image download
13570_2023_282_Article_IEq19.gif 1KB Image download
13570_2023_282_Article_IEq21.gif 1KB Image download
MediaObjects/12888_2023_4987_MOESM1_ESM.docx 25KB Other download
Fig. 4 253KB Image download
Fig. 1 92KB Image download
Fig. 4 823KB Image download
Fig. 2 141KB Image download
MediaObjects/12888_2023_5032_MOESM1_ESM.pdf 206KB PDF download
Fig. 7 588KB Image download
Fig. 1 591KB Image download
Fig. 6 614KB Image download
MediaObjects/13046_2023_2774_MOESM4_ESM.docx 18KB Other download
Fig. 3 1592KB Image download
13750_2023_309_Article_IEq64.gif 1KB Image download
Fig. 1 1743KB Image download
Fig. 1 998KB Image download
Fig. 1 5078KB Image download
Fig. 7. 2822KB Image download
Fig. 5 74KB Image download
Fig. 1 44KB Image download
Fig. 4 539KB Image download
Fig. 6 1327KB Image download
13731_2023_311_Article_IEq7.gif 1KB Image download
MediaObjects/12974_2023_2872_MOESM2_ESM.docx 897KB Other download
【 图 表 】

13731_2023_311_Article_IEq7.gif

Fig. 6

Fig. 4

Fig. 1

Fig. 5

Fig. 7.

Fig. 1

Fig. 1

Fig. 1

13750_2023_309_Article_IEq64.gif

Fig. 3

Fig. 6

Fig. 1

Fig. 7

Fig. 2

Fig. 4

Fig. 1

Fig. 4

13570_2023_282_Article_IEq21.gif

13570_2023_282_Article_IEq19.gif

13570_2023_282_Article_IEq18.gif

13570_2023_282_Article_IEq17.gif

13570_2023_282_Article_IEq16.gif

13570_2023_282_Article_IEq15.gif

Fig. 1

13570_2023_282_Article_IEq13.gif

13570_2023_282_Article_IEq12.gif

13570_2023_282_Article_IEq11.gif

13570_2023_282_Article_IEq9.gif

13570_2023_282_Article_IEq7.gif

13570_2023_282_Article_IEq6.gif

13570_2023_282_Article_IEq5.gif

13570_2023_282_Article_IEq4.gif

13570_2023_282_Article_IEq3.gif

13570_2023_282_Article_IEq1.gif

Fig. 5

Fig. 3

Fig. 6

Fig. 2

13690_2023_1151_Article_IEq15.gif

40798_2023_599_Article_IEq15.gif

【 参考文献 】
  • [1]
  • [2]
  • [3]
  • [4]
  • [5]
  • [6]
  • [7]
  • [8]
  • [9]
  • [10]
  • [11]
  • [12]
  • [13]
  • [14]
  • [15]
  • [16]
  • [17]
  • [18]
  • [19]
  • [20]
  • [21]
  • [22]
  • [23]
  • [24]
  • [25]
  • [26]
  • [27]
  • [28]
  • [29]
  • [30]
  • [31]
  • [32]
  • [33]
  • [34]
  • [35]
  • [36]
  • [37]
  • [38]
  • [39]
  • [40]
  • [41]
  • [42]
  • [43]
  • [44]
  • [45]
  • [46]
  • [47]
  • [48]
  • [49]
  • [50]
  • [51]
  • [52]
  • [53]
  • [54]
  • [55]
  • [56]
  • [57]
  • [58]
  • [59]
  • [60]
  • [61]
  • [62]
  • [63]
  • [64]
  • [65]
  • [66]
  • [67]
  • [68]
  • [69]
  • [70]
  • [71]
  • [72]
  • [73]
  • [74]
  • [75]
  • [76]
  • [77]
  • [78]
  • [79]
  • [80]
  • [81]
  • [82]
  • [83]
  • [84]
  • [85]
  • [86]
  • [87]
  • [88]
  文献评价指标  
  下载次数:1次 浏览次数:2次