Factors in Community Adaptation for Climate Change Mitigation in Thailand

Q3 Environmental Science
Tipmol Traiyut, Patranit Srijuntrapun, W. Rawang
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Abstract

This study reflects the experiences of communities who have adapted to climate change in three different geological locations in the country of Thailand: by the riverside, coast, and in the mountains. The communities presented the lessons learned and identified key adaptation factors. The study used in-depth interviews and focus group discussions, with results showing that the community’s learning and adaptation to climate change were at a high level. The results broaden understanding of climate change in these locations and provide information for resource management approaches. Among the seven factors, five factors illustrated that they were highly adapted, including: (1) applying knowledge about nature, ecosystems, and traditional wisdom; (2) management that allowed the use of adaptations; (3) a shared vision of success; (4) collaboration; and (5) having a variety of options and approaches. Two factors that illustated that the community was only moderately adapted included: (1) learning about violent events and disasters; and (2) following government guidelines. It was found that a lack of information about the ecosystems and environmental resources they required for large-scale infrastructure construction caused issues. This is a problem, and the government must consult with local communities when setting long-term plans and assessing needs, because communities have diverse livelihoods and depend on natural resources. Hence, future studies should include climate change awareness and understanding of what is required by adding community needs linked to climate change adaptation into state development plans as well as utilizing the wisdom and traditional knowledge involving ecology held by these communities into sustainability plans.
泰国社区适应减缓气候变化的因素
这项研究反映了泰国三个不同地理位置(河边、海岸和山区)的社区适应气候变化的经验。这些社区介绍了所吸取的经验教训,并确定了关键的适应因素。研究采用了深入访谈和焦点小组讨论的方式,结果表明社区对气候变化的学习和适应达到了较高水平。研究结果拓宽了这些地区对气候变化的理解,并为资源管理方法提供了信息。在七个因素中,有五个因素表明他们的适应性很强,包括:(1) 运用有关自然、生态系统和传统智慧的知识;(2) 允许使用适应性的管理;(3) 共同的成功愿景;(4) 合作;(5) 有多种选择和方法。有两个因素说明该社区的适应能力一般,其中包括(1) 了解暴力事件和灾难;(2) 遵循政府指导方针。研究发现,由于缺乏有关大规模基础设施建设所需的生态系统和环境资源的信息,导致了一些问题。这是一个问题,政府在制定长期计划和评估需求时必须咨询当地社区,因为社区的生计多种多样,并依赖于自然资源。因此,未来的研究应包括气候变化意识和对所需内容的理解,在国家发展计划中增加与适应气候变化相关的社区需求,并在可持续发展计划中利用这些社区拥有的涉及生态学的智慧和传统知识。
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来源期刊
Environment and Natural Resources Journal
Environment and Natural Resources Journal Environmental Science-Environmental Science (all)
CiteScore
1.90
自引率
0.00%
发文量
49
审稿时长
8 weeks
期刊介绍: The Environment and Natural Resources Journal is a peer-reviewed journal, which provides insight scientific knowledge into the diverse dimensions of integrated environmental and natural resource management. The journal aims to provide a platform for exchange and distribution of the knowledge and cutting-edge research in the fields of environmental science and natural resource management to academicians, scientists and researchers. The journal accepts a varied array of manuscripts on all aspects of environmental science and natural resource management. The journal scope covers the integration of multidisciplinary sciences for prevention, control, treatment, environmental clean-up and restoration. The study of the existing or emerging problems of environment and natural resources in the region of Southeast Asia and the creation of novel knowledge and/or recommendations of mitigation measures for sustainable development policies are emphasized. The subject areas are diverse, but specific topics of interest include: -Biodiversity -Climate change -Detection and monitoring of polluted sources e.g., industry, mining -Disaster e.g., forest fire, flooding, earthquake, tsunami, or tidal wave -Ecological/Environmental modelling -Emerging contaminants/hazardous wastes investigation and remediation -Environmental dynamics e.g., coastal erosion, sea level rise -Environmental assessment tools, policy and management e.g., GIS, remote sensing, Environmental -Management System (EMS) -Environmental pollution and other novel solutions to pollution -Remediation technology of contaminated environments -Transboundary pollution -Waste and wastewater treatments and disposal technology
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