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May 9, 20260 citationsOpen Access

Strategic Management of Low Carbon Travel in Longevity Tourism Evidence from Thailand.

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WMWarach Madhyamapurush

Key Points

  • This research aims to assess the carbon footprint associated with longevity tourism in Thailand and propose strategies for low-carbon travel.
  • Mixed-method approach gathering data from 450 longevity tourists via questionnaires and travel activity logs.
  • LCA-based carbon footprint analysis to evaluate emissions from travel patterns.
  • Descriptive statistics and One-Way ANOVA in IBM SPSS analyzed variations in emissions across different travel variables.
  • Transportation accounted for the highest emissions at 347 kg CO2e per capita, while lodging emissions were 160 kg CO2e.
  • Significant variations in emissions observed among different transportation modes, accommodation types, and dietary choices (p < 0.01).
  • Effective low-carbon strategies can enhance sustainability in longevity tourism, reducing emissions through intentional planning.

Abstract

The increase in longevity tourism, driven by an aging populace and wellness travel, raises environmental issues, notably carbon emissions from travel. Thailand is becoming a key destination for this type of tourism, necessitating strategic frameworks to integrate low-carbon travel methods into its management. This research intends to evaluate the carbon footprint of longevity tourism travel patterns in Thailand and provide strategic management solutions to encourage low-carbon travel and improve long-term health and well-being results. A mixed-method approach was used to gather primary data via structured questionnaires and travel activity logs from 450 longevity tourists in selected Thai destinations, along with secondary data on emission factors from national energy and tourism databases. Carbon footprint assessment was conducted using an LCA-based carbon footprint analysis. Descriptive statistics and One-Way ANOVA in IBM SPSS (version 28) analyzed emissions variations across transportation modes, accommodation types, dietary choices, and activity patterns. Thematic analysis on qualitative responses highlighted common behavioral patterns and perceptions related to low-carbon travel practices. According to the LCA-based carbon footprint analysis, transportation (347 kg CO2e per capita) and lodging (160 kg CO2e) had the highest emissions, compared to lifestyle choices (42.5 kg CO2e) and strategic awareness factors (50 kg CO2e). Significant emission disparities among different travel modes, housing types, food patterns, and awareness levels were confirmed by one-way ANOVA results (p < 0.01). Longevity tourism in Thailand is made more sustainable by intentional low-carbon planning and optimized infrastructure, while extended stays and energy-efficient lodgings lower emissions.

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Warach Madhyamapurush (2026) studied this question.

synapsesocial.com/papers/69fecfafb9154b0b82876a04https://doi.org/10.12688/f1000research.178615.2
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Strategic Management of Low Carbon Travel in Longevity Tourism Evidence from Thailand2026
  2. 2Identifying Carbon Emission Hotspots and Low-Carbon Pathways in Tourism Supply Chains: Evidence from Northeastern Thailand2026
  3. 3Route-Level Carbon Footprint Assessment for Community-Based Tourism Management: A Case Study from Ban Boonjaem, Thailand2026
  4. 4Health and environmental awareness as a catalyst for sustainable travel toward low-carbon intention among tourists’ wellness2026
  5. 5Encouraging sustainable travel choices through behavioral interventions to reduce tourists’ carbon footprints2025 · 3 citations