<p>The influx of tourists to fragile mountain ecosystems like the Himalaya can exacerbate particulate matter pollution, as increased vehicular emissions, biomass combustion, and infrastructure development contribute to increased concentrations of PM<sub>2.5</sub> and PM<sub>10</sub>. The present study attempts to analyse the impact of tourism activities on PM<sub>2.5</sub> and PM<sub>10</sub> at Mohal in the Kullu Valley during a span of 6&#xa0;years (2016–2021). The daily highest concentration was found as 116.21&#xa0;µg&#xa0;m<sup>−3</sup> and 162.64&#xa0;µg&#xa0;m<sup>−3</sup> for PM<sub>2.5</sub> and PM<sub>10</sub>, respectively. The particulate matter (PM<sub>2.5</sub> and PM<sub>10</sub>) concentrations showed an increasing trend during whole study period. The day-to-day average concentration of PM<sub>2.5</sub> and PM<sub>10</sub> surpassed the NAAQS limits by 6% and 2%, respectively. In view of seasonal analysis, a&#xa0;higher concentration was found in winter than in autumn and summer, while monsoon season showed the lowest one values. HYSPLIT and CALIPSO highlight regional activities as the primary pollution source. The correlation analysis also showed the effects of meteorological parameters on the assemblage or cluster of air pollutants especially the effect of temperature on PM<sub>2.5</sub> concentration in winter and summer seasons. The annual exceedance factor was&#xa0;moderate in the area but a&#xa0;continuous increase was observed in the values. Karl&#xa0;Pearson’s Correlation analysis reveals the contribution of tourism activities increasing the load of PM<sub>2.5,</sub> NO<sub>2</sub> and SO<sub>2</sub>. Intending to better manage air quality in the Kullu valley and other Himalayan regions, the present attempt also aims to propose a new multi-scalar framework based on regional collaborative governance of PM<sub>2.5</sub> and PM<sub>10</sub> through web scraping techniques and browser extensions.</p>

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Assessment of PM2.5, PM10, SO2 and NO2 in the Northwestern Indian Himalaya—A Correlation with Tourism and Meteorological Parameters: Regional Collaborative Governance

  • Shilpa Thakur,
  • Sheetal Chaudhary,
  • Jagdish Chandra Kuniyal,
  • Archana Bawari,
  • Priyanka Maiti,
  • Renu Lata,
  • Kesar Chand,
  • Anil Kumar Yadava

摘要

The influx of tourists to fragile mountain ecosystems like the Himalaya can exacerbate particulate matter pollution, as increased vehicular emissions, biomass combustion, and infrastructure development contribute to increased concentrations of PM2.5 and PM10. The present study attempts to analyse the impact of tourism activities on PM2.5 and PM10 at Mohal in the Kullu Valley during a span of 6 years (2016–2021). The daily highest concentration was found as 116.21 µg m−3 and 162.64 µg m−3 for PM2.5 and PM10, respectively. The particulate matter (PM2.5 and PM10) concentrations showed an increasing trend during whole study period. The day-to-day average concentration of PM2.5 and PM10 surpassed the NAAQS limits by 6% and 2%, respectively. In view of seasonal analysis, a higher concentration was found in winter than in autumn and summer, while monsoon season showed the lowest one values. HYSPLIT and CALIPSO highlight regional activities as the primary pollution source. The correlation analysis also showed the effects of meteorological parameters on the assemblage or cluster of air pollutants especially the effect of temperature on PM2.5 concentration in winter and summer seasons. The annual exceedance factor was moderate in the area but a continuous increase was observed in the values. Karl Pearson’s Correlation analysis reveals the contribution of tourism activities increasing the load of PM2.5, NO2 and SO2. Intending to better manage air quality in the Kullu valley and other Himalayan regions, the present attempt also aims to propose a new multi-scalar framework based on regional collaborative governance of PM2.5 and PM10 through web scraping techniques and browser extensions.