Ecosystem Services for Urban Water Security

2020 ◽  
Author(s):  
Blal Adem Esmail ◽  
Davide Geneletti
2021 ◽  
Vol 13 (5) ◽  
pp. 2772
Author(s):  
Subham Mukherjee ◽  
Pradip Kumar Sikdar ◽  
Sukdeb Pal ◽  
Brigitta Schütt

Achieving urban water security requires sustaining the trade-offs between the exploitation of water/environmental resources and ecosystem services. This achievement not only reduces the pollution and contamination in the environment, level of water stress, but also secures good ambient water quality and future for people’s well-being and livelihoods. Changes in land use and land cover and growth of impervious structures can immediately generate severe ecological and social issues and increase the level of natural or manmade risks, affecting the condition of ecosystem services within and in the vicinity of an urban region. As a result of these transformations and further exploitation, due to the growing anthropogenic pressure, surface water and groundwater quality can be deteriorated compared to ambient water quality standards (for both chemical and biological pollutants). Based on land use and land cover (LULC) data retrieved from remote sensing interpretation, we computed the changes of the ecosystem service values (ESV) associated with the LULC dynamics, water quality and, finally, urban water security during the pre- and post-monsoon periods of 2009, 2014 and 2019 in Kolkata, an Asian deltaic megacity, and its peri-urban wetlands named East Kolkata Wetlands (EKW). The area under wetlands reduced comprehensively in 2009–2019 due to the conversion of wetlands into various other classes such as urban settlement, etc. The quality of surface water bodies (such as rivers, lakes, canals and inland wetlands) deteriorated. The groundwater quality is still under control, but the presence of arsenic, manganese and other metals are a clear indication of urban expansion and related activities in the area. As a result, there was a change in the ESV during this timeframe. In the pre-monsoon period, there was an increase in total ESV from US$53.14 million in 2009 to US$53.36 million and US$59.01 million in 2014 and 2019, respectively. In the post-monsoon period, the ESV decreased from US$67.42 million in 2009 to US$64.13 and US$61.89 million in 2014 and 2019, respectively. These changes can be attributed to the peri-urban wetlands and the benefits or services arising out of them that contribute more than 50% of the total ESV. This study found that the area under wetlands has reduced comprehensively in the past 10 years due to the conversion of wetlands for various other uses such as urban expansion of the Kolkata City, but still, this peri-urban wetland supports the urban water security by providing sufficient ecosystem services. In conclusion, the transformation in extent of the water-related ecosystem is a crucial indicator of urban water security, which also measures the quantity of water contained in various water-related ecosystems. Quantitative analysis of the LULC change, hence, is important for studying the corresponding impact on the ecosystem service value (ESV) and water quality that helps in decision-making in securing urban water future and ecosystem conservation.


2021 ◽  
pp. 1-13
Author(s):  
Vanessa Lucena Empinotti ◽  
Jessica Budds ◽  
Wendy Jepson ◽  
Nate Millington ◽  
Luciana Nicolau Ferrara ◽  
...  

2021 ◽  
Vol 321 ◽  
pp. 129004
Author(s):  
Nooshin Karimi Alavijeh ◽  
Mohammad Ali Falahi ◽  
Mohammad Taher Ahmadi Shadmehri ◽  
Narges Salehnia ◽  
Morten Andreas Dahl Larsen ◽  
...  
Keyword(s):  

2014 ◽  
Vol 369 (1639) ◽  
pp. 20120286 ◽  
Author(s):  
Ferdinando Villa ◽  
Brian Voigt ◽  
Jon D. Erickson

As societal demand for food, water and other life-sustaining resources grows, the science of ecosystem services (ES) is seen as a promising tool to improve our understanding, and ultimately the management, of increasingly uncertain supplies of critical goods provided or supported by natural ecosystems. This promise, however, is tempered by a relatively primitive understanding of the complex systems supporting ES, which as a result are often quantified as static resources rather than as the dynamic expression of human–natural systems. This article attempts to pinpoint the minimum level of detail that ES science needs to achieve in order to usefully inform the debate on environmental securities, and discusses both the state of the art and recent methodological developments in ES in this light. We briefly review the field of ES accounting methods and list some desiderata that we deem necessary, reachable and relevant to address environmental securities through an improved science of ES. We then discuss a methodological innovation that, while only addressing these needs partially, can improve our understanding of ES dynamics in data-scarce situations. The methodology is illustrated and discussed through an application related to water security in the semi-arid landscape of the Great Ruaha river of Tanzania.


2017 ◽  
Vol 28 ◽  
pp. 251-259 ◽  
Author(s):  
Jeanne L. Nel ◽  
David C. Le Maitre ◽  
Dirk J. Roux ◽  
Christine Colvin ◽  
Janis S. Smith ◽  
...  

2021 ◽  
pp. 1-15
Author(s):  
Negin Balaghi-Ficzkowski ◽  
Nidhi Nagabhatla ◽  
Tariq A. Deen
Keyword(s):  

PLoS ONE ◽  
2018 ◽  
Vol 13 (12) ◽  
pp. e0209470 ◽  
Author(s):  
Beth Tellman ◽  
Robert I. McDonald ◽  
Joshua H. Goldstein ◽  
Adrian L. Vogl ◽  
Martina Flörke ◽  
...  

2018 ◽  
Vol 83 ◽  
pp. 33-45 ◽  
Author(s):  
Olivia Jensen ◽  
Huijuan Wu

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