Development at the cost of unsustainable degradation of wetlands: Unraveling the dynamics (historic and future) of wetlands in the megacity Dhaka

Muhammad Abdullah, H., Mukti, M., Giashuddin Miah, M., Abdul Karim, M., Tousif Tanzir, M. and Sarwar Hossain, M. (2024) Development at the cost of unsustainable degradation of wetlands: Unraveling the dynamics (historic and future) of wetlands in the megacity Dhaka. World Development Sustainability, 4, 100131. (doi: 10.1016/j.wds.2024.100131)

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Abstract

Despite the recognized role of wetlands in providing ecological benefits for human wellbeing, ∼70% of global wetland ecosystems have been destroyed since the 1990s. Further intensive studies revealed that 3.4 million km2 of natural wetland has declined since 1700. In particular, wetland habitats in the world's megacities have been replaced unsustainably by faster economic, urban, and population growth, and have received less attention in research and policy. However, wetlands degradation in the megacities of developing countries is not quantified and the trends of Land Surface Temperature (LST) are not well understood. Therefore, we are making our first attempt to unravel the historical and future spatiotemporal dynamics of wetlands and the trends of LST in the megacity of Dhaka. The results show that Dhaka lost ∼69% of wetlands and LST has increased between 3.44°C and 9.35°C from 1990 to 2020. An environmental Kuznets curve analysis implies that the point has not yet been reached for wetlands when economic development feeds back to the sustainability of the environment. This assumption coincides with our model-based prediction, as respectively ∼74% and ∼90% of wetlands area of Dhaka city will be decreased by 2050 in Business as Usual (BAU) and development scenarios, whereas, ∼66% of wetlands area will be decreased under conservation scenario over the time period of next 30 (2020 to 2050) years. Our findings suggest that it will be incredibly challenging to restore wetlands to their 1990s condition. Efforts to preserve them should be made, as they potentially provide a nature-based alternative for coping with wetland sustainability and climate change.

Item Type:Articles
Status:Published
Refereed:Yes
Glasgow Author(s) Enlighten ID:Sohel, Dr MD Sarwar
Authors: Muhammad Abdullah, H., Mukti, M., Giashuddin Miah, M., Abdul Karim, M., Tousif Tanzir, M., and Sarwar Hossain, M.
College/School:College of Social Sciences > School of Social & Environmental Sustainability
Journal Name:World Development Sustainability
Publisher:Elsevier
ISSN:2772-655X
Published Online:05 March 2024
Copyright Holders:Copyright: © 2024 The Author(s)
First Published:First published in World Development Sustainability 4: 100131
Publisher Policy:Reproduced under a Creative Commons licence

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