Arid
DOI10.1007/s11027-017-9768-6
Ecosystem-based adaptation to climate change: defining hotspot municipalities for policy design and implementation in Brazil
Kasecker, Thais Pacheco1,2; Ramos-Neto, Mario Barroso3; Cardoso da Silva, Jose Maria4; Scarano, Fabio Rubio2,5
通讯作者Kasecker, Thais Pacheco
来源期刊MITIGATION AND ADAPTATION STRATEGIES FOR GLOBAL CHANGE
ISSN1381-2386
EISSN1573-1596
出版年2018
卷号23期号:6页码:981-993
英文摘要

We developed an indicator that defines priority municipalities in order to facilitate the deployment of preventive policies and strategies for ecosystem-based adaptation to climate change (EbA) in Brazilian municipalities. Based on the premises that poor people are the population most vulnerable to climate change and that conservation and sustainable use of biodiversity and ecosystems are adaptive to climate change, our indicator uses three parameters: (1) poverty, (2) proportion of natural-vegetation cover, and (3) exposure to climate change. Thus, we searched for Brazilian municipalities that simultaneously belonged to the quartile of municipalities with the highest percentage of poverty, the quartile with the highest percentage of natural-vegetation cover, and the quartile with the highest exposure indices in two global climate models (Eta-HadGEM, Eta-Miroc). We found 398 (7.1%) EbA hotspots among 5565 Brazilian municipalities, which comprise 36% of the total area of native remnants in the country and are home to 22% of the poor people in Brazil. In their majority, these municipalities cover significant portions of the Amazon, Cerrado, Caatinga, and Atlantic forest, and indeed, these regions are recognised as some of the most vulnerable to climate change in the world. Considering the relevance of these biomes for the global water and nutrient cycle (Amazon), global food security (Cerrado), vulnerability to desertification (Caatinga), and biodiversity (all) we discuss the adaptive strategies in place, the need to bring them to scale, and existing policy gaps. Finally, in an effort to guide international and national investment and policies, we discuss how the approach described here can be applied to societies inhabiting tropical forests, savannas, and semiarid zones in other parts of the world. In particular, we propose that the indicator developed here is a simple and fast way to achieve early detection of priority municipalities for deployment of EbA action and policies, particularly in tropical developing countries.


英文关键词Amazon Caatinga Cerrado Ecosystem-based adaptation Ecosystem conservation Poverty reduction
类型Article
语种英语
国家Brazil ; USA
收录类别SCI-E ; SSCI
WOS记录号WOS:000437255400009
WOS关键词PROTECTED AREAS ; POVERTY ALLEVIATION ; DEFORESTATION ; CONSERVATION ; VULNERABILITY ; IMPACT
WOS类目Environmental Sciences
WOS研究方向Environmental Sciences & Ecology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/211693
作者单位1.Conservat Int Brasil, Rio Branco Ave,131-8 Floor, BR-20040006 Rio De Janeiro, RJ, Brazil;
2.Univ Fed Rio de Janeiro, Dept Ecol, IB, CCS, BR-21941970 Rio De Janeiro, RJ, Brazil;
3.Nature Conservancy, Brasilia, DF, Brazil;
4.Univ Miami, Miami, FL USA;
5.Fundacao Brasileira Desenvolvimento Sustentavel, Rio De Janeiro, Brazil
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GB/T 7714
Kasecker, Thais Pacheco,Ramos-Neto, Mario Barroso,Cardoso da Silva, Jose Maria,et al. Ecosystem-based adaptation to climate change: defining hotspot municipalities for policy design and implementation in Brazil[J],2018,23(6):981-993.
APA Kasecker, Thais Pacheco,Ramos-Neto, Mario Barroso,Cardoso da Silva, Jose Maria,&Scarano, Fabio Rubio.(2018).Ecosystem-based adaptation to climate change: defining hotspot municipalities for policy design and implementation in Brazil.MITIGATION AND ADAPTATION STRATEGIES FOR GLOBAL CHANGE,23(6),981-993.
MLA Kasecker, Thais Pacheco,et al."Ecosystem-based adaptation to climate change: defining hotspot municipalities for policy design and implementation in Brazil".MITIGATION AND ADAPTATION STRATEGIES FOR GLOBAL CHANGE 23.6(2018):981-993.
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