Subsidence reveals potential impacts of future sea level rise on inhabited mangrove coasts

Publication date

2023-12

Authors

Bijsterveldt, Celine E. J. van
Herman, Peter M. J.
Wesenbeeck, Bregje K. van
Ramadhani, Sri
Heuts, Tom S.
van Starrenburg, CorinneISNI 0000000527855428
Tas, Silke A. J.
Triyanti, AnnisaORCID 0000-0001-5524-7551ISNI 0000000492958717
Helmi, Muhammad
Tonneijck, Femke H.

Editors

Advisors

Supervisors

Document Type

Article
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License

taverne

Abstract

Human-induced land subsidence causes many coastal areas to sink centimetres per year, exacerbating relative sea level rise (RSLR). While cities combat this problem through investment in coastal infrastructure, rural areas are highly dependent on the persistence of protective coastal ecosystems, such as mangroves and marshes. To shed light on the future of low-lying rural areas in the face of RSLR, we here studied a 20-km-long rural coastline neighbouring a sinking city in Indonesia, reportedly sinking with 8–20 cm per year. By measuring water levels in mangroves and quantifying floor raisings of village houses, we show that, while villages experienced rapidly rising water levels, their protective mangroves experience less rapid changes in RSLR. Individual trees were able to cope with RSLR rates of 4.3 (95% confidence interval 2.3–6.3) cm per year through various root adaptations when sediment was available locally. However, lateral retreat of the forest proved inevitable, with RSLR rates up to four times higher than foreshore accretion, forcing people from coastal communities to migrate as the shoreline retreated. Whereas local RSLR may be effectively reduced by better management of groundwater resources, the effects of RSLR described here predict a gloomy prospect for rural communities that are facing globally induced sea level rise beyond the control of local or regional government.

Keywords

biogegraphy, climate-change ecology, climate-change impacts, natural hazards, restoration ecology, Taverne, Geography, Planning and Development, Food Science, Nature and Landscape Conservation, Management, Monitoring, Policy and Law, Global and Planetary Change, Ecology, Renewable Energy, Sustainability and the Environment, Urban Studies, SDG 7 - Affordable and Clean Energy, SDG 13 - Climate Action, SDG 15 - Life on Land

Citation

Bijsterveldt, C E J V, Herman, P M J, Wesenbeeck, B K V, Ramadhani, S, Heuts, T S, Starrenburg, C V, Tas, S A J, Triyanti, A, Helmi, M, Tonneijck, F H & Bouma, T J 2023, 'Subsidence reveals potential impacts of future sea level rise on inhabited mangrove coasts', Nature Sustainability, vol. 6, no. 12, pp. 1565-1577. https://doi.org/10.1038/s41893-023-01226-1