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  4. Community-based landslide risk reduction: a review of a Red Cross soil bioengineering for resilience program in Honduras
 
review article

Community-based landslide risk reduction: a review of a Red Cross soil bioengineering for resilience program in Honduras

Hostettler, Silvia  
•
Johr, Anton
•
Montes, Carlos
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September 1, 2019
Landslides

Effective long-term participation of communities in disaster risk reduction measures in landslide-prone areas continues to be a challenge. This study aims to evaluate the extent to which community-based soil-bioengineering techniques allow for effective mitigation of shallow landslide events given technical, environmental, economic and socio-cultural sustainability criteria. The Red Cross has been implementing community-based disaster risk reduction programs aimed at increasing resilience at the community level in Honduras since 2005. Since 2010, 230 landslide hazard sites have been stabilized using soil-bioengineering measures (the use of living plant material to provide certain engineering functions) based on a carefully and systematically developed partnership with local communities. In 2018, an assessment of 73 sites established between 2010 and 2014 showed that (1) 83% of the sites were adequately maintained and (2) 69% of the sites fulfilled the function of soil stabilization. A cost-benefit analysis was conducted for two sites and indicated a cost-benefit ratio of 4.5 and 6 respectively. Some of the key factors for these high success rates include the fact that bioengineering is a locally adapted, easily implemented, cost-effective technology that offers landowners multiple benefits by increasing food security and creating income-generation opportunities. The Red Cross has recognized the importance of empowering communities by building self-confidence so that they can ultimately take responsibility for their own future. The creation of well-functioning local emergency committees has proven highly effective in achieving this goal. When adequately trained, these committees are able to support the replication and maintenance of disaster-risk reduction measures at the community-level in the long term. This case study supports the hypothesis that carefully designed participatory approaches are essential for achieving sustainable, long-term transformative change and risk reduction.

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Type
review article
DOI
10.1007/s10346-019-01161-3
Web of Science ID

WOS:000482448500013

Author(s)
Hostettler, Silvia  
Johr, Anton
Montes, Carlos
D'Acunzi, Antonio
Date Issued

2019-09-01

Published in
Landslides
Volume

16

Issue

9

Start page

1779

End page

1791

Subjects

Engineering, Geological

•

Geosciences, Multidisciplinary

•

Engineering

•

Geology

•

landslide risk reduction

•

resilience

•

community-based disaster risk management

•

soil-bioengineering

•

red cross

•

honduras

•

transdisciplinarity

•

management

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
CODEV  
Available on Infoscience
September 11, 2019
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/161038
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