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Congo Basin peatlands: threats and conservation priorities

journal contribution
posted on 2018-04-23, 15:44 authored by G. C. Dargie, I. T. Lawson, T. J. Rayden, L. Miles, E. T. A. Mitchard, Susan E. Page, Y. E. Bocko, S. A. Ifo, S. L. Lewis
The recent publication of the first spatially explicit map of peatlands in the Cuvette Centrale, central Congo Basin, reveals it to be the most extensive tropical peatland complex, at ca. 145,500 km 2 . With an estimated 30.6 Pg of carbon stored in these peatlands, there are now questions about whether these carbon stocks are under threat and, if so, what can be done to protect them. Here, we analyse the potential threats to Congo Basin peat carbon stocks and identify knowledge gaps in relation to these threats, and to how the peatland systems might respond. Climate change emerges as a particularly pressing concern, given its potential to destabilise carbon stocks across the whole area. Socio-economic developments are increasing across central Africa and, whilst much of the peatland area is protected on paper by some form of conservation designation, the potential exists for hydrocarbon exploration, logging, plantations and other forms of disturbance to significantly damage the peatla nd ecosystems. The low level of human intervention at present suggests that the opportunity still exists to protect the peatlands in a largely intact state, possibly drawing on climate change mitigation funding, which can be used not only to protect the peat carbon pool but also to improve the livelihoods of people living in and around these peatlands.

History

Citation

Mitigation and Adaptation Strategies for Global Change, 2018

Author affiliation

/Organisation/COLLEGE OF SCIENCE AND ENGINEERING/School of Geography, Geology and the Environment/Physical Geography

Version

  • VoR (Version of Record)

Published in

Mitigation and Adaptation Strategies for Global Change

Publisher

Springer Verlag

issn

1381-2386

eissn

1573-1596

Acceptance date

2017-12-03

Copyright date

2018

Available date

2018-04-23

Publisher version

https://link.springer.com/article/10.1007/s11027-017-9774-8

Language

en

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