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Under pressure: Rapid lavaka erosion and floodplain sedimentation in central Madagascar

  • Liesa Brosens
  • , Nils Broothaerts
  • , Benjamin Campforts
  • , Liesbet Jacobs
  • , Vao Fenotiana Razanamahandry
  • , Quinten Van Moerbeke
  • , Steven Bouillon
  • , Tantely Razafimbelo
  • , Tovonarivo Rafolisy
  • , Gerard Govers

Research output: Contribution to JournalArticleAcademicpeer-review

Abstract

Lavaka (gullies) are often considered as the prime indication of a currently ongoing human-induced environmental crisis in Madagascar's highlands. Yet, lavaka are known to have existed long before human arrival and account for the majority of the long-term sediment input into the highland rivers and floodplains. The role of anthropogenic disturbances in their formation therefore remains highly debated and it is unclear whether lavaka erosion has recently increased. Here, we address these questions by evaluating the dynamics of lavaka in the Lake Alaotra region (central Madagascar). An overall birth to stabilization ratio of 6.1 indicates a rapid lavaka population growth over the period 1949–2010s. Using data on lavaka development we calculated a mean lavaka population age of 410 ± 40 years and estimate that the disequilibrium started at 870 ± 430 cal. BP. Floodplain sedimentation starts to increase around 1000 cal. BP and peaks over the last 400 years, thereby independently confirming this time frame of increased lavaka activity. Lavaka population dynamics modelling shows that a strong increase in environmental pressure over the last centuries is needed to attain current disequilibrium levels. A general drying of the climate since 950 cal. BP in combination with the introduction of cattle and growing human presence around 1000 cal. BP will likely have triggered the increase in lavaka erosion. However, the recent acceleration cannot be explained by climatic changes alone and seems to be linked to increased anthropogenic pressure on the environment. As such, we offer a fresh and quantitatively supported perspective on lavaka dynamics and human impact in central Madagascar, where our methodology can be used in other locations where similar questions on geomorphic equilibrium need to be answered.
Original languageEnglish
Article number150483
Pages (from-to)1-11
Number of pages11
JournalScience of the Total Environment
Volume806
Early online date29 Sept 2021
DOIs
Publication statusPublished - 1 Feb 2022
Externally publishedYes

Funding

Ny Riavo Voarintsoa, Rónadh Cox, Veerle Vanacker and Michel Mietton are wholeheartedly thanked for their insights and inspiring discussions on this topic. This research would not have been possible without the help of our partners at Laboratoire des RadioIsotopes (Université d'Antananarivo), the local authorities of the districts of Ambatondrazaka and Amparafaravola and the Durrell Wildlife Conservation Trust. Digitized lavaka and bare surface shapefiles, an Excel file containing all the measured properties of each lavaka and the python script of the lavaka population model are available at: doi: https://doi.org/10.6084/m9.figshare.c.5236322.v1 . TanDEM-X images were provided by DLR under a scientific use user license. This work was supported by the KU Leuven , Research Foundation Flanders (FWO) [ 11B6921N , 12Z6518N , V436719N , V436319N ], YouReCa and VLIR-UOS. Two anonymous reviewers are thanked for their valuable inputs which have resulted in a significantly improved version of the manuscript.

FundersFunder number
Durrell Wildlife Conservation Trust
KU Leuven
VLIRUOS
Deutsches Zentrum für Luft- und Raumfahrt
Université d'Antananarivo
UK Research and Innovation103637
Fonds Wetenschappelijk Onderzoek11B6921N, V436319N, 12Z6518N

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